# -*- coding: utf-8 -*- """生成 D:\\ACP\\测试项\\启动冲击电流试验.ACP""" import json import uuid CT_TYPE = "System.Threading.CancellationToken, System.Private.CoreLib, Version=8.0.0.0, Culture=neutral, PublicKeyToken=7cec85d7bea7798e" INT_TYPE = "System.Int32, System.Private.CoreLib, Version=8.0.0.0, Culture=neutral, PublicKeyToken=7cec85d7bea7798e" DOUBLE_TYPE = "System.Double, System.Private.CoreLib, Version=8.0.0.0, Culture=neutral, PublicKeyToken=7cec85d7bea7798e" STRING_TYPE = "System.String, System.Private.CoreLib, Version=8.0.0.0, Culture=neutral, PublicKeyToken=7cec85d7bea7798e" ENUM_ACQ_MODE = "DeviceCommand.Devices.TekAcquisitionMode, DeviceCommand, Version=1.0.0.0, Culture=neutral, PublicKeyToken=null" ENUM_MEAS_TYPE = "DeviceCommand.Devices.TekMeasurementType, DeviceCommand, Version=1.0.0.0, Culture=neutral, PublicKeyToken=null" ZERO_GUID = "00000000-0000-0000-0000-000000000000" def guid(): return str(uuid.uuid4()) def param(name, ptype, value=None, use_var=False, var_name=None, var_id=None): return { "ID": guid(), "IsVisible": True, "IsEditable": True, "Name": name, "Type": ptype, "Category": 0, "Value": value, "LowerLimit": None, "UpperLimit": None, "Result": True, "IsUseVar": use_var, "VariableName": var_name, "VariableID": var_id, } def ct_param(): return param("ct", CT_TYPE) def method_step(index, name, full_name, method_name, params): return { "ID": guid(), "IsUsed": True, "Index": index, "Name": name, "StepType": "方法", "Method": { "Name": method_name, "FullName": full_name, "Parameters": params + [ct_param()], }, "SubProgram": None, "LoopCount": None, "LoopStartStepId": None, "OKExpression": None, "GotoSettingString": "", "OKGotoStepID": ZERO_GUID, "NGGotoStepID": ZERO_GUID, "Description": None, } def chroma_step(index, name, method_name, params): return method_step(index, name, "DeviceCommand.Devices.Chroma61800", method_name, params) def tek_step(index, name, method_name, params): return method_step(index, name, "DeviceCommand.Devices.TektronixMSO", method_name, params) def delay_step(index, name, ms=None, var_name=None, var_id=None): if var_name and var_id: return method_step(index, name, "Command.Delay", "Delay_ms", [param("millisecond", INT_TYPE, use_var=True, var_name=var_name, var_id=var_id)]) else: return method_step(index, name, "Command.Delay", "Delay_ms", [param("millisecond", INT_TYPE, str(ms))]) # 程序变量 VAR_RATED_VOLT = guid() # 额定输入电压 VAR_RATED_FREQ = guid() # 额定频率 VAR_OSC_CHANNEL = guid() # 示波器电流通道号 VAR_MEAS_NUM = guid() # 测量项编号 VAR_SCREENSHOT_PATH = guid() # 截图保存路径 VAR_TEST_COUNT = guid() # 测试次数 program_params = [ # 标准系统参数(Category=2) {"ID": guid(), "IsVisible": True, "IsEditable": True, "Name": "台架序号", "Type": INT_TYPE, "Category": 2, "Value": 1, "LowerLimit": None, "UpperLimit": None, "Result": True, "IsUseVar": False, "VariableName": None, "VariableID": None}, {"ID": guid(), "IsVisible": True, "IsEditable": True, "Name": "CAN通道", "Type": INT_TYPE, "Category": 2, "Value": 0, "LowerLimit": None, "UpperLimit": None, "Result": True, "IsUseVar": False, "VariableName": None, "VariableID": None}, {"ID": guid(), "IsVisible": True, "IsEditable": True, "Name": "示波器通道1", "Type": INT_TYPE, "Category": 2, "Value": 0, "LowerLimit": None, "UpperLimit": None, "Result": True, "IsUseVar": False, "VariableName": None, "VariableID": None}, {"ID": guid(), "IsVisible": True, "IsEditable": True, "Name": "示波器通道2", "Type": INT_TYPE, "Category": 2, "Value": 0, "LowerLimit": None, "UpperLimit": None, "Result": True, "IsUseVar": False, "VariableName": None, "VariableID": None}, {"ID": guid(), "IsVisible": True, "IsEditable": True, "Name": "功率分析仪通道1", "Type": INT_TYPE, "Category": 2, "Value": 0, "LowerLimit": None, "UpperLimit": None, "Result": True, "IsUseVar": False, "VariableName": None, "VariableID": None}, {"ID": guid(), "IsVisible": True, "IsEditable": True, "Name": "功率分析仪通道2", "Type": INT_TYPE, "Category": 2, "Value": 0, "LowerLimit": None, "UpperLimit": None, "Result": True, "IsUseVar": False, "VariableName": None, "VariableID": None}, # 测试项可调变量(Category=0)- 用户手动填值 {"ID": VAR_RATED_VOLT, "IsVisible": True, "IsEditable": True, "Name": "额定输入电压", "Type": DOUBLE_TYPE, "Category": 0, "Value": None, "LowerLimit": None, "UpperLimit": None, "Result": True, "IsUseVar": False, "VariableName": None, "VariableID": None}, {"ID": VAR_RATED_FREQ, "IsVisible": True, "IsEditable": True, "Name": "额定频率", "Type": DOUBLE_TYPE, "Category": 0, "Value": None, "LowerLimit": None, "UpperLimit": None, "Result": True, "IsUseVar": False, "VariableName": None, "VariableID": None}, {"ID": VAR_OSC_CHANNEL, "IsVisible": True, "IsEditable": True, "Name": "示波器电流通道号", "Type": INT_TYPE, "Category": 0, "Value": None, "LowerLimit": None, "UpperLimit": None, "Result": True, "IsUseVar": False, "VariableName": None, "VariableID": None}, {"ID": VAR_MEAS_NUM, "IsVisible": True, "IsEditable": True, "Name": "测量项编号", "Type": INT_TYPE, "Category": 0, "Value": None, "LowerLimit": None, "UpperLimit": None, "Result": True, "IsUseVar": False, "VariableName": None, "VariableID": None}, {"ID": VAR_SCREENSHOT_PATH, "IsVisible": True, "IsEditable": True, "Name": "截图保存路径", "Type": STRING_TYPE, "Category": 0, "Value": None, "LowerLimit": None, "UpperLimit": None, "Result": True, "IsUseVar": False, "VariableName": None, "VariableID": None}, {"ID": VAR_TEST_COUNT, "IsVisible": True, "IsEditable": True, "Name": "测试次数", "Type": INT_TYPE, "Category": 0, "Value": None, "LowerLimit": None, "UpperLimit": None, "Result": True, "IsUseVar": False, "VariableName": None, "VariableID": None}, ] steps = [] # ---- 一、示波器初始化(峰值检测模式) ---- steps.append(tek_step(1, "设置采集模式为峰值检测", "设置采集模式", [param("模式", ENUM_ACQ_MODE, 1)])) # PEAKdetect=1 steps.append(tek_step(2, "设置水平刻度(20ms/div)", "设置水平刻度", [param("秒每格", DOUBLE_TYPE, 0.02)])) # 20ms/div 捕获冲击波形 steps.append(tek_step(3, "设置记录长度", "设置记录长度", [param("长度", "System.Int64, System.Private.CoreLib, Version=8.0.0.0, Culture=neutral, PublicKeyToken=7cec85d7bea7798e", 10000)])) # ---- 二、添加冲击电流最大值测量 ---- steps.append(tek_step(4, "开启测量项", "开启测量项", [param("测量项编号", INT_TYPE, use_var=True, var_name="测量项编号", var_id=VAR_MEAS_NUM)])) steps.append(tek_step(5, "设置测量类型为MAXimum", "设置测量类型", [param("测量项编号", INT_TYPE, use_var=True, var_name="测量项编号", var_id=VAR_MEAS_NUM), param("类型", ENUM_MEAS_TYPE, 4)])) # MAXimum=4 steps.append(tek_step(6, "设置测量源为电流通道", "设置测量源", [param("测量项编号", INT_TYPE, use_var=True, var_name="测量项编号", var_id=VAR_MEAS_NUM), param("源名称", STRING_TYPE, use_var=True, var_name="示波器电流通道号", var_id=VAR_OSC_CHANNEL)])) # ---- 三、交流源设置额定输入(初始0V,准备突然施加) ---- steps.append(chroma_step(7, "初始化三相List模式(单次循环)", "初始化三相List模式", [param("loopCount", INT_TYPE, "1")])) steps.append(chroma_step(8, "配置List起始频率(额定)", "配置List起始频率Async", [param("step1", DOUBLE_TYPE, use_var=True, var_name="额定频率", var_id=VAR_RATED_FREQ), param("step2", DOUBLE_TYPE, use_var=True, var_name="额定频率", var_id=VAR_RATED_FREQ), param("step3", DOUBLE_TYPE, use_var=True, var_name="额定频率", var_id=VAR_RATED_FREQ)])) steps.append(chroma_step(9, "配置List结束频率(额定)", "配置List结束频率Async", [param("step1", DOUBLE_TYPE, use_var=True, var_name="额定频率", var_id=VAR_RATED_FREQ), param("step2", DOUBLE_TYPE, use_var=True, var_name="额定频率", var_id=VAR_RATED_FREQ), param("step3", DOUBLE_TYPE, use_var=True, var_name="额定频率", var_id=VAR_RATED_FREQ)])) # 初始电压设为0V,准备突然施加额定电压 steps.append(chroma_step(10, "配置List交流起始电压(0V)", "配置List交流起始电压Async", [param("step1", DOUBLE_TYPE, 0.0), param("step2", DOUBLE_TYPE, 0.0), param("step3", DOUBLE_TYPE, 0.0)])) steps.append(chroma_step(11, "配置List交流结束电压(额定)", "配置List交流结束电压Async", [param("step1", DOUBLE_TYPE, use_var=True, var_name="额定输入电压", var_id=VAR_RATED_VOLT), param("step2", DOUBLE_TYPE, use_var=True, var_name="额定输入电压", var_id=VAR_RATED_VOLT), param("step3", DOUBLE_TYPE, use_var=True, var_name="额定输入电压", var_id=VAR_RATED_VOLT)])) steps.append(chroma_step(12, "配置List执行时间(快速上升)", "配置List执行时间Async", [param("step1", DOUBLE_TYPE, 10.0), # 10ms 快速上升 param("step2", DOUBLE_TYPE, 10.0), param("step3", DOUBLE_TYPE, 10.0)])) # ---- 四、启动示波器采集,然后突然施加额定电压 ---- steps.append(tek_step(13, "启动示波器采集", "设置采集状态", [param("运行", "System.Boolean, System.Private.CoreLib, Version=8.0.0.0, Culture=neutral, PublicKeyToken=7cec85d7bea7798e", True)])) steps.append(delay_step(14, "等待示波器就绪", 100)) steps.append(chroma_step(15, "启动List输出(突然施加额定电压)", "启动List输出", [])) # ---- 五、等待冲击电流事件完成,读取最大值 ---- steps.append(delay_step(16, "等待冲击电流事件完成", 500)) steps.append(tek_step(17, "查询冲击电流最大值", "查询测量项当前值", [param("测量项编号", INT_TYPE, use_var=True, var_name="测量项编号", var_id=VAR_MEAS_NUM)])) # ---- 六、保存波形截图 ---- steps.append(tek_step(18, "保存冲击电流波形截图", "保存屏幕截图", [param("上位机文件路径", STRING_TYPE, use_var=True, var_name="截图保存路径", var_id=VAR_SCREENSHOT_PATH)])) # ---- 七、收尾 ---- steps.append(tek_step(19, "停止示波器采集", "设置采集状态", [param("运行", "System.Boolean, System.Private.CoreLib, Version=8.0.0.0, Culture=neutral, PublicKeyToken=7cec85d7bea7798e", False)])) steps.append(chroma_step(20, "停止输出(电压归零)", "配置List交流起始电压Async", [param("step1", DOUBLE_TYPE, 0.0), param("step2", DOUBLE_TYPE, 0.0), param("step3", DOUBLE_TYPE, 0.0)])) steps.append(chroma_step(21, "配置List交流结束电压(0V)", "配置List交流结束电压Async", [param("step1", DOUBLE_TYPE, 0.0), param("step2", DOUBLE_TYPE, 0.0), param("step3", DOUBLE_TYPE, 0.0)])) steps.append(chroma_step(22, "清除错误队列", "清除错误队列", [])) program = { "ID": guid(), "StepCollection": steps, "ErrorStepCollection": [], "Parameters": program_params, } out_path = r"D:\ACP\测试项\启动冲击电流试验.ACP" with open(out_path, "w", encoding="utf-8") as f: json.dump(program, f, ensure_ascii=False, indent=2) # 校验 with open(out_path, encoding="utf-8") as f: data = json.load(f) print(f"已生成: {out_path}") print(f"步骤数: {len(data['StepCollection'])}, 参数数: {len(data['Parameters'])}") print("\n需要手动填写的变量参数:") for p in data["Parameters"]: if p["Category"] == 0: print(f" - {p['Name']} ({p['Type'].split(',')[0].split('.')[-1]})") print("\n步骤流程:") for s in data["StepCollection"]: print(f" {s['Index']:>2}. {s['Name']}")