考虑铁路牵引负荷接入的电力系统小干扰稳定性分析
CSTR:
作者:
作者单位:

(1.国网四川省电力公司电力科学研究院,四川 成都 610041;2.国网四川省电力公司,四川 成都 610041)

通讯作者:

姜晓锋(1989—),男,博士,工程师,主要从事新型电力系统安全稳定运行分析等研究;E?mail:jiangxf2020@163.com

中图分类号:

TM712

基金项目:

国网四川省电力公司科技项目(52199722000Z)


Small signal stability analysis of power system considering railway traction load access
Author:
Affiliation:

(1.Electric Power Research Institute, State Grid Sichuan Electric Power Company,Chengdu 610041,China;2.State Grid Sichuan Electric Power Company, Chengdu 610041,China)

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    摘要:

    随着电气化铁路的飞速发展,电气化铁路牵引负荷已成为中国电力系统中最大的单体负荷,但其负荷特性对电力系统小干扰稳定性的影响尚不明晰。为此,首先建立电气化铁路牵引负荷等效数学模型,并基于此构建考虑牵引负荷接入的电力系统小干扰模型;其次利用特征值分析方法,分析牵引负荷机车速度、机车数量以及牵引负荷接入位置和占比对电力系统小干扰稳定性的影响;最后通过特征值根轨迹寻找同步发电机励磁参数的调节范围,并分析牵引负荷接入前、后和不同牵引负荷参数对电力系统励磁参数调节范围的影响。研究结果表明:牵引负荷接入后电力系统小干扰稳定性降低,系统励磁参数调节范围收缩,系统稳定裕度降低。

    Abstract:

    With the rapid development of electrified railways, the traction load of electrified railways has become the largest single load in China's power system, but the impact of its load characteristics on the small-signal stability of the power system is still unclear. Therefore, an equivalent mathematical model of the traction load of electrified railways is established, and based on this, a small-signal model of the power system considering the access of traction loads is constructed. Secondly, using eigenvalue analysis methods, the impacts of locomotive speed, locomotive quantity, and the access location and proportion of traction loads on the small-signal stability of the power system are analyzed. Finally, the adjustment range of excitation parameters of synchronous generators is determined through eigenvalue root locus, and the impacts of traction loads before and after access and different traction load parameters on the adjustment range of excitation parameters of the power system are analyzed. The research results indicate that after the access of traction loads, the small-signal stability of the power system decreases, the adjustment range of system excitation parameters shrinks, and the system stability margin reduces.

    参考文献
    [1] 毛玲,邓思文,赵登辉,等.新能源汽车监测平台在行驶和充电场景中的应用与思考[J].电工技术学报,2022,37(1):48-57. MAO Ling,DENG Siwen,ZHAO Denghui,et al.Application and thinking of big data technology of new energy vehicle monitoring platform in driving and charging scenarios[J].Transactions of China Electrotechnical Society,2022,37(1):48-57.
    [2] 刘自发,刘炎.基于虚拟直流机的直流微电网电压稳定控制策略[J].电力系统保护与控制,2023,51(4):62-71. LIU Zifa,LIU Yan.Voltage stability control strategy of a DC microgrid based on a virtual DC machine[J].Power System Protection and Control,2023,51(4):62-71.
    [3] OMATA T,UEMURA K.Aspects of voltage responses of induction motor loads[J].IEEE Transactions on Power Systems:A Publication of the Power Engineering Society,1998,13(4):1337-1344.
    [4] 赵兵,汤涌.感应电动机负荷的动态特性分析[J].中国电机工程学报,2009,29(7):71-77. ZHAO Bing,TANG Yong.Dynamic characteristics analysis of induction motor loads[J].Proceedings of the CSEE,2009,29(7):71-77.
    [5] 朱晓荣,冯天娇.基于小信号稳定性的直流微电网多控制器参数全局优化方法[J].电力建设,2023,44(6):112-125. ZHU Xiaorong,FENG Tianjiao.Global optimization method for multi-controller parameters of DC microgrid based on small-signal stability[J].Electric Power Construction,2023,44(6):112-125.
    [6] 李桂红,韩肖清.感应电动机负荷参数及运行状态对电力系统小干扰稳定性的影响[J].电力学报,2010,25(2):131-134. LI Guihong,HAN Xiaoqing.Effect of induction-motor parameters and operating status on small signal stability in power system[J].Journal of Electric Power,2010,25(2):131-134.
    [7] 孙华东,周孝信,李若梅.计及感应电动机负荷的静态电压稳定性分析[J].中国电机工程学报,2005,25(24):1-7. SUN Huadong,ZHOU Xiaoxin,LI Ruomei.Static voltage stability analysis considering induction motor loads[J].Proceedings of the CSEE,2005,25(24):1-7.
    [8] 李宇骏,陆艺源,牟同鹏,等.新能源发电经换流器并网系统的稳定性分析与控制综述[J].电网与清洁能源,2023,39(12):79-94. LI Yujun,LU Yiyuan,MOU Tongpeng,et al .A review of stability analysis and control of renewable energy integration systems via converters[J].Power System and Clean Energy,2023,39(12):79-94.
    [9] 牛晨,王果,姚俊.基于有源滤波器自适应阻抗重塑的高速铁路谐波谐振抑制[J].智慧电力,2022,50(5):85-93. NIU Chen,WANG Guo,YAO Jun.Harmonic resonance suppression of high-speed railway based on active filter adaptive impedance reshaping[J].Smart Power,2022,50(5):85-93.
    [10] 周盛,余丹萍,江全元.CRH3动车组牵引传动系统的负荷建模[J].机电工程,2011,28(1):118-122. ZHOU sheng,YU Danping,JIANG Quanyuan.Load modeling of CRH3 electric multiple unit traction drive system[J].Journal of Mechanical & Electrical Engineering,2011,28(1):118-122.
    [11] 周盛.高速铁路牵引负荷建模及分析[D].杭州:浙江大学,2011. ZHOU Sheng.Load modeling and analysis of High-speed railway traction load[D].Hangzhou:Zhejiang University,2011.
    [12] 吴双.高速铁路牵引供电系统负荷建模[D].成都:西南交通大学,2013. WU Shuang.High-speed railway traction power supply system load modeling[D].Chengdu:Southwest Jiaotong University,2013.
    [13] 鞠平,马大强.电力系统负荷建模[M].北京:中国电力出版社,2008:73-174. JU Ping,MA Daqiang.Power system load modeling[M].Beijing:China Electric Power Press,2008:73-174.
    [14] 陈亦平,曹玉磊,赵利刚,等.基于指数变换的电力系统不稳定特征值计算方法[J].电力系统自动化,2023,47(3):161-168. CHEN Yiping,CAO Yulei,ZHAO Ligang,et al.Calculation method for unstable eigenvalue of power system based on exponential transformation[J].Automation of Electric Power Systems,2023,47(3):161-168.
    [15] 刘天琪.现代电力系统分析理论与方法[M].北京:中国电力出版社,2016:186-204. LIU Tianqi.Theory and methods of modern power system analysis[M].Beijing:China Electric Power Press,2016:186-204.
    [16] WANG X,SONG Y,Irving M.Modern power systems analysis[M].Boston,MA,USA:Springer,2008:405-487.
    [17] 康思伟,董文凯,郭诗然,等.基于虚拟同步机控制的新能源发电并网系统小干扰稳定临界短路比[J].电力建设,2022,43(3):131-140. KANG Siwei,DONG Wenkai,GUO Shiran,et al.Critical short-circuit ratio of small-signal stability for a grid-connected renewable power generation system based on virtual synchronous generator control[J].Electric Power Construction,2022,43 (3):131-140.
    [18] 王一珺,杜文娟,王海风.大规模风电汇集系统小干扰稳定性研究综述[J].电网技术,2022,46(5):1934-1946. WANG Yijun,DU Wenjuan,WANG Haifeng.Review on small signal stability analysis of large-scale wind power collection system[J].Power System Technology,2022,46(5):1934-1946.
    [19] SAUER P W,PAI M.Power system dynamics and stability[M].Urbana,IL,USA:John Wiley & Sons,1997:183-231.
    [20] 潘学萍,许一,赵天骐,等.考虑系统稳定边界的同步调相机励磁与升压变参数联合优化[J].电力系统保护与控制,2024,52(8):45-54. PAN Xueping,XU Yi,ZHAO Tianqi,et al.Joint optimization of parameters of synchronous condenser excitation and step-up transformer considering the stability boundary of the power system[J].Power System Protection and Control,2024,52(08):45-54.
    [21] 周年光,王钦,姚伟,等.发电机励磁辅环控制参数对电力系统阻尼的影响分析[J].电力系统保护与控制,2018,46(20):12-22. ZHOU Nianguang,WANG Qin,YAO Wei,et al.Influence analysis of generator excitation auxiliary control parameters on power system damping[J].Power System Protection and Control,2018,46(20):12-22.
    [22] 吕品,戈宝军,姜超,等.隐极发电机阻尼绕组和槽楔对励磁转矩的影响[J].电机与控制学报,2020,24(1):69-78. LU Pin,GE Baojun,JIANG Chao,et al.Influence of damping winding and slot wedge on excitation torque of hidden pole generator[J].Electric Machines and Control,2020,24(1):69-78.
    [23] 谷志锋,朱长青,赵文杰,等.励磁系统参数对发电机组力矩特性的影响[J].中国机械工程,2013,24(18):2448-2451. GU Zhifeng,ZHU Changqing,ZHAO Wenjie,et al.Influence of excitation system parameters on moment characteristics of generator set[J].China Mechanical Engineering,2013,24(18):2448-2451.
    [24] 霍承祥,于大海,马晓光,等.励磁系统动态增益对凸极发电机动态阻尼的影响[J].电力系统自动化,2022,46(7):116-121. HUO Chengxiang,YU Dahai,MA Xiaoguang,et al.Impact of dynamic gain of excitation system on dynamic damping of salient-pole generator[J].Automation of Electric Power Systems,2022,46(7):116-121.
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引用本文

姜晓锋,韩晓言,潘鹏宇,等.考虑铁路牵引负荷接入的电力系统小干扰稳定性分析[J].电力科学与技术学报,2024,39(4):61-69.
JIANG Xiaofeng, HAN Xiaoyan, PAN Pengyu, et al. Small signal stability analysis of power system considering railway traction load access[J]. Journal of Electric Power Science and Technology,2024,39(4):61-69.

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