<dd id="mimiw"><samp id="mimiw"></samp></dd>

<address id="mimiw"><nav id="mimiw"><delect id="mimiw"></delect></nav></address>

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

    Article retrieval

    文章檢索

    首頁(yè) >> 文章檢索 >> 往年索引

    帶并聯(lián)電抗器的雙回輸電線(xiàn)路故障測(cè)距新方法

    來(lái)源:電工電氣發(fā)布時(shí)間:2023-03-31 13:31 瀏覽次數(shù):414

    帶并聯(lián)電抗器的雙回輸電線(xiàn)路故障測(cè)距新方法

    張帥,李澄,嚴(yán)棟
    (國(guó)網(wǎng)江蘇省電力有限公司無(wú)錫供電分公司, 江蘇 無(wú)錫 214000)
     
        摘 要:為解決帶并聯(lián)電抗器輸電線(xiàn)路兩側(cè)電流變化和線(xiàn)路參數(shù)不固定產(chǎn)生的故障測(cè)距誤差問(wèn)題,提出了一種雙回輸電線(xiàn)路故障測(cè)距新方法。采用集中參數(shù)線(xiàn)路模型分析正序、負(fù)序、零序故障網(wǎng)絡(luò),推導(dǎo)出與線(xiàn)路單位長(zhǎng)度阻抗、導(dǎo)納以及并聯(lián)電抗器電抗值均無(wú)關(guān)的故障距離表達(dá)式。由線(xiàn)路分相電流差動(dòng)保護(hù)裝置縱向通道和橫向通道獲取四側(cè)同步的模擬量數(shù)據(jù),通過(guò)調(diào)整保護(hù)裝置的插件功能模塊研制出故障測(cè)距裝置。裝置試驗(yàn)結(jié)果表明,新方法的測(cè)距精度高于裝置原有的方法,能解決線(xiàn)路兩側(cè)帶并聯(lián)電抗器和線(xiàn)路參數(shù)變化引起的測(cè)距誤差問(wèn)題,且經(jīng)過(guò)渡電阻故障時(shí)仍具有較高的測(cè)距精度。
        關(guān)鍵詞: 并聯(lián)電抗器;線(xiàn)路參數(shù);橫向通道;故障測(cè)距
        中圖分類(lèi)號(hào):TM472 ;TM773     文獻(xiàn)標(biāo)識(shí)碼:A     文章編號(hào):1007-3175(2023)03-0047-08
     
    A New Fault Location Method of Double-Circuit Transmission
    Lines with Parallel Reactors
     
    ZHANG Shuai, LI Cheng, YAN Dong
    (Wuxi Power Supply Company of State Grid Jiangsu Electric Power Co., Ltd, Wuxi 214000, China)
     
        Abstract: In order to deal with fault location caused by current changes occurring to both sides of transmission lines with parallel reactors and unfixed line parameters, a new fault location method of double-circuit transmission lines is put forward. The paper adopts the lump parameter circuit model to analyze positive sequence, negative sequence and zero sequence fault networks, and generates the fault location expression which is irrelevant to line impedance and admittance per unit and the reactance value of parallel reactors. Then, after achieving four-side synchronized analog data from longitudinal and horizontal channels of the phase segregated current differential protection device,the authors invent the fault location device through adjusting the plug-in function module of this protection device. Test results show that this new method of fault location is more accurate than the old one. It not only can solve the problem of location error caused by changes of parallel reactors and line parameters, but also can have higher ranging accuracy when passing transition resistance faults.
        Key words: parallel reactor; line parameter; horizontal channel; fault location device
     
    參考文獻(xiàn)
    [1] APOSTOLOPOULOS C A, KORRES G N.A Novel Fault-Location Algorithm for Double-Circuit Transmission Lines Without Utilizing Line Parameters[J].IEEE Transactions on Power Delivery,2011,26(3):1467-1478.
    [2] AHSAEE M G, SADEH J.A Novel Fault-Location Algorith m for Long Transmission Lines Compensated by Series FACTS Devices[J].IEEE Transactions on Power Delivery,2011,26(4):2299-2308.
    [3] ABDELAZIZ A Y , MEKHAMER S F , EZZAT M .Fault Location of Uncompensated/Series-Compensated Lines Using Two-End Synchronized Measurements[J].Electric Power Components and Systems,2013,41(7) :693-715.
    [4] RAY P , PANIGRAHI B K , SENROY N . Hybrid methodology for fault distance estimation in series compensated transmission line[J].IET Generation Transmission & Distribution,2013,7(5) :431-439.
    [5] PARIKH U B, BHALJA B R.SVR-Based Current Zero Estimation Technique for Controlled Fault Interruption in the Series-Compensated Transmission Line[J].IEEE Transactions on Power Delivery,2013,28(3) :1364-1372.
    [6] JAFARIAN P , SANAYE-PASAND M . High-Frequency Transients-Based Protection of Multiterminal Transmission Lines Using the SVM Technique[J].IEEE Transactions on Power Delivery,2013,28(1):188-196.
    [7] FARSHAD M, SADEH J.A Novel Fault-Location Method for HVDC Transmission Lines Based on Similarity Measure of Voltage Signals[J].IEEE Transactions on Power Delivery,2013,28(4):2483-2490.
    [8] SUONAN Jiale, GAO Shuping, SONG Guobing, et al.A Novel Fault-Location Method for HVDC Transmission Lines[J].IEEE Transactions on Power Delivery,2010,25(2):1203-1209.
    [9] HE Z Y , LIAO K , LI X P , et al . Natural Frequency-Based Line Fault Location in HVDC Lines[J].IEEE Transactions on Power Delivery,2014,29(2):851-859.
    [10] NANAYAKKARA K , RAJAPAKSE A , WACHAL R .Traveling-Wave-Based Line Fault Location in Star-Connected Multiterminal HVDC Systems[J].IEEE Transactions on Power Delivery,2012,27(4):2286-2294.
    [11] 蘇斌,董新洲,孫元章. 特高壓帶并聯(lián)電抗器線(xiàn)路的行波差動(dòng)保護(hù)[J] . 電力系統(tǒng)自動(dòng)化,2004,28(23):41-44.
    [12] 林達(dá),王慧芳,何奔騰,等. 基于波形相關(guān)性的帶并聯(lián)電抗器線(xiàn)路永久性故障判別方法[J] . 電力系統(tǒng)自動(dòng)化,2013,37(16):80-84.
    [13] 王慶慶,王慧芳,林達(dá),等. 帶并聯(lián)電抗器線(xiàn)路單相永久性故障的識(shí)別方法[J] . 電力系統(tǒng)自動(dòng)化,2015,39(5):101-106.
    [14] 索南加樂(lè),孫丹丹,付偉,等. 帶并聯(lián)電抗器輸電線(xiàn)路單相自動(dòng)重合閘永久故障的識(shí)別原理研究[J].中國(guó)電機(jī)工程學(xué)報(bào),2006,26(11):75-81.
    [15] 索南加樂(lè),宋國(guó)兵,邵文權(quán),等. 兩端帶并聯(lián)電抗器輸電線(xiàn)路永久故障判別[J] . 電力系統(tǒng)自動(dòng)化,2007,31(20):56-60.
    [16] 林富洪. 超高壓帶并聯(lián)電抗器線(xiàn)路的故障測(cè)距算法[J]. 現(xiàn)代電力,2010,27(1):40-44.
    [17] 劉東超,李永麗,曾志安. 帶并聯(lián)電抗器的雙回線(xiàn)故障測(cè)距算法研究[J] . 電力系統(tǒng)及其自動(dòng)化學(xué)報(bào),2006,18(2):5-9.
    [18] 郭容,劉新東,曾銳明. 帶并聯(lián)電抗器高壓長(zhǎng)線(xiàn)路的故障測(cè)距算法研究[J] . 現(xiàn)代電力,2013,30(4):62-66.

     

    亚洲无码av成人在线,亚洲影院AV无码一区二区,亚洲无码第二页,成人无码AV网站在线观看不卡 (function(){ var bp = document.createElement('script'); var curProtocol = window.location.protocol.split(':')[0]; if (curProtocol === 'https') { bp.src = 'https://zz.bdstatic.com/linksubmit/push.js'; } else { bp.src = 'http://push.zhanzhang.baidu.com/push.js'; } var s = document.getElementsByTagName("script")[0]; s.parentNode.insertBefore(bp, s); })();