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首页> 外文期刊>IEEE Transactions on Parallel and Distributed Systems >A Distributed and Scalable Approach to Semi-Intrusive Load Monitoring
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A Distributed and Scalable Approach to Semi-Intrusive Load Monitoring

机译:分布式可扩展的半侵入式负载监测方法

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Non-intrusive appliance load monitoring (NIALM) helps identify major energy guzzlers in a building without introducing extra metering cost. It motivates users to take proper actions for energy saving and greatly facilitates demand response (DR) programs. Nevertheless, NIALM of large-scale appliances is still an open challenge. To pursue a scalable solution to energy monitoring for contemporary large-scale appliance groups, we propose a distributed metering platform and use parallel optimization for semi-intrusive appliance load monitoring (SIALM). Based on a simple power model, a sparse switching event recovering (SSER) model is established to recover appliance states from their aggregated load data. Furthermore, the sufficient conditions for unambiguous state recovery of multiple appliances are presented. By considering these conditions as well as the electrical network topology constraint, a minimum number of meters are obtained to correctly recover the energy consumption of individual appliances. We evaluate the performance of both SIALM and NIALM with real-world trace data and synthetic data. The results demonstrate that with the help of a small number of meters, the SIALM approach significantly improves the accuracy of energy disaggregation for large-scale appliances.
机译:非侵入式设备负载监控(NIALM)有助于识别建筑物中的主要耗能器,而不会引起额外的计量成本。它激励用户采取适当的节能措施,并极大地促进了需求响应(DR)计划。尽管如此,NIALM的大型家电仍然是一个开放的挑战。为了为当代大型家电集团寻求一种可扩展的能源监控解决方案,我们提出了一个分布式计量平台,并对半侵入式家电负载监控(SIALM)使用并行优化。基于简单的电源模型,建立了稀疏开关事件恢复(SSER)模型,以从设备的汇总负载数据中恢复设备状态。此外,提供了用于明确恢复多个设备的充分条件。通过考虑这些条件以及电网拓扑约束,可以获取最少数量的仪表,以正确恢复单个设备的能耗。我们使用真实的跟踪数据和综合数据评估SIALM和NIALM的性能。结果表明,借助少量电表,SIALM方法可显着提高大型设备的能量分配精度。

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