Files
H100PowerManger/test/disSysTest/PowerManagerApp copy.py
T
2025-09-12 11:35:17 +08:00

1903 lines
93 KiB
Python

import tkinter as tk
from tkinter import ttk
import socket
import threading
import time
from db import DB
import os
from udpMsg import (
msg_disHighVolBusFbMsg,
msg_disHighAVolBusFbMsg,
msg_disLowMainBusFbMsg,
msg_disLowBusFbMsg,
msg_disHVBCmdMsg,
msg_disHVBACmdMsg,
msg_disLVMBCmdMsg,
msg_disLVBCmdMsg
)
class PowerManagerApp:
def __init__(self, root):
self.root = root
# 解决字体模糊问题
style = ttk.Style()
style.configure('.', font=('Microsoft YaHei', 10))
self.simulation_HighVolBusFbMsg = msg_disHighVolBusFbMsg()
self.simulation_HighAVolBusFbMsg = msg_disHighAVolBusFbMsg()
self.simulation_LowMainBusFbMsg = msg_disLowMainBusFbMsg()
self.simulation_LowBusFbMsg = msg_disLowBusFbMsg()
self.simulation_HVBCmdMsg = msg_disHVBCmdMsg()
self.simulation_HVBACmdMsg = msg_disHVBACmdMsg()
self.simulation_LVMBCmdMsg = msg_disLVMBCmdMsg()
self.simulation_LVBCmdMsg = msg_disLVBCmdMsg()
# 菜单栏复选框状态变量
self.menu_checkbox_vars = {
'Start_Connection': tk.BooleanVar(value=False),
'Forward_Feedback': tk.BooleanVar(value=False),
'Transparent_Command': tk.BooleanVar(value=False),
'Simulation_Mode': tk.BooleanVar(value=False)
}
self.Start_Connection = self.menu_checkbox_vars['Start_Connection']
self.Start_Connection.trace_add('write', self.on_connection_changed)
self.Forward_Feedback = self.menu_checkbox_vars['Forward_Feedback']
self.Transparent_Command = self.menu_checkbox_vars['Transparent_Command']
self.Simulation_Mode = self.menu_checkbox_vars['Simulation_Mode']
# 添加模拟模式回调
self.Simulation_Mode.trace_add('write', self.on_simulation_mode_changed)
self.simulation_thread = None
self.simulation_running = False
self.root.title("电源管理系统")
self.root.tk.call('tk', 'scaling', 1.5) # 适配高DPI显示
# 移除固定窗口大小设置,实现自适应
self.root.minsize(800, 600) # 设置最小窗口大小
# 信息主机端口
self.udp_control_port = 5001
# self.udp_control_host = "192.168.0.223"
self.udp_control_host = "127.0.0.1"
# 本机端口
self.udp_ip = "127.0.0.1"
# self.udp_ip = "192.168.0.140"
self.udp_port = 7000
self.sock = socket.socket(socket.AF_INET, socket.SOCK_DGRAM)
self.sock.bind((self.udp_ip, self.udp_port))
# 高压配电板端口
self.disSysPortC1 = 6000
self.disSysHostC1 = '192.168.1.154'
# self.disSysHostC1 = '127.0.0.1'
# 仪表配电板端口
self.disSysPortC2 = 6000
self.disSysHostC2 = '192.168.1.158'
# self.disSysHostC2 = '127.0.0.1'
# 数据库配置
self.db = DB(os.path.join(os.path.dirname(__file__), 'test.db'))
self.db.connect()
# 状态数据 - 完全匹配udpMsg.py中的定义
self.status_data = {
"high_vol_bus": {
"breakers": {
"燃料电池断路器": 0,
"动力锂电池断路器": 0,
"推进电机断路器": 0,
"锂电池组仪表断路器": 0,
"DC/DC模块断路器": 0,
"艏高压配电盒断路器": 0,
"艉FT设备45断路器": 0,
"艉舵机开关1断路器": 0,
"艉舵机开关2断路器": 0,
"FB备用断路器": 0,
"TYZ备用断路器": 0,
"备用断路器": 0
},
"faults": {
"DC/DC故障1": 0,
"DC/DC故障2": 0
},
"insulation": {
"动力母线绝缘状态": 0,
"A母线绝缘状态": 0
},
"alarms": {
"仪表电源丢失信号": 0,
"应急电源丢失信号": 0
},
"voltage": {
"动力母线电压": 0.0,
"A母线电压": 0.0
},
"current": {
"动力母线电流": 0.0,
"DC/DC5模块电流": 0.0,
"推进电机控制箱电流": 0.0,
"A母线电流": 0.0,
"锂电池组仪表电流": 0.0,
"艏高压配电盒电流": 0.0,
"艉FT设备45电流": 0.0,
"TYZ备用开关电流": 0.0,
"艉舵机开关1电流": 0.0,
"备用电流1": 0.0,
"艉舵机开关2电流": 0.0,
"备用电流2": 0.0,
"FB备用开关电流": 0.0,
"备用电流3": 0.0
},
"cool_water_pressure": 0.0,
"dcdc_temp":0
},
"high_a_vol_bus": {
"breakers": {
"艏FT设备123断路器": 0,
"执行机构断路器": 0,
"桅舵机控制箱断路器": 0,
"XCZ断路器": 0,
"艏舵控制箱断路器": 0,
"开盖启动气缸断路器": 0
},
"alarms": {
"仪表电源故障": 0,
"应急电源故障": 0,
"进水报警": 0
},
"voltage": {
"B母线电压": 0.0
},
"current": {
"B母线电流": 0.0,
"艏FT设备123电流": 0.0,
"执行机构电流": 0.0,
"桅舵机控制箱电流": 0.0,
"XCZ电流": 0.0,
"艏舵控制箱电流": 0.0,
"开盖启动气缸电流": 0.0
}
},
"low_main_bus": {
"breakers": {
"锂电池组仪表断路器": 0,
"艏低压配电盒断路器": 0,
"单元4仪表48V断路器": 0,
"DC/C1直流配电板断路器": 0,
"备用断路器1": 0,
"备用断路器2": 0,
"应急锂电池组2断路器": 0
},
"alarms": {
"仪表电源故障": 0,
"应急电源故障": 0
},
"insulation": 0,
"voltage": {
"仪表母线电压": 0.0,
"应急2母线电压": 0.0
},
"current": {
"艏低压配电盒电流": 0.0,
"DC/C1仪表48V电流": 0.0,
"备用电流1": 0.0,
"应急锂电池组2电流": 0.0,
"锂电池组仪表电流": 0.0,
"单元4仪表48V电流": 0.0,
"备用电流2": 0.0,
"综合能量管理系统应急DC48V电流": 0.0,
"燃料电池安全系统应急DC48V电流": 0.0,
"PLC控制电源电流": 0.0
}
},
"low_bus": {
"breakers": {
"单元1断路器": 0,
"单元2断路器": 0,
"单元3断路器": 0,
"单元5断路器": 0,
"艏PZ设备断路器": 0,
"备用断路器1": 0,
"备用断路器2": 0,
"应急锂电池组1断路器": 0
},
"alarms": {
"仪表电源故障": 0,
"应急电源故障": 0,
"进水报警": 0
},
"voltage": {
"仪表母线电压": 0.0,
"应急1母线电压": 0.0
},
"current": {
"仪表母线电流": 0.0,
"单元1电流": 0.0,
"单元2电流": 0.0,
"单元3电流": 0.0,
"单元5电流": 0.0,
"艏PZ设备电流": 0.0,
"应急锂电池组1电流": 0.0
}
}
}
# 初始化界面
self.setup_ui()
# 初始化UDP接收线程(不自动启动)
self.running = False
self.recv_thread = threading.Thread(target=self.udp_receive_loop)
self.recv_thread.daemon = True
# 启动状态更新定时器
self.update_ui()
def setup_config_ui(self, parent):
"""创建通信配置窗口"""
config_window = tk.Toplevel(parent)
config_window.title("通信配置")
config_window.geometry("400x300")
# 本机配置
ttk.Label(config_window, text="本机配置").grid(row=0, column=0, padx=10, pady=5, sticky=tk.W)
ttk.Label(config_window, text="IP地址:").grid(row=1, column=0, padx=10, pady=5, sticky=tk.W)
self.local_ip_entry = ttk.Entry(config_window)
self.local_ip_entry.grid(row=1, column=1, padx=10, pady=5)
self.local_ip_entry.insert(0, self.udp_ip)
ttk.Label(config_window, text="端口:").grid(row=2, column=0, padx=10, pady=5, sticky=tk.W)
self.local_port_entry = ttk.Entry(config_window)
self.local_port_entry.grid(row=2, column=1, padx=10, pady=5)
self.local_port_entry.insert(0, str(self.udp_port))
# 高压配电板配置
ttk.Label(config_window, text="高压配电板配置").grid(row=3, column=0, padx=10, pady=5, sticky=tk.W)
ttk.Label(config_window, text="IP地址:").grid(row=4, column=0, padx=10, pady=5, sticky=tk.W)
self.high_vol_ip_entry = ttk.Entry(config_window)
self.high_vol_ip_entry.grid(row=4, column=1, padx=10, pady=5)
self.high_vol_ip_entry.insert(0, self.disSysHostC1)
ttk.Label(config_window, text="端口:").grid(row=5, column=0, padx=10, pady=5, sticky=tk.W)
self.high_vol_port_entry = ttk.Entry(config_window)
self.high_vol_port_entry.grid(row=5, column=1, padx=10, pady=5)
self.high_vol_port_entry.insert(0, str(self.disSysPortC1))
# 仪表配电板配置
ttk.Label(config_window, text="仪表配电板配置").grid(row=6, column=0, padx=10, pady=5, sticky=tk.W)
ttk.Label(config_window, text="IP地址:").grid(row=7, column=0, padx=10, pady=5, sticky=tk.W)
self.instrument_ip_entry = ttk.Entry(config_window)
self.instrument_ip_entry.grid(row=7, column=1, padx=10, pady=5)
self.instrument_ip_entry.insert(0, self.disSysHostC2)
ttk.Label(config_window, text="端口:").grid(row=8, column=0, padx=10, pady=5, sticky=tk.W)
self.instrument_port_entry = ttk.Entry(config_window)
self.instrument_port_entry.grid(row=8, column=1, padx=10, pady=5)
self.instrument_port_entry.insert(0, str(self.disSysPortC2))
# 信息主机配置
ttk.Label(config_window, text="信息主机配置").grid(row=9, column=0, padx=10, pady=5, sticky=tk.W)
ttk.Label(config_window, text="IP地址:").grid(row=10, column=0, padx=10, pady=5, sticky=tk.W)
self.control_host_entry = ttk.Entry(config_window)
self.control_host_entry.grid(row=10, column=1, padx=10, pady=5)
self.control_host_entry.insert(0, self.udp_control_host)
ttk.Label(config_window, text="端口:").grid(row=11, column=0, padx=10, pady=5, sticky=tk.W)
self.control_port_entry = ttk.Entry(config_window)
self.control_port_entry.grid(row=11, column=1, padx=10, pady=5)
self.control_port_entry.insert(0, str(self.udp_control_port))
# 保存按钮
save_btn = ttk.Button(config_window, text="保存配置", command=self.save_config)
save_btn.grid(row=12, column=0, columnspan=2, pady=10)
def setup_db_config_ui(self, parent):
"""创建数据库配置窗口"""
db_window = tk.Toplevel(parent)
db_window.title("数据库配置")
db_window.geometry("400x200")
# 数据库路径配置
ttk.Label(db_window, text="数据库路径:").grid(row=0, column=0, padx=10, pady=5, sticky=tk.W)
self.db_path_entry = ttk.Entry(db_window)
self.db_path_entry.grid(row=0, column=1, padx=10, pady=5)
self.db_path_entry.insert(0, os.path.dirname(self.db.db_path))
# 数据库名称配置
ttk.Label(db_window, text="数据库名称:").grid(row=1, column=0, padx=10, pady=5, sticky=tk.W)
self.db_name_entry = ttk.Entry(db_window)
self.db_name_entry.grid(row=1, column=1, padx=10, pady=5)
self.db_name_entry.insert(0, os.path.basename(self.db.db_path))
# 保存按钮
save_btn = ttk.Button(db_window, text="保存配置", command=self.save_db_config)
save_btn.grid(row=2, column=0, columnspan=2, pady=10)
def save_db_config(self):
"""保存数据库配置"""
try:
db_path = os.path.join(self.db_path_entry.get(), self.db_name_entry.get())
self.db.disconnect()
self.db = DB(db_path)
self.db.connect()
self.log_message(f"数据库配置已更新: {db_path}")
except Exception as e:
self.log_message(f"数据库配置保存失败: {str(e)}")
# 恢复原配置
self.db = DB(os.path.join(os.path.dirname(__file__), 'test.db'))
self.db.connect()
self.db = DB(os.path.join(os.path.dirname(__file__), 'test.db'))
self.db.connect()
def save_config(self):
"""保存配置"""
# 保存当前配置作为回滚用
old_ip = self.udp_ip
old_port = self.udp_port
old_host1 = self.disSysHostC1
old_port1 = self.disSysPortC1
old_host2 = self.disSysHostC2
old_port2 = self.disSysPortC2
try:
# 更新本机配置
self.udp_ip = self.local_ip_entry.get()
self.udp_port = int(self.local_port_entry.get())
# 更新高压配电板配置
self.disSysHostC1 = self.high_vol_ip_entry.get()
self.disSysPortC1 = int(self.high_vol_port_entry.get())
# 更新仪表配电板配置
self.disSysHostC2 = self.instrument_ip_entry.get()
self.disSysPortC2 = int(self.instrument_port_entry.get())
# 创建新socket并设置SO_REUSEADDR选项
new_sock = socket.socket(socket.AF_INET, socket.SOCK_DGRAM)
new_sock.setsockopt(socket.SOL_SOCKET, socket.SO_REUSEADDR, 1)
new_sock.settimeout(0.1) # 保持一致的超时设置
try:
new_sock.bind((self.udp_ip, self.udp_port))
except OSError as e:
self.log_message(f"绑定socket失败: {str(e)} (IP: {self.udp_ip}, 端口: {self.udp_port})")
new_sock.close()
raise
# 成功后再替换旧socket
old_sock = self.sock
self.sock = new_sock
old_sock.close()
self.log_message(f"成功绑定新socket (IP: {self.udp_ip}, 端口: {self.udp_port})")
self.log_message("通信配置已更新")
return True
except Exception as e:
# 恢复旧配置
self.udp_ip = old_ip
self.udp_port = old_port
self.disSysHostC1 = old_host1
self.disSysPortC1 = old_port1
self.disSysHostC2 = old_host2
self.disSysPortC2 = old_port2
self.log_message(f"配置保存失败: {str(e)}")
# 确保socket仍然有效
if not hasattr(self, 'sock') or not isinstance(self.sock, socket.socket):
self.sock = socket.socket(socket.AF_INET, socket.SOCK_DGRAM)
self.sock.settimeout(0.1)
self.sock.bind((self.udp_ip, self.udp_port))
return False
def setup_ui(self):
"""初始化用户界面"""
# 创建菜单栏
menubar = tk.Menu(self.root)
config_menu = tk.Menu(menubar, tearoff=0)
config_menu.add_checkbutton(label="启动连接", variable=self.menu_checkbox_vars['Start_Connection'])
config_menu.add_command(label="通信配置", command=lambda: self.setup_config_ui(self.root))
config_menu.add_command(label="数据库配置", command=lambda: self.setup_db_config_ui(self.root))
menubar.add_cascade(label="配置", menu=config_menu)
# 添加选项菜单
options_menu = tk.Menu(menubar, tearoff=0)
options_menu.add_checkbutton(label="转发反馈", variable=self.menu_checkbox_vars['Forward_Feedback'])
options_menu.add_checkbutton(label="透传指令", variable=self.menu_checkbox_vars['Transparent_Command'])
options_menu.add_checkbutton(label="模拟模式", variable=self.menu_checkbox_vars['Simulation_Mode'])
menubar.add_cascade(label="通信选项", menu=options_menu)
dis_options_menu = tk.Menu(menubar, tearoff=0)
dis_options_menu.add_command(label="动力母线操作", command=lambda: self.show_popup_window("动力母线操作"))
dis_options_menu.add_command(label="艏部高压操作", command=lambda: self.show_popup_window("艏部高压操作"))
dis_options_menu.add_command(label="仪表母线操作", command=lambda: self.show_popup_window("仪表母线操作"))
dis_options_menu.add_command(label="艏部低压操作", command=lambda: self.show_popup_window("艏部低压操作"))
menubar.add_cascade(label="配电操作", menu=dis_options_menu)
menubar.add_command(label="DCDC状态", command=lambda: self.show_popup_window("DCDC状态"))
menubar.add_command(label="复合管控面板", command=lambda: self.show_compound_control_window("复合管控面板"))
menubar.add_command(label="软件说明", command=lambda: self.show_help_window("程序说明"))
# 配置菜单栏
self.root.config(menu=menubar)
# 主框架
main_frame = ttk.Frame(self.root, padding="10")
main_frame.pack(fill=tk.BOTH, expand=True)
self.root.grid_rowconfigure(0, weight=1)
self.root.grid_columnconfigure(0, weight=1)
# 状态显示区
status_frame = ttk.LabelFrame(main_frame, text="系统状态", padding="10")
status_frame.pack(fill=tk.BOTH, expand=True, pady=5)
# 创建Canvas和Scrollbar
self.notebook = ttk.Notebook(status_frame)
self.notebook.pack(fill=tk.BOTH, expand=True, padx=5, pady=5)
# 高压母线状态页
high_vol_frame = ttk.Frame(self.notebook)
self.notebook.add(high_vol_frame, text="动力母线状态")
self.setup_high_vol_ui(high_vol_frame)
# 高压A母线状态页
high_a_vol_frame = ttk.Frame(self.notebook)
self.notebook.add(high_a_vol_frame, text="艏部高压状态")
self.setup_high_a_vol_ui(high_a_vol_frame)
# 仪表主母线状态页
low_main_frame = ttk.Frame(self.notebook)
self.notebook.add(low_main_frame, text="仪表母线状态")
self.setup_low_main_ui(low_main_frame)
# 仪表母线状态页
low_bus_frame = ttk.Frame(self.notebook)
self.notebook.add(low_bus_frame, text="艏部低压状态")
self.setup_low_bus_ui(low_bus_frame)
# 日志区
log_frame = ttk.LabelFrame(main_frame, text="系统日志", padding="10")
log_frame.pack(fill=tk.BOTH, expand=True, pady=5)
# 使用grid布局
self.log_text = tk.Text(log_frame, height=10, state=tk.DISABLED)
scrollbar = ttk.Scrollbar(log_frame, orient=tk.VERTICAL, command=self.log_text.yview)
# 配置grid布局
self.log_text.grid(row=0, column=0, sticky="nsew")
scrollbar.grid(row=0, column=1, sticky="ns")
# 设置权重使文本框可扩展
log_frame.grid_rowconfigure(0, weight=1)
log_frame.grid_columnconfigure(0, weight=1)
self.log_text.config(yscrollcommand=scrollbar.set)
def setup_hvb_control(self, parent):
"""设置动力母线配电指令控制面板"""
frame = ttk.LabelFrame(parent, text="动力母线配电指令", padding="10")
frame.pack(fill=tk.X, pady=5)
# 断路器控制按钮
breaker_names = [
"燃料电池断路器", "动力锂电池断路器", "推进电机断路器",
"锂电池组仪表断路器", "DC/DC模块断路器", "艏高压配电盒断路器",
"艉FT设备45断路器", "艉舵机开关1断路器", "艉舵机开关2断路器",
"FB备用断路器", "TYZ备用断路器", "备用断路器", "DC/DC模块启动","冷却系统启动"
]
for i, name in enumerate(breaker_names):
row = i // 3
col = i % 3
btn_frame = ttk.Frame(frame)
btn_frame.grid(row=row, column=col, padx=10, pady=2, sticky=tk.W)
ttk.Label(btn_frame, text=name, width=20).pack(side=tk.LEFT)
on_btn = ttk.Button(btn_frame, text="合", width=3,
command=lambda n=name: self.send_hvb_cmd(n, 0x55))
on_btn.pack(side=tk.LEFT, padx=2)
off_btn = ttk.Button(btn_frame, text="分", width=3,
command=lambda n=name: self.send_hvb_cmd(n, 0xAA))
off_btn.pack(side=tk.LEFT, padx=2)
def setup_hvba_control(self, parent):
"""设置动力汇流排A配电指令控制面板"""
frame = ttk.LabelFrame(parent, text="动力汇流排A配电指令", padding="10")
frame.pack(fill=tk.X, pady=5)
# 断路器控制按钮
breaker_names = [
"艏FT设备123断路器", "执行机构断路器", "桅舵机控制箱断路器",
"XCZ断路器", "艏舵控制箱断路器", "开盖启动气缸断路器"
]
for i, name in enumerate(breaker_names):
row = i // 3
col = i % 3
btn_frame = ttk.Frame(frame)
btn_frame.grid(row=row, column=col, padx=10, pady=2, sticky=tk.W)
ttk.Label(btn_frame, text=name, width=20).pack(side=tk.LEFT)
on_btn = ttk.Button(btn_frame, text="合", width=3,
command=lambda n=name: self.send_hvba_cmd(n, 0x55))
on_btn.pack(side=tk.LEFT, padx=2)
off_btn = ttk.Button(btn_frame, text="分", width=3,
command=lambda n=name: self.send_hvba_cmd(n, 0xAA))
off_btn.pack(side=tk.LEFT, padx=2)
def setup_lvmb_control(self, parent):
"""设置仪表母线配电指令控制面板"""
frame = ttk.LabelFrame(parent, text="仪表母线配电指令", padding="10")
frame.pack(fill=tk.X, pady=5)
# 断路器控制按钮
breaker_names = [
"锂电池组仪表断路器", "艏低压配电盒断路器", "单元4仪表48V断路器",
"DC/C1直流配电板断路器", "备用断路器1", "备用断路器2",
"应急锂电池组2断路器"
]
for i, name in enumerate(breaker_names):
row = i // 3
col = i % 3
btn_frame = ttk.Frame(frame)
btn_frame.grid(row=row, column=col, padx=10, pady=2, sticky=tk.W)
ttk.Label(btn_frame, text=name, width=20).pack(side=tk.LEFT)
on_btn = ttk.Button(btn_frame, text="合", width=3,
command=lambda n=name: self.send_lvmb_cmd(n, 0x55))
on_btn.pack(side=tk.LEFT, padx=2)
off_btn = ttk.Button(btn_frame, text="分", width=3,
command=lambda n=name: self.send_lvmb_cmd(n, 0xaa))
off_btn.pack(side=tk.LEFT, padx=2)
def setup_lvb_control(self, parent):
"""设置仪表汇流排配电指令控制面板"""
frame = ttk.LabelFrame(parent, text="仪表汇流排配电指令", padding="10")
frame.pack(fill=tk.X, pady=5)
# 断路器控制按钮
breaker_names = [
"单元1断路器", "单元2断路器", "单元3断路器",
"单元5断路器", "艏PZ设备断路器", "备用断路器1",
"备用断路器2", "应急锂电池组1断路器"
]
for i, name in enumerate(breaker_names):
row = i // 3
col = i % 3
btn_frame = ttk.Frame(frame)
btn_frame.grid(row=row, column=col, padx=10, pady=2, sticky=tk.W)
ttk.Label(btn_frame, text=name, width=20).pack(side=tk.LEFT)
on_btn = ttk.Button(btn_frame, text="合", width=3,
command=lambda n=name: self.send_lvb_cmd(n, 0x55))
on_btn.pack(side=tk.LEFT, padx=2)
off_btn = ttk.Button(btn_frame, text="分", width=3,
command=lambda n=name: self.send_lvb_cmd(n, 0xaa))
off_btn.pack(side=tk.LEFT, padx=2)
def send_hvb_cmd(self, breaker_name, state):
"""发送动力母线配电指令"""
# print(breaker_name,state)
cmd = msg_disHVBCmdMsg()
if breaker_name == "燃料电池断路器":
cmd.fuelCellCircuitBreaker = state
elif breaker_name == "动力锂电池断路器":
cmd.powerLithiumBatteryCircuitBreaker = state
elif breaker_name == "推进电机断路器":
cmd.propulsionMotorCircuitBreaker = state
elif breaker_name == "锂电池组仪表断路器":
cmd.lithiumBatteryGroupInstrumentCircuitBreaker = state
elif breaker_name == "DC/DC模块断路器":
cmd.dcDc5ModuleCircuitBreaker = state
elif breaker_name == "艏高压配电盒断路器":
cmd.bowHighVoltageDistributionBoxCircuitBreaker = state
elif breaker_name == "艉FT设备45断路器":
cmd.sternFTDevice45CircuitBreaker = state
elif breaker_name == "艉舵机开关1断路器":
cmd.sternRudderSwitch1CircuitBreaker = state
elif breaker_name == "艉舵机开关2断路器":
cmd.sternRudderSwitch2CircuitBreaker = state
elif breaker_name == "FB备用断路器":
cmd.fbReservedCircuitBreaker = state
elif breaker_name == "TYZ备用断路器":
cmd.tyzReservedCircuitBreaker = state
elif breaker_name == "备用断路器":
cmd.reservedCircuitBreaker = state
elif breaker_name == "DC/DC模块启动":
cmd.dcdc5Module = state
elif breaker_name == "冷却系统启动":
cmd.coolingSystem = state
if(self.Simulation_Mode):
if breaker_name == "燃料电池断路器":
self.simulation_HVBCmdMsg.fuelCellCircuitBreaker = state
elif breaker_name == "动力锂电池断路器":
self.simulation_HVBCmdMsg.powerLithiumBatteryCircuitBreaker = state
elif breaker_name == "推进电机断路器":
self.simulation_HVBCmdMsg.propulsionMotorCircuitBreaker = state
elif breaker_name == "锂电池组仪表断路器":
self.simulation_HVBCmdMsg.lithiumBatteryGroupInstrumentCircuitBreaker = state
elif breaker_name == "DC/DC模块断路器":
self.simulation_HVBCmdMsg.dcDc5ModuleCircuitBreaker = state
elif breaker_name == "艏高压配电盒断路器":
self.simulation_HVBCmdMsg.bowHighVoltageDistributionBoxCircuitBreaker = state
elif breaker_name == "艉FT设备45断路器":
self.simulation_HVBCmdMsg.sternFTDevice45CircuitBreaker = state
elif breaker_name == "艉舵机开关1断路器":
self.simulation_HVBCmdMsg.sternRudderSwitch1CircuitBreaker = state
elif breaker_name == "艉舵机开关2断路器":
self.simulation_HVBCmdMsg.sternRudderSwitch2CircuitBreaker = state
elif breaker_name == "FB备用断路器":
self.simulation_HVBCmdMsg.fbReservedCircuitBreaker = state
elif breaker_name == "TYZ备用断路器":
self.simulation_HVBCmdMsg.tyzReservedCircuitBreaker = state
elif breaker_name == "备用断路器":
self.simulation_HVBCmdMsg.reservedCircuitBreaker = state
elif breaker_name == "DC/DC模块启动":
self.simulation_HVBCmdMsg.dcdc5Module = state
elif breaker_name == "冷却系统启动":
self.simulation_HVBCmdMsg.coolingSystem = state
self.send_udp_command(cmd.pack(), self.disSysHostC1, self.disSysPortC1)
self.db.insertHighVolBusCmd(cmd)
if state==0x55:
buntu=True
else:
buntu=False
self.log_message(f"发送动力母线配电指令: {breaker_name} {'合' if buntu else '分'}")
def send_hvba_cmd(self, breaker_name, state):
"""发送动力汇流排A配电指令"""
cmd = msg_disHVBACmdMsg()
if breaker_name == "艏FT设备123断路器":
cmd.bowFTDevice123CircuitBreaker = state
elif breaker_name == "执行机构断路器":
cmd.actuatorCircuitBreaker = state
elif breaker_name == "桅舵机控制箱断路器":
cmd.mastSteeringGearControlBoxCircuitBreaker = state
elif breaker_name == "XCZ断路器":
cmd.xczCircuitBreaker = state
elif breaker_name == "艏舵控制箱断路器":
cmd.bowRudderControlBoxCircuitBreaker = state
elif breaker_name == "开盖启动气缸断路器":
cmd.openWaterCoverStartCylinderCircuitBreaker = state
if state==0x55:
buntu=True
else:
buntu=False
if(self.Simulation_Mode):
if breaker_name == "艏FT设备123断路器":
self.simulation_HVBACmdMsg.bowFTDevice123CircuitBreaker = state
elif breaker_name == "执行机构断路器":
self.simulation_HVBACmdMsg.actuatorCircuitBreaker = state
elif breaker_name == "桅舵机控制箱断路器":
self.simulation_HVBACmdMsg.mastSteeringGearControlBoxCircuitBreaker = state
elif breaker_name == "XCZ断路器":
self.simulation_HVBACmdMsg.xczCircuitBreaker = state
elif breaker_name == "艏舵控制箱断路器":
self.simulation_HVBACmdMsg.bowRudderControlBoxCircuitBreaker = state
elif breaker_name == "开盖启动气缸断路器":
self.simulation_HVBACmdMsg.openWaterCoverStartCylinderCircuitBreaker = state
self.log_message(f"发送动力汇流排A配电指令: {breaker_name} {'合' if buntu else '分'}")
# self.send_udp_command(cmd.pack())
self.send_udp_command(cmd.pack(), self.disSysHostC1, self.disSysPortC1)
self.db.insertHighAVolBusCmd(cmd)
def send_lvmb_cmd(self, breaker_name, state):
"""发送仪表母线配电指令"""
cmd = msg_disLVMBCmdMsg()
if breaker_name == "锂电池组仪表断路器":
cmd.lithiumBatteryGroupInstrumentCircuitBreaker = state
elif breaker_name == "艏低压配电盒断路器":
cmd.bowLowVoltageDistributionBoxCircuitBreaker = state
elif breaker_name == "单元4仪表48V断路器":
cmd.unit4InstrumentDC48VCircuitBreaker = state
elif breaker_name == "DC/C1直流配电板断路器":
cmd.dcC1DCDistributionPanelCircuitBreaker = state
elif breaker_name == "备用断路器1":
cmd.reservedCircuitBreaker1 = state
elif breaker_name == "备用断路器2":
cmd.reservedCircuitBreaker2 = state
elif breaker_name == "应急锂电池组2断路器":
cmd.emergencyLithiumBatteryGroup2CircuitBreaker = state
if(self.Simulation_Mode):
if breaker_name == "锂电池组仪表断路器":
self.simulation_LVMBCmdMsg.lithiumBatteryGroupInstrumentCircuitBreaker = state
elif breaker_name == "艏低压配电盒断路器":
self.simulation_LVMBCmdMsg.bowLowVoltageDistributionBoxCircuitBreaker = state
elif breaker_name == "单元4仪表48V断路器":
self.simulation_LVMBCmdMsg.unit4InstrumentDC48VCircuitBreaker = state
elif breaker_name == "DC/C1直流配电板断路器":
self.simulation_LVMBCmdMsg.dcC1DCDistributionPanelCircuitBreaker = state
elif breaker_name == "备用断路器1":
self.simulation_LVMBCmdMsg.reservedCircuitBreaker1 = state
elif breaker_name == "备用断路器2":
self.simulation_LVMBCmdMsg.reservedCircuitBreaker2 = state
# self.send_udp_command(cmd.pack())
print(breaker_name,state)
print(cmd)
# print(cmd.unpack())
self.send_udp_command(cmd.pack(), self.disSysHostC2, self.disSysPortC2)
self.db.insertLowMainBusCmd(cmd)
if state==0x55:
buntu=True
else:
buntu=False
self.log_message(f"发送仪表母线配电指令: {breaker_name} {'合' if buntu else '分'}")
def send_lvb_cmd(self, breaker_name, state):
"""发送仪表汇流排配电指令"""
cmd = msg_disLVBCmdMsg()
if breaker_name == "单元1断路器":
cmd.unit1CircuitBreaker = state
elif breaker_name == "单元2断路器":
cmd.unit2CircuitBreaker = state
elif breaker_name == "单元3断路器":
cmd.unit3CircuitBreaker = state
elif breaker_name == "单元5断路器":
cmd.unit5CircuitBreaker = state
elif breaker_name == "艏PZ设备断路器":
cmd.bowPZDeviceCircuitBreaker = state
elif breaker_name == "备用断路器1":
cmd.reservedCircuitBreaker1 = state
elif breaker_name == "备用断路器2":
cmd.reservedCircuitBreaker2 = state
elif breaker_name == "应急锂电池组1断路器":
cmd.emergencyLithiumBatteryGroup1CircuitBreaker = state
if(self.Simulation_Mode):
if breaker_name == "单元1断路器":
self.simulation_LVBCmdMsg.unit1CircuitBreaker = state
elif breaker_name == "单元2断路器":
self.simulation_LVBCmdMsg.unit2CircuitBreaker = state
elif breaker_name == "单元3断路器":
self.simulation_LVBCmdMsg.unit3CircuitBreaker = state
elif breaker_name == "单元5断路器":
self.simulation_LVBCmdMsg.unit5CircuitBreaker = state
elif breaker_name == "艏PZ设备断路器":
self.simulation_LVBCmdMsg.bowPZDeviceCircuitBreaker = state
elif breaker_name == "备用断路器1":
self.simulation_LVBCmdMsg.reservedCircuitBreaker1 = state
elif breaker_name == "备用断路器2":
self.simulation_LVBCmdMsg.reservedCircuitBreaker2 = state
elif breaker_name == "应急锂电池组1断路器":
self.simulation_LVBCmdMsg.emergencyLithiumBatteryGroup1CircuitBreaker = state
# self.send_udp_command(cmd.pack())
self.send_udp_command(cmd.pack(), self.disSysHostC2, self.disSysPortC2)
self.db.insertLowBusCmd(cmd)
if state==0x55:
buntu=True
else:
buntu=False
self.log_message(f"发送仪表汇流排配电指令: {breaker_name} {'合' if buntu else '分'}")
def udp_receive_loop(self):
"""UDP接收消息循环"""
while self.running:
if not self.Start_Connection.get():
time.sleep(0.1) # 连接未启动时短暂休眠
continue
try:
data, addr = self.sock.recvfrom(1024)
# 转发消息到上位机
if self.Forward_Feedback.get():
self.send_udp_command(data, self.udp_control_host, self.udp_control_port)
self.process_udp_message(data)
if self.Transparent_Command.get():
msg_id = int.from_bytes(data[2:4], byteorder='little')
if msg_id == 0x0001:
self.send_udp_command(data, self.disSysHostC1, self.disSysPortC1)
self.simulation_HVBCmdMsg.unpack(data)
elif msg_id == 0x0002:
self.send_udp_command(data, self.disSysHostC1, self.disSysPortC1)
self.simulation_HVBACmdMsg.unpack(data)
elif msg_id == 0x0003:
self.send_udp_command(data, self.disSysHostC2, self.disSysPortC2)
self.simulation_LVMBCmdMsg.unpack(data)
elif msg_id == 0x0004:
self.send_udp_command(data, self.disSysHostC2, self.disSysPortC2)
self.simulation_LVBCmdMsg.unpack(data)
except socket.timeout:
continue # 忽略超时错误
except Exception as e:
self.log_message(f"接收错误: {str(e)}")
time.sleep(0.1) # 发生错误时短暂休眠
def setup_dcdc_status(self, parent):
frame = parent
# 故障状态 - 扩展显示所有故障位
fault_labels1 = ["过温关机", "输出过流", "输出过压", "输出欠压", "输入过压", "输入欠压", "输出短路保护", "内部故障"]
fault_labels2 = ["通信故障", "工作状态", "冷却泵1故障", "冷却泵2故障", "冷却水泄漏", "冷却泵1运行状态", "冷却泵2运行状态", "保留"]
# DC/DC故障显示
fault_frame = ttk.Frame(frame)
fault_frame.grid(row=10, column=0, columnspan=4, sticky=tk.W, pady=2)
# 定义样式
style = ttk.Style()
style.configure("FaultTitle.TLabel", font=("Microsoft YaHei", 10, "bold"), background="#f0f0f0", padding=5)
style.configure("FaultLabel.TLabel", font=("Microsoft YaHei", 9))
ttk.Label(fault_frame, text="DC/DC状态字1:", style="FaultTitle.TLabel").grid(row=0, column=0, columnspan=4, sticky=tk.W, pady=5)
# 只在第一次初始化时创建列表
if not hasattr(self, 'high_vol_dcdc_fault1_bits'):
self.high_vol_dcdc_fault1_bits = []
self.high_vol_dcdc_fault2_bits = []
# 清空现有内容
self.high_vol_dcdc_fault1_bits.clear()
self.high_vol_dcdc_fault2_bits.clear()
for i, label in enumerate(fault_labels1):
pair_frame = tk.Frame(fault_frame, borderwidth=1, relief="solid", padx=4, pady=2)
pair_frame.grid(row=1+i//4, column=i%4, padx=5, pady=5, sticky=tk.W)
ttk.Label(pair_frame, text=label, style="FaultLabel.TLabel").pack(side=tk.LEFT, padx=(0, 5))
canvas = tk.Canvas(pair_frame, width=20, height=20, bg="white", highlightthickness=0)
canvas.create_oval(2, 2, 18, 18, fill="white", outline="gray")
canvas.pack(side=tk.RIGHT)
self.high_vol_dcdc_fault1_bits.append(canvas)
ttk.Label(fault_frame, text="DC/DC状态字2:", style="FaultTitle.TLabel").grid(row=3, column=0, columnspan=4, sticky=tk.W, pady=5)
for i, label in enumerate(fault_labels2):
pair_frame = tk.Frame(fault_frame, borderwidth=1, relief="solid", padx=4, pady=2)
pair_frame.grid(row=4+i//4, column=i%4, padx=5, pady=5, sticky=tk.W)
ttk.Label(pair_frame, text=label, style="FaultLabel.TLabel").pack(side=tk.LEFT, padx=(0, 5))
canvas = tk.Canvas(pair_frame, width=20, height=20, bg="white", highlightthickness=0)
canvas.create_oval(2, 2, 18, 18, fill="white", outline="gray")
canvas.pack(side=tk.RIGHT)
self.high_vol_dcdc_fault2_bits.append(canvas)
def setup_high_vol_ui(self, parent):
"""设置高压母线状态界面"""
# 初始化故障位列表
self.high_vol_dcdc_fault1_bits = []
self.high_vol_dcdc_fault2_bits = []
frame = ttk.LabelFrame(parent, text="高压母线状态")
frame.pack(fill=tk.BOTH, expand=True, padx=2, pady=2)
# 使用网格布局管理器
frame.grid_columnconfigure(0, weight=1)
frame.grid_columnconfigure(1, weight=1)
frame.grid_columnconfigure(2, weight=1)
frame.grid_columnconfigure(3, weight=1)
# 电压与断路器统一显示区域
status_frame = ttk.LabelFrame(frame, text="电压与断路器状态", padding=8)
status_frame.grid(row=0, column=0, columnspan=6, sticky=tk.W + tk.E, padx=8, pady=8)
# 电压显示(横向布局)
voltage_items = [
("动力母线电压(V):", "power_voltage"),
("艏部高压电压(V):", "a_voltage")
]
for i, (label_text, varname) in enumerate(voltage_items):
sub_frame = ttk.Frame(status_frame)
sub_frame.grid(row=0, column=i, padx=10, pady=4, sticky=tk.W)
ttk.Label(sub_frame, text=label_text, width=20, anchor="w").pack(side=tk.LEFT)
label_var = ttk.Label(sub_frame, text="0.0V", width=10, anchor="e", relief="groove")
label_var.pack(side=tk.RIGHT)
setattr(self, f"high_vol_{varname}", label_var)
# 断路器状态标签
ttk.Label(status_frame, text="断路器状态:", font=("Arial", 10, "bold")).grid(row=1, column=0, columnspan=6, sticky=tk.W, pady=(10, 4))
# 断路器状态显示区域
self.high_vol_breakers = {}
breaker_names = list(self.status_data["high_vol_bus"]["breakers"].keys())
columns_per_row = 4 # 每行 4 个断路器显示块
for i, name in enumerate(breaker_names):
row = 2 + i // columns_per_row
col = i % columns_per_row
# 每个断路器显示块:使用 Frame 带边框
breaker_frame = tk.Frame(status_frame, relief="solid", borderwidth=1, padx=6, pady=2)
breaker_frame.grid(row=row, column=col, padx=6, pady=4, sticky=tk.W)
# 名称标签
ttk.Label(breaker_frame, text=name, width=20, anchor="w").pack(side=tk.LEFT)
# 圆形指示灯
canvas = tk.Canvas(breaker_frame, width=18, height=18, bg="white", highlightthickness=0)
canvas.create_oval(2, 2, 16, 16, fill="white", outline="gray")
canvas.pack(side=tk.RIGHT)
self.high_vol_breakers[name] = canvas
# self.setup_dcdc_status(frame)
# # 绝缘状态 - 详细显示
# ttk.Label(frame, text="动力母线绝缘:").grid(row=16, column=0, sticky=tk.W)
# self.high_vol_power_insulation = ttk.Label(frame, text="正常")
# self.high_vol_power_insulation.grid(row=16, column=1, sticky=tk.W)
# ttk.Label(frame, text="A母线绝缘:").grid(row=16, column=2, sticky=tk.W)
# self.high_vol_a_insulation = ttk.Label(frame, text="正常")
# self.high_vol_a_insulation.grid(row=16, column=3, sticky=tk.W)
# 电流值显示分组框
current_group = ttk.LabelFrame(frame, text="电流值显示", padding=10)
current_group.grid(row=16, column=0, columnspan=6, sticky=tk.W+tk.E, padx=10, pady=10)
# 创建统一的显示区域(LabelFrame)
status_group = ttk.LabelFrame(frame, text="高压电系统状态", padding=10)
status_group.grid(row=16, column=0, columnspan=6, sticky=tk.W + tk.E, padx=10, pady=10)
# 所有参数标签及属性名
status_items = [
("动力母线电流(A):", "powerBusCurrent"),
("A汇流排电流(A):", "busbarACurrent"),
("DC/DC5模块电流(A):", "dcDc5ModuleCurrent"),
("推进电机控制箱电流(A):", "propulsionMotorControlBoxCurrent"),
("锂电池组(仪表)电流(A):", "lithiumBatteryGroupMeterCurrent"),
("艏部高压配电箱电流(A):", "bowHighVoltageDistributionBoxCurrent"),
("艉部FT装置4/5电流(A):", "sternFTDevice45Current"),
("TYZ预留开关电流(A):", "tyzReservedSwitchCurrent"),
("艉舵开关1电流(A):", "sternRudderSwitch1Current"),
("艉舵开关2电流(A):", "sternRudderSwitch2Current"),
("FB预留开关电流(A):", "fbReservedSwitchCurrent"),
("备用电流1(A):", "reservedCurrent1"),
("备用电流2(A):", "reservedCurrent2"),
("备用电流3(A):", "reservedCurrent3"),
("冷却水压力(MPa):", "cool_water_pressure"),
("DC/DC温度(℃):", "dcdc_temp"),
("仪表失电信号:", "losspower_insulation"),
("应急失电信号:", "loss_emerpower_insulation"),
("动力母线绝缘:", "power_insulation"),
("艏高压绝缘:", "a_insulation")
]
# 每行显示几列(可根据实际界面宽度调整)
columns_per_row = 3
# 布局显示
for i, (label_text, varname) in enumerate(status_items):
row = i // columns_per_row
col = i % columns_per_row
# 每个参数一个子 Frame(横向排列)
item_frame = ttk.Frame(status_group)
item_frame.grid(row=row, column=col, sticky=tk.W, padx=8, pady=3)
ttk.Label(item_frame, text=label_text, width=26, anchor="w").pack(side=tk.LEFT)
label_var = ttk.Label(item_frame, text="0.0", width=10, anchor="e", relief="groove")
label_var.pack(side=tk.RIGHT)
# 保存变量引用
setattr(self, f"high_vol_{varname}", label_var)
def setup_high_a_vol_ui(self, parent):
"""设置高压A母线状态界面"""
frame = ttk.LabelFrame(parent, text="高压A母线状态")
frame.pack(fill=tk.BOTH, expand=True, padx=5, pady=5)
# 使用网格布局管理器 - 调整为3列
frame.grid_columnconfigure(0, weight=1)
frame.grid_columnconfigure(1, weight=1)
frame.grid_columnconfigure(2, weight=1)
# 电压与断路器统一显示区域
status_frame = ttk.LabelFrame(frame, text="电压与断路器状态", padding=5)
status_frame.grid(row=0, column=0, columnspan=3, sticky=tk.W + tk.E, padx=5, pady=5)
# 电压显示(横向布局)
voltage_frame = ttk.Frame(status_frame)
voltage_frame.grid(row=0, column=0, padx=10, pady=4, sticky=tk.W)
ttk.Label(voltage_frame, text="汇流排B电压(V):", width=20, anchor="w").pack(side=tk.LEFT)
self.high_a_vol_voltage = ttk.Label(voltage_frame, text="0.0V", width=10, anchor="e", relief="groove")
self.high_a_vol_voltage.pack(side=tk.RIGHT)
# 断路器状态标签
ttk.Label(status_frame, text="断路器状态:", font=("Arial", 10, "bold")).grid(row=1, column=0, columnspan=6, sticky=tk.W, pady=(10, 4))
# 断路器状态显示区域
self.high_a_vol_breakers = {}
breaker_names = list(self.status_data["high_a_vol_bus"]["breakers"].keys())
columns_per_row = 3 # 每行3个断路器显示块
for i, name in enumerate(breaker_names):
row = 2 + i // columns_per_row
col = i % columns_per_row
# 每个断路器显示块:使用Frame带边框
breaker_frame = tk.Frame(status_frame, relief="solid", borderwidth=1, padx=6, pady=2)
breaker_frame.grid(row=row, column=col, padx=6, pady=4, sticky=tk.W)
# 名称标签
ttk.Label(breaker_frame, text=name, width=20, anchor="w").pack(side=tk.LEFT)
# 圆形指示灯
canvas = tk.Canvas(breaker_frame, width=18, height=18, bg="white", highlightthickness=0)
canvas.create_oval(2, 2, 16, 16, fill="white", outline="gray")
canvas.pack(side=tk.RIGHT)
self.high_a_vol_breakers[name] = canvas
# 创建统一的显示区域(LabelFrame)
status_group = ttk.LabelFrame(frame, text="艏部高压状态", padding=5)
status_group.grid(row=2, column=0, columnspan=3, sticky=tk.W + tk.E, padx=5, pady=5)
# 所有参数标签及属性名
status_items = [
("汇流排B电流(A):", "current"),
("艏部FT设备123电流(A):", "bow_ft_current"),
("启闭机构电流(A):", "actuator_current"),
("桅杆舵机控制箱电流(A):", "mast_steering_current"),
("XCZ电流(A):", "xcz_current"),
("艏舵控制箱电流(A):", "bow_rudder_current"),
("敞水盖启动电缸电流(A):", "open_cover_current"),
("仪表电源失电信号:", "instrument_power_fault"),
("应急电源失电信号:", "emergency_power_fault"),
("进水报警:", "water_alarm")
]
# 每行显示3列
columns_per_row = 3
# 布局显示
for i, (label_text, varname) in enumerate(status_items):
row = i // columns_per_row
col = i % columns_per_row
# 每个参数一个子Frame(横向排列)
item_frame = ttk.Frame(status_group)
item_frame.grid(row=row, column=col, sticky=tk.W, padx=8, pady=3)
ttk.Label(item_frame, text=label_text, width=26, anchor="w").pack(side=tk.LEFT)
label_var = ttk.Label(item_frame, text="0.0", width=10, anchor="e", relief="groove")
label_var.pack(side=tk.RIGHT)
# 保存变量引用
setattr(self, f"high_a_vol_{varname}", label_var)
def process_udp_message(self, data):
"""处理接收到的UDP消息"""
try:
msg_id = int.from_bytes(data[2:4], byteorder='little')
# print('----------------------------',hex(msg_id))
if msg_id == 0x0005: # 高压母线状态
msg = msg_disHighVolBusFbMsg()
if msg.unpack(data):
self.db.insertHighVolBusData(msg)
bus = self.status_data["high_vol_bus"]
bus["voltage"]["动力母线电压"] = msg.powerBusVoltage / 10.0
bus["voltage"]["A母线电压"] = msg.busbarAVoltage / 10.0
bus["current"]["动力母线电流"] = msg.powerBusCurrent / 10.0
bus["current"]["DC/DC5模块电流"] = msg.dcDc5ModuleCurrent / 10.0
bus["current"]["推进电机控制箱电流"] = msg.propulsionMotorControlBoxCurrent / 10.0
bus["current"]["A母线电流"] = msg.busbarACurrent / 10.0
bus["current"]["锂电池组仪表电流"] = msg.lithiumBatteryGroupMeterCurrent / 10.0
bus["current"]["艏高压配电盒电流"] = msg.bowHighVoltageDistributionBoxCurrent / 10.0
bus["current"]["艉FT设备45电流"] = msg.sternFTDevice45Current / 10.0
bus["current"]["TYZ备用开关电流"] = msg.tyzReservedSwitchCurrent / 10.0
bus["current"]["艉舵机开关1电流"] = msg.sternRudderSwitch1Current / 10.0
bus["current"]["备用电流1"] = msg.reservedCurrent1 / 10.0
bus["current"]["艉舵机开关2电流"] = msg.sternRudderSwitch2Current / 10.0
bus["current"]["备用电流2"] = msg.reservedCurrent2 / 10.0
bus["current"]["FB备用开关电流"] = msg.fbReservedSwitchCurrent / 10.0
bus["current"]["备用电流3"] = msg.reservedCurrent3 / 10.0
bus["breakers"]["燃料电池断路器"] = msg.fuelCellCircuitBreaker
bus["breakers"]["动力锂电池断路器"] = msg.powerLithiumBatteryCircuitBreaker
bus["breakers"]["推进电机断路器"] = msg.propulsionMotorCircuitBreaker
bus["breakers"]["锂电池组仪表断路器"] = msg.lithiumBatteryGroupInstrumentCircuitBreaker
bus["breakers"]["DC/DC模块断路器"] = msg.dcDc5ModuleCircuitBreaker
bus["breakers"]["艏高压配电盒断路器"] = msg.bowHighVoltageDistributionBoxCircuitBreaker
bus["breakers"]["艉FT设备45断路器"] = msg.sternFTDevice45CircuitBreaker
bus["breakers"]["艉舵机开关1断路器"] = msg.sternRudderSwitch1CircuitBreaker
bus["breakers"]["艉舵机开关2断路器"] = msg.sternRudderSwitch2CircuitBreaker
bus["breakers"]["FB备用断路器"] = msg.fbReservedCircuitBreaker
bus["breakers"]["TYZ备用断路器"] = msg.tyzReservedCircuitBreaker
bus["breakers"]["备用断路器"] = msg.reservedCircuitBreaker
bus["faults"]["DC/DC故障1"] = msg.dcDcFaultWord1
bus["faults"]["DC/DC故障2"] = msg.dcDcFaultWord2
if msg.powerBusInsulationStatus == 0x55:
bus["insulation"]["动力母线绝缘状态"] = 0
else:
bus["insulation"]["动力母线绝缘状态"] = 1
if msg.aBusInsulationStatus == 0x55:
bus["insulation"]["A母线绝缘状态"] = 0
else:
bus["insulation"]["A母线绝缘状态"] = 1
bus["alarms"]["应急电源丢失信号"] = msg.emergencyPowerLossSignal
bus["alarms"]["仪表电源丢失信号"] = msg.meterPowerLossSignal
bus["cool_water_pressure"] = msg.coolWaterPressure / 10.0
bus["dcdc_temp"] = msg.dcdcTemperature-40
self.status_data["high_vol_bus"] = bus
self.log_message("收到高压母线状态更新")
elif msg_id == 0x0006: # 高压A母线状态
msg = msg_disHighAVolBusFbMsg()
if msg.unpack(data):
self.db.insertHighAVolBusData(msg)
bus = self.status_data["high_a_vol_bus"]
bus["voltage"]["B母线电压"] = msg.busbarBVoltage / 10.0
bus["current"]["B母线电流"] = msg.busbarBCurrent / 10.0
bus["current"]["艏FT设备123电流"] = msg.bowFTDevice123Current / 10.0
bus["current"]["执行机构电流"] = msg.actuatorCurrent / 10.0
bus["current"]["桅舵机控制箱电流"] = msg.mastSteeringGearControlBoxCurrent / 10.0
bus["current"]["XCZ电流"] = msg.xczCurrent / 10.0
bus["current"]["艏舵控制箱电流"] = msg.bowRudderControlBoxCurrent / 10.0
bus["current"]["开盖启动气缸电流"] = msg.openWaterCoverStartCylinderCurrent / 10.0
bus["breakers"]["艏FT设备123断路器"] = msg.bowFTDevice123CircuitBreaker
bus["breakers"]["执行机构断路器"] = msg.actuatorCircuitBreaker
bus["breakers"]["桅舵机控制箱断路器"] = msg.mastSteeringGearControlBoxCircuitBreaker
bus["breakers"]["XCZ断路器"] = msg.xczCircuitBreaker
bus["breakers"]["艏舵控制箱断路器"] = msg.bowRudderControlBoxCircuitBreaker
bus["breakers"]["开盖启动气缸断路器"] = msg.openWaterCoverStartCylinderCircuitBreaker
bus["alarms"]["仪表电源故障"] = msg.instrumentPowerFailureSignal
bus["alarms"]["应急电源故障"] = msg.emergencyPowerFailureSignal
bus["alarms"]["进水报警"] = msg.waterIngressionAlarm
self.log_message("收到高压A母线状态更新")
elif msg_id == 0x0007: # 仪表主母线状态
msg = msg_disLowMainBusFbMsg()
if msg.unpack(data):
self.db.insertLowMainBusData(msg)
bus = self.status_data["low_main_bus"]
bus["voltage"]["仪表母线电压"] = msg.instrumentBusbarVoltage / 10.0
bus["voltage"]["应急2母线电压"] = msg.emergency2BusbarVoltage / 10.0
bus["current"]["艏低压配电盒电流"] = msg.bowLowVoltageDistributionBoxCurrent / 10.0
bus["current"]["DC/C1仪表48V电流"] = msg.dcC1InstrumentDC48VCurrent / 10.0
bus["current"]["备用电流1"] = msg.reservedCurrent1 / 10.0
bus["current"]["应急锂电池组2电流"] = msg.emergencyLithiumBatteryGroup2Current / 10.0
bus["current"]["锂电池组仪表电流"] = msg.lithiumBatteryGroupInstrumentCurrent / 10.0
bus["current"]["单元4仪表48V电流"] = msg.unit4InstrumentDC48VCurrent / 10.0
bus["current"]["备用电流2"] = msg.reservedCurrent2 / 10.0
bus["current"]["综合能量管理系统应急DC48V电流"] = msg.compositeEnergyManagementSystemEmergencyDC48VCurrent / 10.0
bus["current"]["燃料电池安全系统应急DC48V电流"] = msg.fuelCellSecuritySystemEmergencyDC48VCurrent / 10.0
bus["current"]["PLC控制电源电流"] = msg.plcControlPowerCurrent / 10.0
bus["breakers"]["锂电池组仪表断路器"] = msg.lithiumBatteryGroupInstrumentCircuitBreaker
bus["breakers"]["艏低压配电盒断路器"] = msg.bowLowVoltageDistributionBoxCircuitBreaker
bus["breakers"]["单元4仪表48V断路器"] = msg.unit4InstrumentDC48VCircuitBreaker
bus["breakers"]["DC/C1直流配电板断路器"] = msg.dcC1DCDistributionPanelCircuitBreaker
bus["breakers"]["备用断路器1"] = msg.reservedCircuitBreaker1
bus["breakers"]["备用断路器2"] = msg.reservedCircuitBreaker2
bus["breakers"]["应急锂电池组2断路器"] = msg.emergencyLithiumBatteryGroup2CircuitBreaker
# 0x55 正常
# 0xaa 故障
bus["alarms"]["仪表电源故障"] = msg.instrumentPowerFailureSignal
bus["alarms"]["应急电源故障"] = msg.emergencyPowerFailureSignal
bus["insulation"] = msg.instrumentBusbarInsulationLow
self.log_message("收到仪表主母线状态更新")
else:
print("仪表主母线状态","解析失败")
elif msg_id == 0x0008: # 仪表母线状态
msg = msg_disLowBusFbMsg()
if msg.unpack(data):
self.db.insertLowBusData(msg)
bus = self.status_data["low_bus"]
bus["voltage"]["仪表母线电压"] = msg.instrumentBusbarVoltage / 10.0
bus["voltage"]["应急1母线电压"] = msg.emergency1BusbarVoltage / 10.0
bus["current"]["仪表母线电流"] = msg.instrumentBusbarCurrent / 10.0
bus["current"]["单元1电流"] = msg.unit1Current / 10.0
bus["current"]["单元2电流"] = msg.unit2Current / 10.0
bus["current"]["单元3电流"] = msg.unit3Current / 10.0
bus["current"]["单元5电流"] = msg.unit5Current / 10.0
bus["current"]["艏PZ设备电流"] = msg.bowPZDeviceCurrent / 10.0
bus["current"]["应急锂电池组1电流"] = msg.emergencyLithiumBatteryGroup1Current / 10.0
bus["breakers"]["单元1断路器"] = msg.unit1CircuitBreaker
bus["breakers"]["单元2断路器"] = msg.unit2CircuitBreaker
bus["breakers"]["单元3断路器"] = msg.unit3CircuitBreaker
bus["breakers"]["单元5断路器"] = msg.unit5CircuitBreaker
bus["breakers"]["艏PZ设备断路器"] = msg.bowPZDeviceCircuitBreaker
bus["breakers"]["备用断路器1"] = msg.reservedCircuitBreaker1
bus["breakers"]["备用断路器2"] = msg.reservedCircuitBreaker2
bus["breakers"]["应急锂电池组1断路器"] = msg.emergencyLithiumBatteryGroup1CircuitBreaker
bus["alarms"]["仪表电源故障"] = msg.instrumentPowerFailureSignal
bus["alarms"]["应急电源故障"] = msg.emergencyPowerFailureSignal
bus["alarms"]["进水报警"] = msg.waterIngressionAlarm
self.log_message("收到仪表母线状态更新")
else:
print("仪表母线状态","解析失败")
else:
self.log_message("消息解析失败")
print('消息处理完成')
except Exception as e:
self.log_message(f"消息处理错误: {str(e)}")
def setup_low_main_ui(self, parent):
"""设置仪表主母线状态界面"""
frame = ttk.LabelFrame(parent, text="仪表主母线状态")
frame.pack(fill=tk.BOTH, expand=True, padx=5, pady=5)
# 使用网格布局管理器 - 调整为3列
frame.grid_columnconfigure(0, weight=1)
frame.grid_columnconfigure(1, weight=1)
frame.grid_columnconfigure(2, weight=1)
# 电压与断路器统一显示区域
status_frame = ttk.LabelFrame(frame, text="电压与断路器状态", padding=5)
status_frame.grid(row=0, column=0, columnspan=3, sticky=tk.W + tk.E, padx=5, pady=5)
# 电压显示(横向布局)
voltage_frame = ttk.Frame(status_frame)
voltage_frame.grid(row=0, column=0, padx=10, pady=4, sticky=tk.W)
ttk.Label(voltage_frame, text="仪表母线电压(V):", width=20, anchor="w").pack(side=tk.LEFT)
self.low_main_instrument_voltage = ttk.Label(voltage_frame, text="0.0V", width=10, anchor="e", relief="groove")
self.low_main_instrument_voltage.pack(side=tk.RIGHT)
voltage_frame2 = ttk.Frame(status_frame)
voltage_frame2.grid(row=0, column=1, padx=10, pady=4, sticky=tk.W)
ttk.Label(voltage_frame2, text="应急2汇流排电压(V):", width=20, anchor="w").pack(side=tk.LEFT)
self.low_main_emergency2_voltage = ttk.Label(voltage_frame2, text="0.0V", width=10, anchor="e", relief="groove")
self.low_main_emergency2_voltage.pack(side=tk.RIGHT)
# 断路器状态标签
ttk.Label(status_frame, text="断路器状态:", font=("Arial", 10, "bold")).grid(row=1, column=0, columnspan=3, sticky=tk.W, pady=(10, 4))
# 断路器状态显示区域
self.low_main_breakers = {}
breaker_names = list(self.status_data["low_main_bus"]["breakers"].keys())
columns_per_row = 3 # 每行3个断路器显示块
for i, name in enumerate(breaker_names):
row = 2 + i // columns_per_row
col = i % columns_per_row
# 每个断路器显示块:使用Frame带边框
breaker_frame = tk.Frame(status_frame, relief="solid", borderwidth=1, padx=6, pady=2)
breaker_frame.grid(row=row, column=col, padx=6, pady=4, sticky=tk.W)
# 名称标签
ttk.Label(breaker_frame, text=name, width=20, anchor="w").pack(side=tk.LEFT)
# 圆形指示灯
canvas = tk.Canvas(breaker_frame, width=18, height=18, bg="white", highlightthickness=0)
canvas.create_oval(2, 2, 16, 16, fill="white", outline="gray")
canvas.pack(side=tk.RIGHT)
self.low_main_breakers[name] = canvas
# 创建统一的显示区域(LabelFrame)
status_group = ttk.LabelFrame(frame, text="仪表主母线系统状态", padding=5)
status_group.grid(row=1, column=0, columnspan=3, sticky=tk.W + tk.E, padx=5, pady=5)
# 所有参数标签及属性名
status_items = [
("艏部低压配电箱电流(A):", "bow_current"),
("锂电池组(仪表)电流(A):", "battery_current"),
("DC-C1仪表DC48V电流(A):", "dcc1_current"),
("应急锂电池组2电流(A):", "emergency2_current"),
("单元4仪表48V电流(A):", "unit4_current"),
("复合能源管控系统应急DC48V电流(A):", "energy_current"),
("燃料电池安保系统应急DC48V电流(A):", "fuelcell_current"),
("PLC控制电源电流(A):", "plc_current"),
("备用电流1(A):", "reserved1"),
("备用电流2(A):", "reserved2"),
("仪表电源失电信号:", "instrument_fault"),
("应急电源失电信号:", "emergency_fault"),
("仪表汇流排绝缘低:", "insulation")
]
# 每行显示3列
columns_per_row = 3
# 布局显示
for i, (label_text, varname) in enumerate(status_items):
row = i // columns_per_row
col = i % columns_per_row
# 每个参数一个子Frame(横向排列)
item_frame = ttk.Frame(status_group)
item_frame.grid(row=row, column=col, sticky=tk.W, padx=8, pady=3)
ttk.Label(item_frame, text=label_text, width=26, anchor="w").pack(side=tk.LEFT)
label_var = ttk.Label(item_frame, text="0.0", width=10, anchor="e", relief="groove")
label_var.pack(side=tk.RIGHT)
# 保存变量引用
setattr(self, f"low_main_{varname}", label_var)
return frame
def setup_low_bus_ui(self, parent):
"""设置仪表母线状态界面"""
frame = ttk.LabelFrame(parent, text="仪表母线状态")
frame.pack(fill=tk.BOTH, expand=True, padx=5, pady=5)
# 使用网格布局管理器 - 调整为3列
frame.grid_columnconfigure(0, weight=1)
frame.grid_columnconfigure(1, weight=1)
frame.grid_columnconfigure(2, weight=1)
# 电压与断路器统一显示区域
status_frame = ttk.LabelFrame(frame, text="电压与断路器状态", padding=5)
status_frame.grid(row=0, column=0, columnspan=3, sticky=tk.W + tk.E, padx=5, pady=5)
# 电压显示(横向布局)
voltage_frame = ttk.Frame(status_frame)
voltage_frame.grid(row=0, column=0, padx=10, pady=4, sticky=tk.W)
ttk.Label(voltage_frame, text="仪表母排电压(V):", width=20, anchor="w").pack(side=tk.LEFT)
self.low_bus_instrument_voltage = ttk.Label(voltage_frame, text="0.0V", width=10, anchor="e", relief="groove")
self.low_bus_instrument_voltage.pack(side=tk.RIGHT)
voltage_frame2 = ttk.Frame(status_frame)
voltage_frame2.grid(row=0, column=1, padx=10, pady=4, sticky=tk.W)
ttk.Label(voltage_frame2, text="应急1母线电压(V):", width=20, anchor="w").pack(side=tk.LEFT)
self.low_bus_emergency1_voltage = ttk.Label(voltage_frame2, text="0.0V", width=10, anchor="e", relief="groove")
self.low_bus_emergency1_voltage.pack(side=tk.RIGHT)
# 断路器状态标签
ttk.Label(status_frame, text="断路器状态:", font=("Arial", 10, "bold")).grid(row=1, column=0, columnspan=3, sticky=tk.W, pady=(10, 4))
# 断路器状态显示区域
self.low_bus_breakers = {}
breaker_names = list(self.status_data["low_bus"]["breakers"].keys())
columns_per_row = 3 # 每行3个断路器显示块
for i, name in enumerate(breaker_names):
row = 2 + i // columns_per_row
col = i % columns_per_row
# 每个断路器显示块:使用Frame带边框
breaker_frame = tk.Frame(status_frame, relief="solid", borderwidth=1, padx=6, pady=2)
breaker_frame.grid(row=row, column=col, padx=6, pady=4, sticky=tk.W)
# 名称标签
ttk.Label(breaker_frame, text=name, width=20, anchor="w").pack(side=tk.LEFT)
# 圆形指示灯
canvas = tk.Canvas(breaker_frame, width=18, height=18, bg="white", highlightthickness=0)
canvas.create_oval(2, 2, 16, 16, fill="white", outline="gray")
canvas.pack(side=tk.RIGHT)
self.low_bus_breakers[name] = canvas
# 创建统一的显示区域(LabelFrame)
status_group = ttk.LabelFrame(frame, text="仪表母线系统状态", padding=5)
status_group.grid(row=1, column=0, columnspan=3, sticky=tk.W + tk.E, padx=5, pady=5)
# 所有参数标签及属性名
status_items = [
("仪表母排电流(A):", "main_current"),
("单元1电流(A):", "unit1_current"),
("单元2电流(A):", "unit2_current"),
("单元3电流(A):", "unit3_current"),
("单元5电流(A):", "unit5_current"),
("艏PZ设备电流(A):", "bow_pz_current"),
("应急锂电池组1电流(A):", "emergency1_current"),
("仪表电失电信号:", "power_fault"),
("应急电失电信号:", "emgpower_fault"),
("浸水报警:", "water_alarm")
]
# 每行显示3列
columns_per_row = 3
# 布局显示
for i, (label_text, varname) in enumerate(status_items):
row = i // columns_per_row
col = i % columns_per_row
# 每个参数一个子Frame(横向排列)
item_frame = ttk.Frame(status_group)
item_frame.grid(row=row, column=col, sticky=tk.W, padx=8, pady=3)
ttk.Label(item_frame, text=label_text, width=26, anchor="w").pack(side=tk.LEFT)
label_var = ttk.Label(item_frame, text="0.0", width=10, anchor="e", relief="groove")
label_var.pack(side=tk.RIGHT)
# 保存变量引用
setattr(self, f"low_bus_{varname}", label_var)
return frame
def send_udp_command(self, data, ip, port):
"""发送UDP命令"""
if not self.Start_Connection.get():
return
try:
# self.sock.sendto(data, (self.udp_ip, self.udp_port + 1)
self.sock.sendto(data, (ip, port))
print(f"发送命令到 {ip}:{port} ", data.hex())
except Exception as e:
self.log_message(f"发送命令失败: {str(e)}")
def updata_dcdc_status(self,status):
# 更新DC/DC状态 (按位检查)
dcdc_fault1 = status['faults']['DC/DC故障1']
dcdc_fault2 = status['faults']['DC/DC故障2']
for i in range(8):
# 故障位为1时显示红色,否则绿色
color1 = 'red' if (dcdc_fault1 & (1 << i)) else 'green'
color2 = 'red' if (dcdc_fault2 & (1 << i)) else 'green'
self.high_vol_dcdc_fault1_bits[i].config(bg=color1)
self.high_vol_dcdc_fault2_bits[i].config(bg=color2)
def update_high_vol_ui(self, status):
"""更新高压母线UI显示"""
# 更新电压显示
self.high_vol_power_voltage.config(text=f"{status['voltage']['动力母线电压']:.1f} V")
self.high_vol_a_voltage.config(text=f"{status['voltage']['A母线电压']:.1f} V")
# 更新所有电流值显示
current_vars = [
('powerBusCurrent', '动力母线电流'),
('busbarACurrent', 'A母线电流'),
('dcDc5ModuleCurrent', 'DC/DC5模块电流'),
('propulsionMotorControlBoxCurrent', '推进电机控制箱电流'),
('lithiumBatteryGroupMeterCurrent', '锂电池组仪表电流'),
('bowHighVoltageDistributionBoxCurrent', '艏高压配电盒电流'),
('sternFTDevice45Current', '艉FT设备45电流'),
('tyzReservedSwitchCurrent', 'TYZ备用开关电流'),
('sternRudderSwitch1Current', '艉舵机开关1电流'),
('sternRudderSwitch2Current', '艉舵机开关2电流'),
('fbReservedSwitchCurrent', 'FB备用开关电流'),
('reservedCurrent1', '备用电流1'),
('reservedCurrent2', '备用电流2'),
('reservedCurrent3', '备用电流3')
]
for var_name, data_key in current_vars:
label = getattr(self, f"high_vol_{var_name}")
label.config(text=f"{status['current'][data_key]:.1f} A")
# 更新断路器状态 (0x55:合闸-绿色, 0xAA:分闸-黑色, 0x5A:故障-红色)
for name, state in status['breakers'].items():
if name in self.high_vol_breakers:
canvas = self.high_vol_breakers[name]
if state == 0x55:
color = "green" # 合闸
elif state == 0xAA:
color = "black" # 分闸
elif state == 0x5A:
color = "red" # 故障
else:
color = "white" # 未知状态
canvas.delete("all")
canvas.create_oval(2, 2, 18, 18, fill=color, outline="black")
# 更新绝缘状态 (0x55:正常-绿色, 其他:故障-红色)
power_insul_ok = status['insulation']['动力母线绝缘状态'] == 0
a_insul_ok = status['insulation']['A母线绝缘状态'] == 0
self.high_vol_power_insulation.config(
text="正常" if power_insul_ok else "故障",
foreground="green" if power_insul_ok else "red"
)
self.high_vol_a_insulation.config(
text="正常" if a_insul_ok else "故障",
foreground="green" if a_insul_ok else "red"
)
# 更新冷却水压力 (显示为Kpa)
self.high_vol_cool_water_pressure.config(
text=f"{status['cool_water_pressure']:.1f} Kpa"
)
# 更新DC/DC温度 (显示为摄氏度)
self.high_vol_dcdc_temp.config(
text=f"{status['dcdc_temp']} ℃"
)
# 更新失电故障显示 (0x55:正常, 其他:故障)
self.high_vol_losspower_insulation.config(
text="正常" if status['alarms']['仪表电源丢失信号'] == 0x55 else "故障"
)
self.high_vol_loss_emerpower_insulation.config(
text="正常" if status['alarms']['应急电源丢失信号'] == 0x55 else "故障"
)
def update_ui(self):
"""更新界面状态"""
# 更新高压母线状态
high_vol = self.status_data["high_vol_bus"]
self.update_high_vol_ui(high_vol)
# 更新高压A母线状态
high_a_vol = self.status_data["high_a_vol_bus"]
self.high_a_vol_voltage.config(text=f"{high_a_vol['voltage']['B母线电压']:.1f} V")
self.high_a_vol_current.config(text=f"{high_a_vol['current']['B母线电流']:.1f} A")
self.high_a_vol_bow_ft_current.config(text=f"{high_a_vol['current']['艏FT设备123电流']:.1f} A")
self.high_a_vol_actuator_current.config(text=f"{high_a_vol['current']['执行机构电流']:.1f} A")
# 更新新增的电流显示项
self.high_a_vol_mast_steering_current.config(text=f"{high_a_vol['current']['桅舵机控制箱电流']:.1f} A")
self.high_a_vol_xcz_current.config(text=f"{high_a_vol['current']['XCZ电流']:.1f} A")
self.high_a_vol_bow_rudder_current.config(text=f"{high_a_vol['current']['艏舵控制箱电流']:.1f} A")
self.high_a_vol_open_cover_current.config(text=f"{high_a_vol['current']['开盖启动气缸电流']:.1f} A")
for name, canvas in self.high_a_vol_breakers.items():
state = high_a_vol["breakers"].get(name, 0)
if state == 0x55:
color = "green"
elif state == 0xAA:
color = "black"
elif state == 0x5A:
color = "red"
else:
color = "white"
# color = "green" if state else "red"
canvas.create_oval(2, 2, 18, 18, fill=color, outline="black")
# 更新仪表主母线状态
low_main = self.status_data["low_main_bus"]
for name, canvas in self.low_main_breakers.items():
state = low_main["breakers"].get(name, 0)
# color = "green" if state else "red"
if state == 0x55:
color = "green"
elif state == 0xAA:
color = "black"
elif state == 0x5A:
color = "red"
else:
color = "white"
canvas.create_oval(2, 2, 18, 18, fill=color, outline="black")
# 更新仪表母线状态
low_bus = self.status_data["low_bus"]
for name, canvas in self.low_bus_breakers.items():
state = low_bus["breakers"].get(name, 0)
# color = "green" if state else "red"
if state == 0x55:
color = "green"
elif state == 0xAA:
color = "black"
elif state == 0x5A:
color = "red"
else:
color = "white"
canvas.create_oval(2, 2, 18, 18, fill=color, outline="black")
self.high_a_vol_instrument_power_fault.config(
text="正常" if high_a_vol["alarms"]["仪表电源故障"]==0x55 else "故障"
)
self.high_a_vol_emergency_power_fault.config(
text="正常" if high_a_vol["alarms"]["应急电源故障"]==0x55 else "故障"
)
self.high_a_vol_water_alarm.config(
text="正常" if high_a_vol["alarms"]["进水报警"]==0x55 else "故障"
)
# 更新仪表主母线状态
low_main = self.status_data["low_main_bus"]
self.low_main_instrument_voltage.config(text=f"{low_main['voltage']['仪表母线电压']:.1f} V")
self.low_main_emergency2_voltage.config(text=f"{low_main['voltage']['应急2母线电压']:.1f} V")
self.low_main_bow_current.config(text=f"{low_main['current']['艏低压配电盒电流']:.1f} A")
self.low_main_battery_current.config(text=f"{low_main['current']['锂电池组仪表电流']:.1f} A")
# 更新新增的电流显示项
self.low_main_dcc1_current.config(text=f"{low_main['current']['DC/C1仪表48V电流']:.1f} A")
self.low_main_emergency2_current.config(text=f"{low_main['current']['应急锂电池组2电流']:.1f} A")
self.low_main_unit4_current.config(text=f"{low_main['current']['单元4仪表48V电流']:.1f} A")
self.low_main_energy_current.config(text=f"{low_main['current']['综合能量管理系统应急DC48V电流']:.1f} A")
self.low_main_fuelcell_current.config(text=f"{low_main['current']['燃料电池安全系统应急DC48V电流']:.1f} A")
self.low_main_plc_current.config(text=f"{low_main['current']['PLC控制电源电流']:.1f} A")
# 新增加备用电流
self.low_main_reserved1.config(text=f"{low_main['current']['备用电流1']:.1f} A")
self.low_main_reserved2.config(text=f"{low_main['current']['备用电流2']:.1f} A")
for name, canvas in self.low_main_breakers.items():
state = low_main["breakers"].get(name, 0)
# color = "green" if state else "red"
if state == 0x55:
color = "green"
elif state == 0xAA:
color = "black"
elif state == 0x5A:
color = "red"
else:
color = "white"
canvas.create_oval(2, 2, 18, 18, fill=color, outline="black")
self.low_main_instrument_fault.config(
text="正常" if low_main["alarms"]["仪表电源故障"]==0x55 else "故障"
)
self.low_main_emergency_fault.config(
text="正常" if low_main["alarms"]["应急电源故障"]==0x55 else "故障"
)
self.low_main_insulation.config(
text="正常" if low_main["insulation"]==0x55 else "故障"
)
# 更新仪表母线状态
low_bus = self.status_data["low_bus"]
self.low_bus_instrument_voltage.config(text=f"{low_bus['voltage']['仪表母线电压']:.1f} V")
self.low_bus_emergency1_voltage.config(text=f"{low_bus['voltage']['应急1母线电压']:.1f} V")
self.low_bus_unit1_current.config(text=f"{low_bus['current']['单元1电流']:.1f} A")
self.low_bus_unit2_current.config(text=f"{low_bus['current']['单元2电流']:.1f} A")
# 更新新增的电流显示项
self.low_bus_main_current.config(text=f"{low_bus['current']['仪表母线电流']:.1f} A")
self.low_bus_unit3_current.config(text=f"{low_bus['current']['单元3电流']:.1f} A")
self.low_bus_unit5_current.config(text=f"{low_bus['current']['单元5电流']:.1f} A")
self.low_bus_bow_pz_current.config(text=f"{low_bus['current']['艏PZ设备电流']:.1f} A")
self.low_bus_emergency1_current.config(text=f"{low_bus['current']['应急锂电池组1电流']:.1f} A")
for name, canvas in self.low_bus_breakers.items():
state = low_bus["breakers"].get(name, 0)
# color = "green" if state else "red"
if state == 0x55:
color = "green"
elif state == 0xAA:
color = "black"
elif state == 0x5A:
color = "red"
else:
color = "white"
canvas.create_oval(2, 2, 18, 18, fill=color, outline="black")
self.low_bus_power_fault.config(
text="正常" if low_bus["alarms"]["仪表电源故障"]==0x55 else "故障"
)
self.low_bus_emgpower_fault.config(
text="正常" if low_bus["alarms"]["应急电源故障"]==0x55 else "故障"
)
self.low_bus_water_alarm.config(
text="正常" if low_bus["alarms"]["进水报警"]==0x55 else "故障"
)
# print('update_ui')
# 每500ms更新一次
self.root.after(1000, self.update_ui)
def log_message(self, message):
"""记录日志消息"""
timestamp = time.strftime("%Y-%m-%d %H:%M:%S")
self.log_text.config(state=tk.NORMAL)
self.log_text.insert(tk.END, f"[{timestamp}] {message}\n")
# 获取当前所有行数
line_count = int(self.log_text.index('end-1c').split('.')[0])
# 如果超过50行,删除最旧的行
if line_count > 50:
self.log_text.delete(1.0, 2.0)
self.log_text.config(state=tk.DISABLED)
self.log_text.see(tk.END)
def on_simulation_mode_changed(self, *args):
"""模拟模式复选框回调"""
if self.Simulation_Mode.get():
self.start_simulation()
else:
self.stop_simulation()
def start_simulation(self):
"""启动模拟线程"""
if not self.simulation_running:
self.simulation_running = True
self.simulation_thread = threading.Thread(target=self.simulation_loop)
self.simulation_thread.daemon = True
self.simulation_thread.start()
self.log_message("模拟模式已启动")
def stop_simulation(self):
"""停止模拟线程"""
if self.simulation_running:
self.simulation_running = False
if self.simulation_thread:
self.simulation_thread.join()
self.log_message("模拟模式已停止")
def simulation_loop(self):
"""模拟线程主循环"""
self.simulation_HighVolBusFbMsg.dcDcFaultWord1 = 0x01
self.simulation_HighVolBusFbMsg.dcDcFaultWord2 = 0x01
while self.simulation_running:
# 发送模拟数据
self.simulation_HighVolBusFbMsg.fuelCellCircuitBreaker = self.simulation_HVBCmdMsg.fuelCellCircuitBreaker
self.simulation_HighVolBusFbMsg.powerLithiumBatteryCircuitBreaker = self.simulation_HVBCmdMsg.powerLithiumBatteryCircuitBreaker
self.simulation_HighVolBusFbMsg.propulsionMotorCircuitBreaker = self.simulation_HVBCmdMsg.propulsionMotorCircuitBreaker
self.simulation_HighVolBusFbMsg.lithiumBatteryGroupInstrumentCircuitBreaker = self.simulation_HVBCmdMsg.lithiumBatteryGroupInstrumentCircuitBreaker
self.simulation_HighVolBusFbMsg.dcDc5ModuleCircuitBreaker = self.simulation_HVBCmdMsg.dcDc5ModuleCircuitBreaker
self.simulation_HighVolBusFbMsg.bowHighVoltageDistributionBoxCircuitBreaker = self.simulation_HVBCmdMsg.bowHighVoltageDistributionBoxCircuitBreaker
self.simulation_HighVolBusFbMsg.sternFTDevice45CircuitBreaker = self.simulation_HVBCmdMsg.sternFTDevice45CircuitBreaker
self.simulation_HighVolBusFbMsg.sternRudderSwitch1CircuitBreaker = self.simulation_HVBCmdMsg.sternRudderSwitch1CircuitBreaker
self.simulation_HighVolBusFbMsg.sternRudderSwitch2CircuitBreaker = self.simulation_HVBCmdMsg.sternRudderSwitch2CircuitBreaker
self.simulation_HighVolBusFbMsg.fbReservedCircuitBreaker = self.simulation_HVBCmdMsg.fbReservedCircuitBreaker
self.simulation_HighVolBusFbMsg.tyzReservedCircuitBreaker = self.simulation_HVBCmdMsg.tyzReservedCircuitBreaker
self.simulation_HighVolBusFbMsg.reservedCircuitBreaker = self.simulation_HVBCmdMsg.reservedCircuitBreaker
# dcdc状态字按位进行循环偏移
self.simulation_HighVolBusFbMsg.dcDcFaultWord1 = ((self.simulation_HighVolBusFbMsg.dcDcFaultWord1 << 1) | (self.simulation_HighVolBusFbMsg.dcDcFaultWord1 >> 7)) & 0xFF
self.simulation_HighVolBusFbMsg.dcDcFaultWord2 = ((self.simulation_HighVolBusFbMsg.dcDcFaultWord2 >> 1) | (self.simulation_HighVolBusFbMsg.dcDcFaultWord2 << 7)) & 0xFF
# 故障往复切换
self.simulation_HighAVolBusFbMsg.actuatorCircuitBreaker = self.simulation_HVBACmdMsg.actuatorCircuitBreaker
self.simulation_HighAVolBusFbMsg.bowFTDevice123CircuitBreaker = self.simulation_HVBACmdMsg.bowFTDevice123CircuitBreaker
self.simulation_HighAVolBusFbMsg.mastSteeringGearControlBoxCircuitBreaker = self.simulation_HVBACmdMsg.mastSteeringGearControlBoxCircuitBreaker
self.simulation_HighAVolBusFbMsg.xczCircuitBreaker = self.simulation_HVBACmdMsg.xczCircuitBreaker
self.simulation_HighAVolBusFbMsg.bowRudderControlBoxCircuitBreaker = self.simulation_HVBACmdMsg.bowRudderControlBoxCircuitBreaker
self.simulation_HighAVolBusFbMsg.openWaterCoverStartCylinderCircuitBreaker = self.simulation_HVBACmdMsg.openWaterCoverStartCylinderCircuitBreaker
self.simulation_LowMainBusFbMsg.lithiumBatteryGroupInstrumentCircuitBreaker = self.simulation_LVMBCmdMsg.lithiumBatteryGroupInstrumentCircuitBreaker
self.simulation_LowMainBusFbMsg.bowLowVoltageDistributionBoxCircuitBreaker = self.simulation_LVMBCmdMsg.bowLowVoltageDistributionBoxCircuitBreaker
self.simulation_LowMainBusFbMsg.unit4InstrumentDC48VCircuitBreaker = self.simulation_LVMBCmdMsg.unit4InstrumentDC48VCircuitBreaker
self.simulation_LowMainBusFbMsg.dcC1DCDistributionPanelCircuitBreaker = self.simulation_LVMBCmdMsg.dcC1DCDistributionPanelCircuitBreaker
self.simulation_LowMainBusFbMsg.reservedCircuitBreaker1 = self.simulation_LVMBCmdMsg.reservedCircuitBreaker1
self.simulation_LowMainBusFbMsg.reservedCircuitBreaker2 = self.simulation_LVMBCmdMsg.reservedCircuitBreaker2
self.simulation_LowMainBusFbMsg.emergencyLithiumBatteryGroup2CircuitBreaker = self.simulation_LVMBCmdMsg.emergencyLithiumBatteryGroup2CircuitBreaker
self.simulation_LowBusFbMsg.unit1CircuitBreaker = self.simulation_LVBCmdMsg.unit1CircuitBreaker
self.simulation_LowBusFbMsg.unit2CircuitBreaker = self.simulation_LVBCmdMsg.unit2CircuitBreaker
self.simulation_LowBusFbMsg.unit3CircuitBreaker = self.simulation_LVBCmdMsg.unit3CircuitBreaker
self.simulation_LowBusFbMsg.unit5CircuitBreaker = self.simulation_LVBCmdMsg.unit5CircuitBreaker
self.simulation_LowBusFbMsg.bowPZDeviceCircuitBreaker = self.simulation_LVBCmdMsg.bowPZDeviceCircuitBreaker
self.simulation_LowBusFbMsg.reservedCircuitBreaker1 = self.simulation_LVBCmdMsg.reservedCircuitBreaker1
self.simulation_LowBusFbMsg.reservedCircuitBreaker2 = self.simulation_LVBCmdMsg.reservedCircuitBreaker2
self.simulation_LowBusFbMsg.emergencyLithiumBatteryGroup1CircuitBreaker = self.simulation_LVBCmdMsg.emergencyLithiumBatteryGroup1CircuitBreaker
self.send_udp_command(self.simulation_HighVolBusFbMsg.pack(), self.udp_ip, self.udp_port)
time.sleep(0.01)
self.send_udp_command(self.simulation_HighAVolBusFbMsg.pack(), self.udp_ip, self.udp_port)
time.sleep(0.01)
self.send_udp_command(self.simulation_LowBusFbMsg.pack(), self.udp_ip, self.udp_port)
time.sleep(0.01)
self.send_udp_command(self.simulation_LowMainBusFbMsg.pack(), self.udp_ip, self.udp_port)
time.sleep(1) # 1秒间隔
def on_connection_changed(self, *args):
"""连接状态改变回调"""
if self.Start_Connection.get():
self.running = True
if not self.recv_thread.is_alive():
self.recv_thread.start()
self.log_message("通信连接已启动")
else:
self.running = False
self.log_message("通信连接已停止")
def on_closing(self):
"""窗口关闭事件处理"""
self.running = False
self.stop_simulation()
self.sock.close()
self.root.destroy()
def show_popup_window(self, title):
"""创建并显示弹出窗口"""
popup = tk.Toplevel(self.root)
popup.title(title)
# 根据不同的标题创建对应的操作面板
if title == "动力母线操作":
frame = ttk.Frame(popup)
frame.pack(fill="both", expand=True, padx=5, pady=5)
self.setup_hvb_control(frame)
elif title == "艏部高压操作":
frame = ttk.Frame(popup)
frame.pack(fill="both", expand=True, padx=5, pady=5)
self.setup_hvba_control(frame)
elif title == "仪表母线操作":
frame = ttk.Frame(popup)
frame.pack(fill="both", expand=True, padx=5, pady=5)
self.setup_lvmb_control(frame)
elif title == "艏部低压操作":
frame = ttk.Frame(popup)
frame.pack(fill="both", expand=True, padx=5, pady=5)
self.setup_lvb_control(frame)
elif title == "DCDC状态":
frame = ttk.Frame(popup)
frame.pack(fill="both", expand=True, padx=5, pady=5)
self.setup_dcdc_status(frame)
# 弹窗显示时立即更新一次状态
self.updata_dcdc_status(self.status_data["high_vol_bus"])
# 设置定时器每1秒更新一次状态
def update_dcdc():
if popup.winfo_exists(): # 检查窗口是否还存在
self.updata_dcdc_status(self.status_data["high_vol_bus"])
popup.after(1000, update_dcdc)
popup.after(1000, update_dcdc)
close_button = ttk.Button(popup, text="关闭", command=popup.destroy)
close_button.pack(pady=10)
def show_compound_control_window(self, title):
"""创建并显示弹出窗口"""
popup = tk.Toplevel(self.root)
popup.title(title)
frame = ttk.Frame(popup)
popup.geometry("600x400")
popup.resizable(True, True)
frame.pack(fill="both", expand=True, padx=5, pady=5)
def show_help_window(self, title):
"""显示程序说明弹窗"""
popup = tk.Toplevel(self.root)
popup.title(title)
popup.geometry("600x400")
popup.resizable(True, True)
# 创建文本框和滚动条
frame = ttk.Frame(popup)
frame.pack(fill="both", expand=True, padx=10, pady=10)
text_widget = tk.Text(frame, wrap="word", font=("Microsoft YaHei", 10))
scrollbar = ttk.Scrollbar(frame, orient="vertical", command=text_widget.yview)
text_widget.configure(yscrollcommand=scrollbar.set)
text_widget.pack(side="left", fill="both", expand=True)
scrollbar.pack(side="right", fill="y")
# 程序说明内容
help_text = """H100动力管理系统程序说明
版本:v1.0
功能概述:
1. 高压母线状态监控 - 实时显示动力母线电压、电流及断路器状态
2. 高压A母线状态监控 - 监控汇流排B电压电流及断路器状态
3. 仪表主母线状态监控 - 显示仪表母线电压电流及配电状态
4. 仪表母线状态监控 - 监控应急电源系统状态
5. 配电指令控制 - 支持远程断路器合分操作
6. 数据记录 - 所有状态数据自动保存到SQLite数据库
7. 模拟模式 - 支持离线模拟测试
通信协议:
- 采用UDP协议与分布式系统通信
- 消息ID范围:0x0001-0x0008
- 支持实时状态反馈和指令下发
操作说明:
1. 主界面显示各母线实时状态
2. 通过菜单栏可打开各配电控制面板
3. 断路器状态:黄色=合闸,黑色=分闸,红色=故障
4. 启用模拟模式可进行离线测试
注意事项:
- 操作前请确认系统连接正常
- 重要操作需双重确认
- 定期检查数据库存储状态"""
text_widget.insert("1.0", help_text)
text_widget.config(state="disabled") # 设置为只读
# 关闭按钮
close_btn = ttk.Button(popup, text="关闭", command=popup.destroy)
close_btn.pack(pady=10)
if __name__ == "__main__":
root = tk.Tk()
app = PowerManagerApp(root)
root.protocol("WM_DELETE_WINDOW", app.on_closing)
print('start')
root.mainloop()
print('end')