考虑可平移负荷和智能软开关的主动配电网故障恢复方法
CSTR:
作者:
作者单位:

(1.中国农业大学信息与电气工程学院,北京 100083;2.中国人民大学新校区建设办公室,北京 100872;3.萨格勒布大学电气与计算机工程学院,萨格勒布 10000;4.俄罗斯科学院西伯利亚分院能源研究所,新西伯利亚 630090)

通讯作者:

杨德昌(1983—),男,副教授,博士,主要从事新型电力系统的规划运行与控制研究;E?mail:yangdechang@cau.edu.cn

中图分类号:

TM863

基金项目:

国家自然科学基金(51977212);国家自然科学基金交流项目(52111530048)


Fault recovery of active distribution network considering translatable load and soft open point
Author:
Affiliation:

(1.College of Information and Electrical Engineering,China Agricultural University, Beijing 100083, China;2.New Campus Construction Office,Renmin University of China, Beijing 100872, China;3.Faculty of Electrical Engineering and Computing, University of Zagreb, Zagreb 10000, Croatia;4.Energy Research Institute, Siberia Branch of the Russian Academy of Sciences, Novosibirsk 630090, Russia)

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    摘要:

    在配电网发生故障后,主动配电网能够实现用户侧参与功率的实时供需平衡,满足故障后的负荷恢复。用户参与配电网的调度也是提升故障后负荷恢复比例的途径之一,可平移负荷具有较强的可控性,有效提升了主动配电网的灵活性,智能软开关等新兴可控设备的接入,也使负荷的快速供电成为可能。本文建立了考虑可平移负荷和智能软开关的主动配电网故障恢复模型,并考虑了负荷的重要性系数。通过改进的IEEE 33节点算例进行仿真分析,构建单一故障、多点故障、短时故障的场景,验证了本文所提出方法的有效性以及可控装置对故障后负荷恢复量的提升。

    Abstract:

    After a fault occurs in the distribution network, active distribution network can realize the real-time power supply and demand balance of user side and meet the demand of load recovery after fault. Users' participation in the dispatching of distribution network is also one of the ways to improve the proportion of load recovery. The translational load has strong controllability, which improves the flexibility of active distribution network. The access of new controllable devices, such as soft open point, also makes it possible for power supply quickly. In this paper, a fault recovery model of active distribution network considering translatable load and soft open point is established. The importance coefficient of load is considered. Through the simulation analysis of the modified IEEE 33-node test system, three scenarios of single fault, multi-point fault and short-term fault are built, the effectiveness of the proposed method and the improvement of load recovery after fault by the controllable device are verified.

    参考文献
    [1] 范敏,杨青,郭祥富,等.面向不平衡数据的配电网故障停电预测方法[J].电力系统保护与控制,2023,51(8):96-106. FAN Min,YANG Qing,GUO Xiangfu,et al.Prediction method of power outage in a distribution network for unbalanced data[J].Power System Protection and Control,2023,51(8):96-106.
    [2] 孙守晶,丛伟,邱吉福,等.含智能软开关的智能配电网分布式供电恢复方法[J].电力系统自动化,2022,46(8):79-85. SUN Shoujing,CONG Wei,QIU Jifu,et al.Distributed power restoration method for smart distribution network with soft open point[J].Automation of Electric Power Systems,2022,46(8):79-85.
    [3] 潘俊迪,陈中,倪纯奕,等.基于无模型自适应控制的配电网电压控制方案[J].电力工程技术,2023,42(5):128-137. PAN Jundi,CHEN Zhong,NI Chunyi,et al.Distribution network voltage control scheme based on model-free adaptive control[J].Electric Power Engineering Technology,2023,42(5):128-137.
    [4] 杨权,梁永昌,魏建荣,等.多谐波源下分布式电源并网逆变器的谐波抑制策略[J].电工技术学报,2023,38(11):2908-2920. YANG Quan,LIANG Yongchang,WEI Jianrong,et al.Research on harmonic suppression strategy of grid connected inverter under multi-harmonic sources[J].Transactions of China Electrotechnical Society,2023,38(11):2908-2920.
    [5] 朱卫涛,邹文文,贾钦,等.基于DWT-SOM-HFS的配电台区短期负荷预测研究与应用[J].智慧电力,2023,51(6):78-85. ZHU Weitao,ZOU Wenwen,JIA Qin,et al.Research and application of short term load forecasting in distribution station area based on DWT-SOM-HFS[J].Smart Power,2023,51(6):78-85.
    [6] 杨鹏,郁丹,郭雨涵,等.考虑需求侧响应的新能源消纳优化模型研究[J].供用电,2022,39(11):79-86. YANG Peng,YU Dan,GUO Yuhan,et al.Optimization model of new energy accommodation considering demand response[J].Distribution & Utilization,2022,39(11):79-86.
    [7] 刘建伟,李学斌,刘晓鸥.有源配电网中分布式电源接入与储能配置[J].发电技术,2022,43(3):476-484. LIU Jianwei,LI Xuebin,LIU Xiaoou.Distributed power access and energy storage configuration in active distribution network[J].Power Generation Technology,2022,43(3):476-484.
    [8] 刘家妤,沈冰,周健,等.计及关键负荷功能恢复需求的韧性城市配电网恢复方法[J].电力建设,2022,43(8):66-75. LIU Jiayu,SHEN Bing,ZHOU Jian,et al.Distribution system restoration method considering the function restoration requirements of critical loads[J].Electric Power Construction,2022,43(8):66-75.
    [9] 符杨,蒋一鎏,李振坤,等.计及可平移负荷的微网经济优化调度[J].中国电机工程学报,2014,34(16):2612-2620. FU Yang,JIANG Yiliu,LI Zhenkun,et al.Optimal economic dispatch for microgrid considering shiftable loads[J].Proceedings of the CSEE,2014,34(16):2612-2620.
    [10] 董旭柱,黄邵远,陈柔伊,等.智能配电网自愈控制技术[J].电力系统自动化,2012,36(18):17-21. DONG Xuzhu,HUANG Shaoyuan,CHEN Rouyi,et al.Self-healing control technology for smart distribution system[J].Automation of Electric Power Systems,2012,36(18):17-21.
    [11] 罗欢,周步祥,王小红,等.计及负荷分级与孤岛运行的配电网供电恢复策略[J].电测与仪表,2015,52(13):116-123. LUO Huan,ZHOU Buxiang,WANG Xiaohong,et al.Service restoration of distribution grid with load classification and isolated island operation[J].Electrical Measurement & Instrumentation,2015,52(13):116-123.
    [12] 刘思聪,周步祥,宋洁,等.考虑分布式电源出力随机性的多目标故障恢复[J].电测与仪表,2018,55(2):123-128. LIU Sicong,ZHOU Buxiang,SONG Jie,et al.Multi-objective fault restoration considering the randomness of the output of distributed generator[J].Electrical Measurement & Instrumentation,2018,55(2):123-128.
    [13] 刘刚,陈莎,仝进,等.含分布式电源接入的配电网故障恢复方法[J].电测与仪表,2020,57(18):50-56. LIU Gang,CHEN Sha,TONG Jin,et al.Fault restoration method for power distribution networks considering distributed generations[J].Electrical Measurement & Instrumentation,2020,57(18):50-56.
    [14] 王长瑞,刘军娜,杨琨,等.一种基于Petri网模型的配电网故障恢复算法[J].电测与仪表,2018,55(13):25-30. WANG Changrui,LIU Junna,YANG Kun,et al.A Petri nets based power distribution network restoration algorithm[J].Electrical Measurement & Instrumentation,2018,55(13):25-30.
    [15] 范瑞娟,王倩,罗强.一种配电网故障恢复快速拓扑和潮流计算方法[J].电力系统保护与控制,2014,42(21):23-28. FAN Ruijuan,WANG Qian,LUO Qiang.A fast topology analysis and power flow calculation algorithm for distribution network service restoration[J].Power System Protection and Control,2014,42(21):23-28.
    [16] 杨行.主动配电网中分布式电源与智能软开关优化配置[D].北京:华北电力大学,2020. YANG Hang.Optimal configuration of distributed generation and soft open point in active distribution network[D].Beijing:North China Electric Power University,2020.
    [17] 刘莉,陈学锋,翟登辉.智能配电网故障恢复的现状与展望[J].电力系统保护与控制,2011,39(13):148-154. LIU Li,CHEN Xuefeng,ZHAI Denghui.Status and prospect of service restoration in smart distribution network[J].Power System Protection and Control,2011,39(13):148-154.
    [18] JI H R,WANG C S,LI P,et al.SOP-based islanding partition method of active distribution networks considering the characteristics of DG,energy storage system and load[J].Energy,2018,155:312-325.
    [19] LIU W X,FU M D,YANG M Y,et al.A Bi-level interval robust optimization model for service restoration in flexible distribution networks[J].IEEE Transactions on Power Systems,2021,36(3):1843-1855.
    [20] LI P,JI J,JI H R,et al.Self-healing oriented supply restoration method based on the coordination of multiple SOPs in active distribution networks[J].Energy,2020,195:116968.
    [21] 杨珮鑫,张沛超.分布式电源并网保护研究综述[J].电网技术,2016,40(6):1888-1895. YANG Peixin,ZHANG Peichao.A survey on interconnection protection of distributed resource[J].Power System Technology,2016,40(6):1888-1895.
    [22] 刘家妤,马佳骏,王颖,等.多源协同的智能配电网故障恢复次序优化决策方法[J].电力建设,2020,41(6):100-106. LIU Jiayu,MA Jiajun,WANG Ying,et al.Restoration sequence decision-making for smart distribution system considering multiple sources coordination[J].Electric Power Construction,2020,41(6):100-106.
    [23] 李丝雨,张彼德,彭丽维,等.考虑柔性负荷调节能力的主动配电网动态孤岛划分策略[J].高电压技术,2019,45(6):1835-1842. LI Siyu,ZHANG Bide,PENG Liwei,et al.Dynamic island partitioning strategy for active distribution network considering adjustment ability of flexible load[J].High Voltage Engineering,2019,45(6):1835-1842.
    [24] 李伟,韩瑞迪,孙晨家,等.基于用电偏好的可平移负荷参与需求响应最优激励合同与激励策略[J].中国电机工程学报,2021,41(S1):185-193. LI Wei,HAN Ruidi,SUN Chenjia,et al.Optimal incentive contract and incentive strategy of translatable load participating in demand response based on power consumption preference[J].Proceedings of the CSEE,2021,41(S1):185-193.
    [25] 李振坤,岳美,胡荣,等.计及分布式电源与可平移负荷的变电站优化规划[J].中国电机工程学报,2016,36(18):4883-4893+5112. LI Zhenkun,YUE Mei,HU Rong,et al.Optimal planning of substation considering distributed generation and shiftable loads[J].Proceedings of the CSEE,2016,36(18):4883-4893+5112.
    [26] 胡荣,张宓璐,李振坤,等.计及可平移负荷的分布式冷热电联供系统优化运行[J].电网技术,2018,42(3):715-721. HU Rong,ZHANG Milu,LI Zhenkun,et al.Optimal operation for CCHP system considering shiftable loads[J].Power System Technology,2018,42(3):715-721.
    [27] 宋关羽.面向多运行场景的智能配电软开关运行与规划方法[D].天津:天津大学,2017. SONG Guanyu.Operation and planning method of soft open point for multiple scenarios in active distribution network[D].Tianjin:Tianjin University,2017.
    [28] BARAN M E,WU F F.Network reconfiguration in distribution systems for loss reduction and load balancing[J].IEEE Transactions on Power Delivery,1989,4(2):1401-1407.
    [29] 于文山,黎明,由蕤.含储能的三端SOP对主动配电网的潮流优化研究[J].太阳能学报,2022,43(3):101-110. YU Wenshan,LI Ming,YOU Rui.Power flow optimization study on active distribution network based on three-terminal SOP with energy storage system[J].Acta Energiae Solaris Sinica,2022,43(3):101-110.
    [30] LI P,JI H R,WANG C S,et al.Coordinated control method of voltage and reactive power for active distribution networks based on soft open point[J].IEEE Transactions on Sustainable Energy,2017,8(4):1430-1442.
    [31] LOFBERG J.YALMIP:a toolbox for modeling and optimization in MATLAB[C]//2004 IEEE International Conference on Robotics and Automation,Taipei,China,2005.
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杨德昌,吴 燕,Pandzic Hrvoje,等.考虑可平移负荷和智能软开关的主动配电网故障恢复方法[J].电力科学与技术学报,2024,(1):183-192.
YANG Dechang, WU Yan, PANDZIC Hrvoje, et al. Fault recovery of active distribution network considering translatable load and soft open point[J]. Journal of Electric Power Science and Technology,2024,(1):183-192.

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