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景观回路用电故障分析数据

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浙江省数据知识产权登记平台2023-11-14 更新2024-05-08 收录
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通过采集景观回路的电流、电压数据,分析回路用电故障原因和用电变化趋势,在景观回路用电数据发生变化时及时进行告警识别和报警,实现不同景观回路故障的实时动态预警和识别,系统将触发相应的报警机制,例如发送警报通知、显示警告信息或触发自动化控制系统等。1.数据来源 在多个景观电箱或配电柜中安装不同传感器来实时采集不同景观回路的电压和电流数据。 2.数据处理 2.1回路故障预警 根据景观回路的特性和要求,定义一系列告警规则,其中电压<200V,表示欠压;电压>242V,表示过压;电流>80A,表示过流;设计匹配算法,将实时采集的用电数据与定义的告警规则进行匹配;根据匹配算法的结果,识别出是否存在欠压、过压或过流等故障情况。 2.2回路用电变化趋势 分别计算景观回路中不同回路模块的用电参数变化率,包括电压变化率和电流变化率,公式如下: 电压变化率=(电压—电压平均值)/电压平均值; 电流变化率=(电流—电流平均值)/电流平均值; 计算不同回路模块的电流和电压变化率,通过分析变化率可以精准判断回路中的故障情况。 以上述流程的实时性为基础,系统能够在不同景观回路用电数据发生变化时及时进行告警识别和报警,实现景观回路故障的实时动态识别和报警机制,触发相应的报警机制,例如发送警报通知、显示警告信息或触发自动化控制系统等。

By collecting current and voltage data of landscape circuits, analyzing the causes of power faults and power consumption change trends of the circuits, and conducting timely alarm identification and alerting when the power consumption data of landscape circuits changes, this system realizes real-time dynamic early warning and identification of faults in different landscape circuits. The system will trigger corresponding alarm mechanisms, such as sending alert notifications, displaying warning messages, or activating automated control systems, etc. 1. Data Source Different sensors are installed in multiple landscape electrical boxes or distribution cabinets to collect voltage and current data of various landscape circuits in real time. 2. Data Processing 2.1 Circuit Fault Early Warning Based on the characteristics and requirements of landscape circuits, a series of alarm rules are defined: voltage < 200V indicates undervoltage, voltage > 242V indicates overvoltage, and current > 80A indicates overcurrent. A matching algorithm is designed to compare the real-time collected power consumption data with the predefined alarm rules. Whether there are faults such as undervoltage, overvoltage, or overcurrent is identified according to the results of the matching algorithm. 2.2 Circuit Power Consumption Change Trend The power parameter change rates of different circuit modules in the landscape circuit are calculated separately, including voltage change rate and current change rate, with the formulas as follows: Voltage change rate = (Voltage - Voltage Average) / Voltage Average Current change rate = (Current - Current Average) / Current Average The current and voltage change rates of different circuit modules are calculated, and the fault conditions in the circuit can be accurately judged by analyzing these change rates. Based on the real-time performance of the above process, the system can conduct timely alarm identification and alerting when the power consumption data of different landscape circuits changes, realizing the real-time dynamic identification and alarm mechanism for landscape circuit faults, and triggering corresponding alarm measures such as sending alert notifications, displaying warning messages, or activating automated control systems, etc.
创建时间:
2023-10-26
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