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文章摘要
动态电能计量算法研究综述
Dynamic power metering algorithms : A review
Received:August 20, 2021  Revised:September 10, 2021
DOI:10.19753/j.issn1001-1390.2023.04.001
中文关键词: 功率理论  电能计量  快速傅里叶变换  时-频分析  小波变换
英文关键词: power theory, electric power measurement, FFT, time-frequency analysis, wavelet transform
基金项目:面向准确快速需求的配电网同步相量测量单元最优测量算法研究,
Author NameAffiliationE-mail
shaofangjing* State Grid Shaanxi Marketing Service Center(Metrology Center) 871082749@qq.com 
Song Xiaolin State Grid Shaanxi Marketing Service Center(Metrology Center) sxlgoodluck@163.com 
Liu Jian Tsinghua University liujian20@mails.tsinghua.edu.cn 
Lei Jingting State Grid Shaanxi Marketing Service Center(Metrology Center) lvn_lei@163.com 
Yu Yiqing Tsinghua University wyq16@mails.tsinghua.edu.cn 
Zhao Wei Tsinghua University zhaowei@tsinghua.edu.cn 
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中文摘要:
      能源互联网背景下,电网表现出“双高”和“双随机”特征,致使其电压、频率随机且频繁出现波动变化,引发新的电能质量问题。动态条件下如何实现电能的准确计量,以保证其公平公正,已越来越受到关注。本文从稳态和动态两方面对现有电能计量算法进行梳理和归纳,总结点积和与快速傅里叶变换等稳态算法的原理、技术特征及对信号动态变化的不适用性;对估计基波频率类动态算法,以及短时傅里叶变换、小波变换、希尔伯特-黄变换和S变换等时-频分析类动态算法的原理、技术特点、局限性等进行比较和分析;并重点归纳了小波变换方法的优缺点及应用前景。在此基础上,对动态电能计量算法的未来研究给出了建议。
英文摘要:
      In the context of Energy Internet, the power grid exhibits the characteristics of “double high” and “double random”, causing frequent, unpredictable voltage and frequency fluctuations and hence new power quality issues. It has?attracted some attention on how to realize the accurate measurement of electric energy under dynamic conditions in order to ensure the fairness and justice of the energy trade. The paper reviews the existing electric energy metering algorithms from both steady-state and dynamic aspects and summaries their principles, technical characteristics, including mechanisms of how the steady-state algorithms, such as dot product sum and fast Fourier transform, become unfit to dynamic measurement signals. The principle, technical characteristics, and limitations of dynamic algorithms for estimating fundamental frequency, as well as time-frequency analytical dynamic algorithms including short-time Fourier transform, wavelet transform, Hilbert-Huang transform, and S-transform, are compared. Specifically, the advantages and disadvantages of the wavelet transform method and its application prospects are focused on. Finally, the future research trends of dynamic energy metering algorithms are discussed.
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