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電氣設備諧波干擾性檢測與評估方案
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中國廣核新能源控股有限公司 安徽 合肥230000

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TN978

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Harmonic Interference Detection and Evaluation Scheme of Electrical Equipment
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    摘要:

    針對風(fēng)力發(fā)電、光伏發(fā)電新能源的廣泛使用,引入的諧波干擾性問(wèn)題,本文研究了電氣設備諧波干擾性檢測與評估方案,設計了電氣設備諧波檢測系統,包含六大部分:主控電路、電壓采樣電路、波形轉換電路、同步鎖相倍頻電路、A/D轉換電路和液晶顯示電路。實(shí)現了電氣設備信號的采集、波形的轉換、信號的倍頻放大和信號的顯示功能。并且還采用了基于改進(jìn)DFT和時(shí)域準同步算法進(jìn)行電氣設備諧波的檢測,實(shí)現對諧波精準、穩定的檢測。此外還研究了對電氣設備諧波評估的方法,采用非干預式估計法對電氣設備諧波進(jìn)行評估,實(shí)現了對負荷運行沒(méi)有影響的情況下進(jìn)行電氣設備諧波的評估。為驗證本研究的優(yōu)越性,做了大量的實(shí)驗,實(shí)驗表明了本研究電氣設備諧波檢測的誤差在 范圍內,具有高精準度和穩定性。

    Abstract:

    Aiming at the problem of harmonic interference caused by the wide use of wind power generation and photovoltaic power generation, this paper studies the detection and evaluation scheme of harmonic interference of electrical equipment, and designs the harmonic detection system of electrical equipment, which includes six parts: main control circuit, voltage sampling circuit, waveform conversion circuit, synchronous phase-locked frequency multiplier circuit, a / D conversion circuit and liquid crystal display circuit. The functions of signal acquisition, waveform conversion, frequency doubling and signal display are realized. In addition, the improved DFT and time-domain quasi synchronous algorithm are used to detect the harmonics of electrical equipment, so as to achieve accurate and stable detection of harmonics. In addition, the method of harmonic evaluation of electrical equipment is also studied, and the non intervention estimation method is used to evaluate the harmonic of electrical equipment, so as to realize the harmonic evaluation of electrical equipment without affecting the load operation. In order to verify the superiority of this study, a large number of experiments have been done. The experiments show that the harmonic detection error of electrical equipment in this study is within the range, with high accuracy and stability.

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張小雷.電氣設備諧波干擾性檢測與評估方案計算機測量與控制[J].,2022,30(3):266-271.

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  • 收稿日期:2021-07-04
  • 最后修改日期:2021-10-20
  • 錄用日期:2021-10-20
  • 在線(xiàn)發(fā)布日期: 2022-03-23
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