环状有源配电网改进电流差动保护方案
CSTR:
作者:
作者单位:

(1.中国电力科学研究院有限公司, 北京 100192;2.西南交通大学电气工程学院, 四川 成都 610031)

通讯作者:

刘科研(1978—),男,博士,教授级高级工程师,主要从事配电网建模仿真与智能分析的研究;E?mail:liukeyan@epri.sgcc.com.cn

中图分类号:

TM77

基金项目:

国家电网公司总部科技项目(5400?202099524A?0?0?00)


An improved current differential protection scheme for annular active distribution networks
Author:
Affiliation:

(1.China Electric Power Research Institute, Beijing 100192, China;2.School of Electrical Engineering, Southwest Jiaotong University, Chengdu 610031, China)

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    摘要:

    为提高配电网供电可靠性和分布式电源接纳能力,有源环状网络成为配电网主要发展方向之一。然而,大量分布式电源接入改变了配电网潮流和故障特征,传统三段式电流保护方案可靠性不足。为此,提出一种针对环状有源配电网的改进电流差动保护方案。首先对环状有源配电网区内、外故障电流关系表达式进行推导,分析两端电流故障分量的向量关系;然后利用保护区段两端故障电流比构造主保护判据,进一步地针对环状结构配电网设置避免保护误动的辅助判据;最后利用PSCAD/EMTDC仿真平台搭建环状有源配电网模型,通过大量仿真分析,验证所提保护方案的有效性和抗干扰能力。该方案同样适用于典型辐射状有源配电网。

    Abstract:

    In order to improve the power supply reliability and the source acceptance capacity of distribution networks, the active ring network has become one main development trend of the distribution network. However, the connection of numerous distributed power sources will impact the power flow and fault characteristics, and thus reduce the performance of the traditional three?stage current protection scheme. In this regard, an improved current differential protection scheme is proposed for annular active distribution networks in this paper. Firstly, the expressions for the relationship between the fault currents inside and outside the annular active distribution network are derived, and thus the vectorial relationship between the fault current components at both ends can be figured out. Then the main protection criterion is constructed by the fault current ratio of the two ends of protected area section., and the auxiliary protection criterion to avoid protection misoperation is also set for the annular structure distribution network. Finally, the PSCAD/EMTDC simulation platform is used to verify the effectiveness and interference resistance of the proposed protection scheme.

    参考文献
    [1] 刘刚,朱林,祁升龙,等.基于拓扑结构变化的配电网自适应保护方法[J].电力科学与技术学报,2022,37(1):106?112. LIU Gang,ZHU Lin,QI Shenglong,et al.Adaptive protection method for distribution networks based on the dynamic topology[J].Journal of Electric Power Science and Technology,2022,37(1):106?112.
    [2] 梅军,张丙天,朱鹏飞,等.基于故障电流主动控制的柔性直流配电网故障定位方法[J].电力系统自动化,2021,45(24):133?141. MEI Jun,ZHANG Bintian,ZHU Feipeng,et al.Fault location method of flexible DC distribution network based on active control of fault current[J].Automation of Electric Power Systems,2021,45(24):133?141.
    [3] SALEM M M.,ELKALASHY N I,ATIA Y,et al.Modified inverter control of distributed generation for enhanced relaying coordination in distribution networks[J].IEEE Transactions on Power Delivery,2017,32(1):78?87.
    [4] 张健磊,高湛军,陈明,等.考虑复故障的有源配电网故障定位方法[J].电工技术学报,2021,36(11):2265?2276. ZHANG Jianlei,GAO Zhanjun,CHEN Ming,et al.Fault location method for active distribution networks considering combination faults[J].Transactions of China Electrotechnical Society,2021,36(11):2265?2276.
    [5] 陈海东,蒙飞,赵磊,等.利用分布式电源注入信号的配电线路故障性质识别技术[J].高压电器,2022,58(12):123?129. CHEN Haidong,MENG Fei,ZHAO Lei,et al.Fault identification technology for distribution line based on distributed generation injection signal[J].High Voltage Apparatus,2022,58(12):123?129.
    [6] 娄为,沈冰,裘愉涛,等.钻石型配电网的保护与自愈策略分析[J].电力系统保护与控制,2022,50(23):161?168. LOU Wei,SHEN bin,QIU Yutao,et al.Protection and self?healing strategy analysis of a diamond type distribution network[J].Power System Protection and Control ,2022,50(23):161?168.
    [7] 陈晓龙,李永丽,赵曼勇,等.计及配电网电流保护整定原则的逆变型分布式电源准入容量计算[J].电力自动化设备,2016,36(6):156?162. CHEN Xiaolong,LI Yongli,ZHAO Manyong,et al.IBDG penetration level calculation considering current protection setting principle for distribution network[J].Electric Power Automation Equipment,2016,36(6):156? 162.
    [8] 黄欣,孙雁斌.辐射状配电网电流保护范围在线分析方法[J].电力科学与技术学报,2017,32(4):102?107. HUANG Xin,SUN Yanbin.Online analysis method of current protection range for radial distribution system[J].Journal of Electric Power Science and Technology,2017,32(4):102?107.
    [9] 黄景光,丁婧,郑淑文,等.高渗透率微网自适应电流保护方法研究[J].电力科学与技术学报,2017,32(1):37?42. HUANG Jingguang,DING Jing,ZHENG Shuwen,et al.Research on adaptive current protection method for micro?grid with high penetration[J].Journal of Electric Power Science and Technology,2017,32(1):37?42.
    [10] 梁营玉,卢正杰.基于补偿系数的有源配电网自适应电流差动保护[J].电网技术,2022,46(6):2268?2275. LIANG Yingyu,LU Zhengjie.Adaptive differential protection principle based on compensation coefficient for active distribution network[J].Power System Technology,2022,46(6):2268?2275.
    [11] 吴奕,顾乔根,崔玉,等.UPFC系统的变压器差动保护分析[J].电力工程技术,2021,40(1):99?106. WU Yi,GU Qiaogen,CUI Yu,et al.Transformer differential protection in UPFC system[J].Electric Power Engineering Technology,2021,40(1):99?106.
    [12] 孙玲玲,王宁,贾清泉,等.计及分布式光伏发电低电压穿越能力的主动配电网保护方法[J].电力自动化设备,2018,38(6):79?86. SUN Lingling,WANG Ning,JIA Qingquan,et al.Protection method of active distribution network considering low voltage ride?through of distributed PV generation[J].Electric Power Automation Equipment,2018,38(6):79?86.
    [13] 马帅,武志刚,高厚磊,等.适配高渗透率DG接入配电网的幅值比较式保护[J].电力系统保护与控制,2019,47(4):43?50. MA Shuai,WU Zhigang,GAO Houlei,et al.Amplitude comparison protection for distribution network with high permeability distributed generation[J].Power System Protection and Control,2019,47(4):43?50.
    [14] 朱妍,陆于平.含DG配网充分式优选制综合电流幅值差动保护[J].中国电机工程学报,2018,38(S1):68?74. ZHU Yan,LU Yuping.Sufficient optimized comprehensive current amplitude differential protection for distribution network with distributed generation[J].Proceedings of the CSEE,2018,38(S1):68?74.
    [15] 翁嘉明,刘东,安宇,等.馈线功率控制下的主动配电网信息物理风险演化分析[J].中国电力,2021,54(3):13?22. WENG Jiaming,LIU Dong,AN Yu,et al.Cyber?physical risk evolution analysis of active distribution network under feeder control error[J].Electric Power,2021,54(3):13?22.
    [16] 刘世明,赵永森,王波,等.基于光学电流互感器的有源配电网相差保护方案[J].电力系统自动化,2022,46(22):173?181. LIU Shiming,ZHAO Yongsen,WANG Bo,et al.Phase difference protection scheme of active distribution network based on optical current transformer[J].Automation of Electric Power Systems,2022,46(22):173?181.
    [17] 陈建坤,张璨,许洪华,等.“边端融合”架构下配电系统全域选择性保护的仿真研究[J].智慧电力,2022,50(3):80?86. CHEN Jiankun,ZHANG Can,XU Honghua,et al.Simulation research on global selective protection technology of distribution system with edge?terminal integration architecture[J].Smart Power,2022,50(3):80?86.
    [18] 陈建平,桑林卫,汤拓,等.自适应幅值比的有源配电网差动保护方案[J].电测与仪表,2021,58(10):29?35. CHEN Jianping,SANG Linwei,TANG Tuo,et al.Adaptive distribution network differential protection scheme with adaptive amplitude ratio[J].Electrical Measurement & Instrumentation,2021,58(10):29?35.
    [19] 陈桥山.含逆变型分布式电源配电网故障选线方案研究[D].长沙:长沙理工大学,2020. CHEN Qiaoshan.Studies on faulty feeder selection scheme for distribution network with inverter?interfaced distributed generators[D].Changsha:Changsha University of Science &Technology,2020.
    [20] 胡蓓,肖浩,李建光,等.光纤电流互感器的噪声分析与信噪比优化设计[J].高电压技术,2017,43(2):654?660. HU Bei,XIAO Hao,LI Jianguang,et al.Noise analysis and snr optimization design of fiber optical current transformers[J].High Voltage Engineering,2017,43(2):654?660.
    [21] 桂小智,蒙天赐,潘本仁,等.基于模型识别相关性的光伏发电并网联络线纵联保护[J].电网与清洁能源,2022,38(12):131?137. GUI Xiaozhi,MENG Tianci,PAN Benren,et al.Pilot protection of the tie?line of photovoltaic power generation based on model identification correlation[J].Power System and Clean Energy,2022,38(12):131?137.
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刘科研,叶学顺,李 昭,等.环状有源配电网改进电流差动保护方案[J].电力科学与技术学报,2023,38(3):157-165.
LIU Keyan, YE Xueshun, LI Zhao, et al. An improved current differential protection scheme for annular active distribution networks[J]. Journal of Electric Power Science and Technology,2023,38(3):157-165.

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  • 在线发布日期: 2023-09-19
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