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

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    發(fā)電廠廠用電經(jīng)中阻接地系統(tǒng)零序保護(hù)優(yōu)化

    來源:電工電氣發(fā)布時(shí)間:2021-06-28 10:28 瀏覽次數(shù):560
    發(fā)電廠廠用電經(jīng)中阻接地系統(tǒng)零序保護(hù)優(yōu)化
     
    馬迎東,付傳奇
    (神華福能發(fā)電有限責(zé)任公司,福建 泉州 326700)
     
        摘 要 :國(guó)內(nèi)發(fā)電廠廠用電系統(tǒng)多采用高壓廠用變低壓側(cè)經(jīng)中電阻接地方式。當(dāng)饋線發(fā)生接地保護(hù)時(shí)由定時(shí)限接地保護(hù)做動(dòng)作于跳閘故障饋線,但當(dāng)饋線發(fā)生高阻接地時(shí),因保護(hù)裝置測(cè)得接地電流較小,保護(hù)可能發(fā)生拒動(dòng)情況,導(dǎo)致廠用電系統(tǒng)長(zhǎng)期帶病運(yùn)行,如果不及時(shí)消除可能擴(kuò)大故障范圍。提出在原有定時(shí)限保護(hù)的基礎(chǔ)上,增加反時(shí)限保護(hù)用于發(fā)信,可以快速對(duì)故障饋線進(jìn)行處理,定、反時(shí)限相結(jié)合的零序過流保護(hù)可以保證高阻接地時(shí)按一般反時(shí)限曲線定位故障饋線并發(fā)出告警,接地電阻較小時(shí)按定時(shí)限快速跳閘。結(jié)合實(shí)際中高壓廠用變低壓側(cè)零序一、二時(shí)限出口整定方式與廠用電快切裝置功能相矛盾,提出解決方案,以保證廠用電系統(tǒng)安全運(yùn)行。
        關(guān)鍵詞 :零序過流保護(hù) ;廠用電快切 ;高阻接地 ;電容電流 ;零序電流
        中圖分類號(hào) :TM77     文獻(xiàn)標(biāo)識(shí)碼 :A     文章編號(hào) :1007-3175(2021)06-0025-04
     
    Optimization of Zero-Sequence Protection for Neutral Resistance
    Grounding System in Power Plant
     
    MA Ying-dong, FU Chuan-qi
    (Shenhua Funeng Power Generation Co., Ltd, Quanzhou 326700, China)
     
        Abstract: Domestic power plant auxiliary power systems mostly use high-voltage auxiliary transformer low-voltage side grounding through medium resistance. When the feeder is grounded, it is moved by a fixed time-limit grounding protection to the hop fault feeder. But when the feeder is grounded with high resistance, the grounding current measured by the protection device will be small, which may resist the protection action. As a result, the factory power system sickly runs for a long term. If it’s not eliminated in time, the fault range may be expanded. It is proposed that on the basis of the original fixed time-limit protection, anti-time protection can be added for sending letters,which can quickly process fault feeders. The zero-sequence over current protection combined with fixed and anti-time limits can ensure that the fault feeder is positioned and alarmed according to the general anti-time limit curve when grounding is high. When the grounding resistance is small, it can quickly jump according to the fixed time limit. The zero-sequence one and second time-time export tuning methods of high-voltage plants contradict the functions of the factory power fast cutting device. This paper puts forward solutions to the problems above mentioned in order to ensure the safe operation of the factory power system.
        Key words: zero-sequence over current protection; rapid power cutting for factory use; high resistance grounding; capacitance current;zero-sequence current
     
    參考文獻(xiàn)
    [1] 中國(guó)電力企業(yè)聯(lián)合會(huì) . 廠用電繼電保護(hù)整定計(jì)算導(dǎo)則 :DL/T 1502—2016[S]. 北京 :中國(guó)電力出版社,2016 :22-23.
    [2] 汪洋,薛永端,徐丙垠,等 . 小電阻接地系統(tǒng)接地故障反時(shí)限零序過電流保護(hù) [J]. 電力系統(tǒng)自動(dòng)化,2018,42(20) :150-157.
    [3] 薛永端,汪洋,徐丙垠,等 . 小電阻接地系統(tǒng)高靈敏度階段式零序過電流保護(hù) [J] . 中國(guó)電機(jī)工程學(xué)報(bào),2020,40(19) :6217-6226.
    [4] 曹文思,吳擎,徐銘銘,等 . 基于分形理論與聚類分析的小電阻接地系統(tǒng)高阻接地保護(hù)方法 [J] . 電力自動(dòng)化設(shè)備,2020,40(4) :204-209.
    [5] 曹喆,季亮,常瀟,等 . 基于復(fù)合補(bǔ)償因子的微電網(wǎng)反時(shí)限電流保護(hù)方法 [J]. 電力系統(tǒng)保護(hù)與控制,2020,48(20) :133-140.
    [6] 孫正偉,劉家慶,鮑斌,等 . 超高壓電網(wǎng)反時(shí)限零序過流保護(hù)簡(jiǎn)化整定方法 [J] . 電力系統(tǒng)保護(hù)與控制,2020,48(17) :18-26.
    [7] 林志超,劉鑫星,王英民,等 . 基于零序電流比較的小電阻接地系統(tǒng)接地故障保護(hù) [J] . 電力系統(tǒng)保護(hù)與控制,2018,46(22) :15-21.
    [8] 楊帆,劉鑫星,沈煜,等 . 基于零序電流投影系數(shù)的小電阻接地系統(tǒng)高阻接地故障保護(hù) [J] . 電網(wǎng)技術(shù),2020,44(3) :1128-1133.
    [9] 龍毅,歐陽(yáng)金鑫,熊小伏,等 . 基于零序功率變化量的配電網(wǎng)單相高阻接地保護(hù) [J]. 電工技術(shù)學(xué)報(bào),2019,34(17) :3687-3695.
    [10]盛亞如,叢偉,卜祥海,等 . 基于中性點(diǎn)電流與零序電流投影量差動(dòng)的小電阻接地系統(tǒng)高阻接地故障判斷方法 [J] . 電力自動(dòng)化設(shè)備,2019,39(3) :17-22.
    [11]曾德輝,王鋼,李海鋒,等 . 小電阻接地配電網(wǎng)多回線故障分析與自適應(yīng)零序電流保護(hù) [J] . 電力自動(dòng)化設(shè)備,2019,39(5) :45-52.
    [12]林志超,汪洋,羅步升,等 . 小電阻接地系統(tǒng)高靈敏度接地保護(hù)配置與整定 [J] . 電力系統(tǒng)及其自動(dòng)化學(xué)報(bào),2020,32(3) :25-32.
    [13]李歐 . 引入電壓變速因子的反時(shí)限零序電流保護(hù)方案 [J]. 廣東電力,2020,33(2) :109-116.
    [14]董凱達(dá),蔡燕春,余群兵,等 . 小電阻接地系統(tǒng)靈活高阻接地保護(hù)研究 [J] . 廣東電力,2019,32(1) :109-117.
    [15]國(guó)家電力調(diào)度通信中心 . 國(guó)家電網(wǎng)繼電保護(hù)整定計(jì)算技術(shù)規(guī)范 :Q/GDW 422—2010[S] . 北京 :中國(guó)電力出版社,2010 :5.
    [16]BOSTWICK M A.Distribution feeder ground fault protection improved by use of zero-sequence operator in the 3-phase sectionalizer[J].IEEE Transactions on Power Apparatus and Systems,1954,73(2) :1112-1115.
     

     

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