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An algorithm based on finite state machines with fuzzy transitions for non-intrusive load disaggregation

机译:基于模糊过渡的有限状态机的非侵入式负荷分解算法

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Despite the raising awareness in general public on environmental changes and high energy costs, a significant part of energy consumption is still due to an improper use of electrical appliances. Thus, there is a growing interest in developing systems for profiling the use of electrical appliances and suggesting adequate policies for energy saving. In this context, we propose a novel approach to extract the power consumption of a set of appliances from aggregate measurements collected from a smart meter. Our approach employs finite state machines based on fuzzy transitions (FSMFT) and a novel disaggregation algorithm. The FSMFTs are used to coarsely model how each type of appliance works. The disaggregation algorithm exploits a database of FSMFTs for, at each meaningful variation of real and reactive aggregate powers, hypothesizing possible configurations of active appliances. This set of configurations is concurrently managed by the algorithm which, whenever requested, outputs the configuration with the highest confidence with respect to the sequence of detected events. We have successfully tested our approach in an experimental environment in which five appliances have been monitored for 30 minutes.
机译:尽管公众对环境变化和高能源成本的认识提高了,但是能源消耗的很大一部分仍然是由于电器使用不当造成的。因此,人们对开发用于对电器的使用进行性能分析并提出适当的节能政策的系统的兴趣日益浓厚。在这种情况下,我们提出了一种新颖的方法,可以从从智能电表收集的汇总测量值中提取一组设备的功耗。我们的方法采用基于模糊转换(FSMFT)和新颖的分解算法的有限状态机。 FSMFT用于粗略建模每种设备的工作方式。分解算法利用FSMFT的数据库,针对有功和无功功率的每个有意义的变化,假设有源设备的可能配置。这组配置由算法同时管理,该算法每当被请求时,就检测到的事件序列而言,以最高的置信度输出配置。我们已经在一个实验环境中成功测试了我们的方法,在该实验环境中对五台设备进行了30分钟的监控。

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