栾文鹏, 韦尊, 刘博, 刘子帅, 余贻鑫. 非侵入式负荷监测算法的测试与评价方法[J]. 电网技术, 2022, 46(11): 4568-4579. DOI: 10.13335/j.1000-3673.pst.2022.1411
引用本文: 栾文鹏, 韦尊, 刘博, 刘子帅, 余贻鑫. 非侵入式负荷监测算法的测试与评价方法[J]. 电网技术, 2022, 46(11): 4568-4579. DOI: 10.13335/j.1000-3673.pst.2022.1411
LUAN Wenpeng, WEI Zun, LIU Bo, LIU Zishuai, YU Yixin. Testing and Performance Evaluation of Nonintrusive Load Monitoring Algorithms[J]. Power System Technology, 2022, 46(11): 4568-4579. DOI: 10.13335/j.1000-3673.pst.2022.1411
Citation: LUAN Wenpeng, WEI Zun, LIU Bo, LIU Zishuai, YU Yixin. Testing and Performance Evaluation of Nonintrusive Load Monitoring Algorithms[J]. Power System Technology, 2022, 46(11): 4568-4579. DOI: 10.13335/j.1000-3673.pst.2022.1411

非侵入式负荷监测算法的测试与评价方法

Testing and Performance Evaluation of Nonintrusive Load Monitoring Algorithms

  • 摘要: 非侵入式电力负荷监测(nonintrusive load monitoring,NILM)是一种低成本、高效益的用电细节信息获取技术,在智能配用电领域具有广阔的应用空间。然而,缺少客观、全面、可靠的测试与评价方法体系将极大阻碍NILM技术的科研进展及其市场化步伐。为此,该文聚焦于NILM算法与产品的测试与评价,从测试数据获取、评价指标选择、测试平台搭建三方面对研究现状及现存问题进行全面总结和分析。首先,对现有NILM评测流程和方法进行了总结分析。进而,明确了测试数据需求指导原则,并对不同的测试数据获取方法以及主流测试数据集进行了总结和对比分析。在此基础上,为了使不同场景下的测试结果具有横向可比性,引入了数据场景复杂性的概念并总结了可量化的复杂性描述方法。在算法准确性和产品实用性两方面,对NILM性能评价指标进行了系统的梳理和分析讨论。最后,总结了NILM领域标准化工作,特别是近期出版的我国电力行业标准《非介入式用电负荷监测装置技术规范》的编写考量与过程。在总结现有测试与评价平台的基础上,介绍了行业标准中推荐的NILM测试与评价平台的通用框架,为相关用户及研究实施者提供全面的参考。

     

    Abstract: Nonintrusive load monitoring (NILM) is a low-cost but efficient technology to obtain detailed information of electricity consumption, which has a broad application potential in power distribution & utilization. However, the lack of objective, comprehensive and reliable testing and evaluation method impacts greatly the research and implementation of NILM technologies. Therefore, this paper focuses on the testing and evaluation of NILM algorithm and products, and comprehensively summarizes and analyzes the research status and existing problems from three aspects: test data acquisition, evaluation metric selection, and test platform construction. Firstly, existing NILM evaluation processes and methods are summarized and analyzed. Then, the guiding principles of test data requirements are clarified, and different test data acquisition methods and mainstream test data sets are summarized and compared. On this basis, in order to make the test results in different scenarios comparable, the concept of data scenario complexity is introduced and quantifiable complexity description methods are summarized. In terms of algorithm accuracy and product practicality, the performance evaluation indexes of NILM are systematically investigated, analyzed and discussed. Furthermore, it summarizes the status of NILM technology standardization, especially introduces the recently published power industry standard in China "Technical specification for nonintrusive load monitoring device". Finally on the basis of summarizing the existing testing and evaluation platforms, this paper introduces the general framework of the NILM testing and evaluation platform recommended in the industry standards, so as to provide a comprehensive reference for relevant users, researchers and technology implementers.

     

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