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PowerAnalyzer: An energy-aware power monitor system aiming at energy-saving

机译:PowerAnalyzer:旨在节能的能量感知电源监控系统

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To save the electrical energy in a household, it is essential to monitor where and how the power is consumed. To maximize the efficiency of energy conservation, it is necessary to make the running power low in the power monitor system, which the tradition systems pay less attention to. This paper presents PowerAnalyzer, an energy-aware system for monitoring running states and power of each household appliance plugged into power line from a single point detection. PowerAnalyzer takes steady-state current waveforms as the appliances signature, and uses the deep neural network (DNN) models to infer the running states and running power of household appliances. We focus on the energy consumption of PowerAnalyzer itself. The energy efficiency of PowerAnalyzer is optimized from these aspects: Using dynamic time intervals to collect electric data, replacing a cloud server with an edge node to process data, and transmitting differential data over a low power wireless protocol. The evaluation results show that PowerAnalyzer offers 3.45% average power metering error and 98.38% average accuracy of inferring running states of appliances. PowerAnalyzer draws less than 247mW static power and 304mW peak power.
机译:为了拯救家庭中的电能,必须监控电力消耗的位置和方式。为了最大限度地提高节能效率,有必要在电力监控系统中进行低运行功率,传统系统不太注意。本文介绍了PowerAnalyzer,一种能量感知系统,用于监控运行状态和从单点检测插入电力线的每个家电的电源。 PowerAnalyzer将稳态电流波形作为设备签名,并使用深神经网络(DNN)模型推断出家用电器的运行状态和运行功率。我们专注于Poweranalyzer本身的能耗。 PowerAnalyzer的能效由这些方面进行了优化:使用动态时间间隔收集电数据,用边缘节点替换云服务器来处理数据,并通过低功耗无线协议传输差分数据。评估结果表明,PowerAnalyzer提供了3.45%的平均功率计量误差和电器推断运行状态的98.38%的平均精度。 PowerAnalyzer绘制了静电功率低于247MW和304MW的峰值电源。

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