一般化
骨料(复合)
计算机科学
自编码
概率逻辑
编码器
能源消耗
能量(信号处理)
数据挖掘
国家(计算机科学)
人工智能
功率(物理)
算法
人工神经网络
工程类
数学
统计
物理
电气工程
数学分析
操作系统
复合材料
量子力学
材料科学
作者
Antoine Langevin,Marc‐André Carbonneau,Mohamed Cheriet,Ghyslain Gagnon
标识
DOI:10.1016/j.enbuild.2021.111623
摘要
Non-intrusive load monitoring (NILM) is a technique that uses a single sensor to measure the total power consumption of a building. Using an energy disaggregation method, the consumption of individual appliances can be estimated from the aggregate measurement. Recent disaggregation algorithms have significantly improved the performance of NILM systems. However, the generalization capability of these methods to different houses as well as the disaggregation of multi-state appliances are still major challenges. In this paper we address these issues and propose an energy disaggregation approach based on the variational autoencoders framework. The probabilistic encoder makes this approach an efficient model for encoding information relevant to the reconstruction of the target appliance consumption. In particular, the proposed model accurately generates more complex load profiles, thus improving the power signal reconstruction of multi-state appliances. Moreover, its regularized latent space improves the generalization capabilities of the model across different houses. The proposed model is compared to state-of-the-art NILM approaches on the UK-DALE and REFIT datasets, and yields competitive results. The mean absolute error reduces by 18% on average across all appliances compared to the state-of-the-art. The F1-Score increases by more than 11%, showing improvements for the detection of the target appliance in the aggregate measurement.
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