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    Suzhou Electric Appliance Research Institute
    期刊號: CN32-1800/TM| ISSN1007-3175

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    電力系統(tǒng)諧波狀態(tài)估計算法綜述

    來源:電工電氣發(fā)布時間:2019-09-19 10:19 瀏覽次數(shù):635
    電力系統(tǒng)諧波狀態(tài)估計算法綜述
     
    俞明1,呂干云1,魏鵬1,蔣小偉2
    (1 南京工程學(xué)院 電力工程學(xué)院,江蘇 南京 211167;2 國網(wǎng)浙江省電力有限公司檢修分公司,浙江 杭州 311200)
     
        摘 要:諧波狀態(tài)估計是根據(jù)有限節(jié)點上的諧波測量估算出未知節(jié)點及整個系統(tǒng)的諧波狀況,對于電力系統(tǒng)諧波監(jiān)測和治理具有重要意義。介紹了諧波狀態(tài)估計技術(shù)的概念、數(shù)學(xué)模型和估計算法,重點根據(jù)諧波阻抗是否已知,對主要的估計算法進(jìn)行分類與評述,并對諧波狀態(tài)估計今后的研究方向進(jìn)行了展望。
        關(guān)鍵詞:電力系統(tǒng);諧波;狀態(tài)估計;諧波阻抗
        中圖分類號:TM712     文獻(xiàn)標(biāo)識碼:A     文章編號:1007-3175(2019)09-0001-06
     
    Review on Harmonic State Estimation Algorithm of Power System
     
    YU Ming1, LYU Gan-yun1, WEI Peng1, JIANG Xiao-wei2
    (1 School of Electric Power Engineering, Nanjing Institute of Technology, Nanjing 2111 67, China;
    2 Inspection Branch of State Grid Zhejiang Electric Power Co., Ltd, Hangzhou 311 200, China)
     
        Abstract: Harmonic state estimation is based on the harmonic measurements of the finite node to estimate the harmonic state of the unknown node and the whole system, which is of great significance for the harmonic monitoring and control of the power system. Introduction was made to the concept, mathematical model and estimation algorithm of harmonic state estimation. The main estimation algorithms were classified and reviewed emphatically based on whether the harmonic impedance was known. The future research on harmonic state estimation is summarized and forecasted.
        Key words: power system; harmonic; state estimation; harmonic impedance
     
    參考文獻(xiàn)
    [1] 梁志瑞,葉慧強(qiáng),趙飛. 電力系統(tǒng)諧波狀態(tài)估計研究綜述[J]. 電力系統(tǒng)保護(hù)與控制,2010,38(15):157-160.
    [2] 吳篤貴,徐政. 電力系統(tǒng)諧波狀態(tài)估計技術(shù)發(fā)展與展望[J]. 電網(wǎng)技術(shù),1998,22(1):75-77.
    [3] 吳篤貴,徐政. 基于相量量測的電力系統(tǒng)諧波狀態(tài)估計(Ⅰ)——理論、模型與求解算法[J]. 電工技術(shù)學(xué)報,2004,19(2):64-68.
    [4] 林海雪,范明天,薛蕙. 電力系統(tǒng)諧波[M]. 北京:中國電力出版社,2008.
    [5] HEYDT G T.Identification of harmonic sources by a state estimation technique[J].IEEE Transactions on Power Delivery,1989,4(1):569-576.
    [6] NAJJAR M Y, HEYDT G T.A hybrid nonlinear least squares estimation of harmonic signal levels in power systems[J].IEEE Transactions on Power Delivery,1991,6(1):1101-1106.
    [7] MELIOPOULOS A P S, ZHANG F, SHALOM Z.Power system harmonic state estimation[J].IEEE Transactions on Power Delivery,1994,9(3):1701-1709.
    [8] 李碧君,薛禹勝,顧錦汶,等. 電力系統(tǒng)狀態(tài)估計問題的研究現(xiàn)狀和展望[J]. 電力系統(tǒng)自動化,1998,22(11):53-60.
    [9] 周念成,譚桂華,何建森,等. 基于統(tǒng)計方法的電網(wǎng)諧波狀態(tài)估計誤差分析[J]. 電工技術(shù)學(xué)報,2009,24(6):109-114.
    [10] 牛勝鎖,劉穎,梁志瑞,等. 基于廣域測量系統(tǒng)和抗差最小二乘法的電力系統(tǒng)諧波狀態(tài)估計[J]. 電力系統(tǒng)保護(hù)與控制,2012,40(8):10-14.
    [11] 牛勝鎖,張達(dá),梁志瑞,等. 基于抗差總體最小二乘法的電力系統(tǒng)諧波狀態(tài)估計[J]. 電力系統(tǒng)保護(hù)與控制,2014,42(11):106-111.
    [12] DU Z P, ARRILLAGA J, WATSON N.Continuous harmonic state estimation of power systems[J]. IET Proceedings-Generation Transmission and Distribution,1996,143(4):329-336.
    [13] 侯世英,汪瑤,祝石厚,等. 基于相量量測的電力系統(tǒng)諧波狀態(tài)估計算法的研究[J]. 電工電能新技術(shù),2008,27(2):42-46.
    [14] MATAIR S S, WATSON N R, WONG K P.Harmonic state estimation: Amethod for remote harmonic assessment in a deregulated utility network[C]//2000 International Conference on Electric Utility DRPT, London,2000:41-46.
    [15] YU K K C, WATSON N R.Three-phase harmonic state estimation using SVD for partially observable systems[C]//International Conference on Power System Technology, Singapore,2004:29-34.
    [16] LIAO H W. Power system harmonic state estimation and observability analysis via sparsity maximization[J].IEEE Transactions on Power Systems,2007,22(1):15-23.
    [17] 楊源,林圣,臧天磊,等. 基于改進(jìn)稀疏表示法的諧波源定位[J]. 電網(wǎng)技術(shù),2013,37(5):1279-1284.
    [18] 邱璐,陳麗華,臧天磊,等. 基于可觀性量測和梯度投影算法的諧波源定位[J]. 電網(wǎng)技術(shù),2016,40(2):649-655.
    [19] 牛勝鎖,梁志瑞,張建華,等. 基于廣義嶺估計的電力系統(tǒng)諧波狀態(tài)估計[J]. 電力自動化設(shè)備,2012,32(7):94-98.
    [20] AREFI A, HAGHIFAM M R, FATHI S H.Distribution harmonic state estimation based on a modified PSO considering parameters uncertainty[C]//2011 IEEE Trondheim Power Tech, Trondheim,2011:1-7.
    [21] AREFI A, HAGHIFAM M R, FATHI S H, et al.A novel algorithm based on honey bee mating optimization for distribution harmonic state estimation including distributed generators[C]//2009 IEEE Bucharest PowerTech, Bucharest,2009:1-7.
    [22] 韓美玉,王艷松,張麗霞. 基于粒子群算法的電力系統(tǒng)非線性諧波狀態(tài)估計[J]. 電力系統(tǒng)保護(hù)與控制,2013,41(22):98-102.
    [23] DE ARRUDA E F, KAGAN N, RIBEIRO P F.Harmonic distortion state estimation using an evolutionary strategy[J].IEEE Transactions on Power Delivery,2010,25(2):831-842.
    [24] BEIDES H M, HEYDT G T.Dynamic state estimation of power system harmonics using Kalman filter methodology[J].IEEE Transactions on Power Delivery,1991,6(4):1663-1670.
    [25] YU K K C, WATSON N R, ARRILLAGA J. An adaptive Kalman filter for dynamic harmonic state estimation and harmonic injection tracking[J].IEEE Transactions on Power Delivery,2005,20(2):1577-1584.
    [26] 王艷,臧天磊,符玲,等. 基于諧波源特征提取的電力系統(tǒng)動態(tài)諧波狀態(tài)估計自適應(yīng)方法[J]. 電網(wǎng)技術(shù),2018,42(8):2612-2619.
    [27] JEU M, HENG Y.A static state estimation approachincluding bad data detection and identification in power systems[C]//IEEE General Meeting Power Engineering Society, Tampa,2007:1-7.
    [28] ABU-HASHIM R, BURCH R, CHANG G, et al.Test systems for harmonics modeling and simulation[J].IEEE Transactions on Power Delivery,1999,14(2):579-587.
    [29] GURSOY E.Independent component analysis for harmonic source identification in electric power systems[D].Philadelphia:Drexel University,2007.
    [30] GURSOY E, NIEBUR D. Harmonic load identification using complex independent component analysis[J].IEEE Transactions on Power Delivery,2009:24(1):285-292.
    [31] MASOUD F, MOHAMED A, SJAREEF H.A new method for determining multiple harmonic source locations in a power distribution system[C]//2010 IEEE International Conference on Power and Energy (PECon), Kuala Lumpur,2010:146-150.
    [32] 楊源,臧天磊,何正友. 一種諧波阻抗未知條件下的諧波源定位方法[J]. 電網(wǎng)技術(shù),2014,38(1):222-226.
    [33] 韓斐,楊洪耕. 基于復(fù)值獨立分量分析的配電網(wǎng)諧波狀態(tài)估計[J]. 電網(wǎng)技術(shù),2014,38(11):3173-3179.
    [34] 韓斐,楊洪耕,王佳興,等. 變分貝葉斯獨立分量分析在諧波狀態(tài)估計中的應(yīng)用[J]. 電力系統(tǒng)及其自動化學(xué)報,2016,28(4):68-72.
    [35] 陳靜,符玲,臧天磊,等. 考慮系統(tǒng)諧波阻抗改變的諧波責(zé)任定量劃分方法[J]. 電力自動化設(shè)備,2016,36(6):215-222.
    [36] 王艷,臧天磊,何正友. 電網(wǎng)參數(shù)變化條件下的諧波狀態(tài)分段估計方法[ J ] . 電力系統(tǒng)自動化,2016,40(17):217-223.
    [37] FARDANESH B, ZELINGHER S, MELIPOULOUS A P S, et al. Harmonic monitoring system via synchronized measurements[C]//International Conference on Harmonics and Quality of Power Proceedings, Athens,1998:482-488.
    [38] KANAO N, YAMASHITA M, YANAGIDA H, et al.Power system harmonic analysis state estimation method for Japanese field data[J].IEEE Transactions on Power Delivery,2005,20(2):970-977.

     

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