祁韶特高压直流投运后湖南电网电压稳定问题
CSTR:
作者:
通讯作者:

杨丹(1982),女,硕士,高级工程师,主要从事电力系统运行与控制的研究;Email:37103773@qq.com

中图分类号:

TM732

基金项目:

国网湖南省电力有限公司科技项目(5216A5180018)


Study on voltage stability of Hunan power grid integrated with QiShao UHVDC transmission line
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    摘要:

    湖南电网负荷、电源分布不均,负荷中心的电压稳定问题一直是威胁电网安全稳定运行的重要隐患。2017年±800 kV祁韶特高压直流投运后,电压稳定问题也更为突出。分析暂态电压与功角稳定的关系,并从受端电网有效短路比、静态电压稳定、负荷特性等方面分析特高压直流投运后的电压稳定问题。结果表明,引起电压失稳的“敏感点”、电压稳定的“薄弱点”和特高压直流的落点均位于负荷中心湘东电网。通过加强湖南省内部电网结构可以提高有效短路比,但同时导致大扰动后电压跌落更为严重。加强湖南电网与华中主网的连接,可以有效地提高电压稳定水平。在网架结构短时间内无法加强的前提下,减小鹤岭变短路容量或优化直流逆变站参数均可以提高暂态电压稳定水平。

    Abstract:

    The voltage stability problem of load center threatens the safe operation of Hunan power grid due to the unbalanced distribution of loads and sources, especially after integrating with ±800 kV QiShao UHVDC transmission line in 2007. In this paper, the relationship between the transient voltage and angle stability is analyzed. In addition, the voltage stability is also analyzed for power grid integrated with UHVDC in the aspects of the effective short circuit ratio (ESCR), static voltage stability and load characteristics. It is shown that the sensitive spot, weak spot of voltage stability and the UHVDC links location are all located in Xiangdong power grid. The ESCR can be increased by shortening the electrical distance of the internal structure in Hunan power grid. However, the voltage sag would be more serious when suffering a large disturbance. The voltage stability level of Hunan grid can be improved effectively by reinforcing the connection between Hunan and Central China power grid. Since the grid structure cannot be strengthened within a short period, the transient voltage stability level of Hunan power grid can by improved by decreasing the short circuit capacity of Heling substation or optimizing the parameters of UHVDC inverter station.

    参考文献
    [1] 国网湖南省电力有限公司.2018年湖南电网运行方式[R].长沙:国网湖南省电力有限公司,2018.
    [2] 党杰,奚江惠,李勇,等.湘西南水电送出能力对策研究[J].电力科学与技术学报.2017,32(2):173178.DANG Jie,XI Jianghui,LI Yong,et al.Research on counter measures of hydropower transmission capacity in Southwest Hunan[J].Journal of Electric Power Science and Technology.2017,32(2):173178.
    [3] 廖国栋,谢欣涛,侯益灵,等.湖南电网暂态电压稳定性问题[J].电网技术.2012,36(10):196202.LIAO Guodong,XIE Xintao,HUO Yiling,et al.Study on transient voltage stability of Hunan Power Grid[J].Power System Technology,2012,36(10):196202.
    [4] 邱威,贺静波,于钊,等.特高压直流馈入湖南电网的暂态电压稳定分析[J].电力自动化设备,2019,39(10):168173.QIU Wei,HE Jingbo,YU Zhao,et al.Transient voltage stability analysis of Hunan Power Grid with infeed UHVDC[J].Electric Power Automation Equipment,2019,39(10):168173.
    [5] 周双喜.电力系统电压稳定性及其控制[M].北京:中国电力出版社,2003.
    [6] Taylor C W.电力系统电压稳定[M].王伟胜译.北京:中国电力出版社,2002.
    [7] 王康,刘崇茹,韩民晓,等.兼顾稳定性与经济性的交直流系统直流落点选择方法[J].电力系统自动化,2011,35(24):7378.WANG Kang,LIU Chongru,HAN Minxiao,et al.A method of selecting DC links termination at AC locations considering stability and economy at once[J].Automation of Electric Power System,2011,35(24):7378.
    [8] KUNDER P.电力系统稳定与控制[M].周孝信译.北京:中国电力出版社,2001.
    [9] Q/GDW 1404-2015.国家电网安全稳定计算技术规范[S].
    [10] 张文朝,张博,潘捷,等.基于感应电动机网荷互馈特性的暂态电压失稳机理探析[J].电力系统自动化,2017,41(7):814.ZHANG Wenchao,ZHANG Bo,PAN Jie,et al.Mechanism analysis for transient voltage instability based on crossfeed characteristics between power network and load of induction motor[J].Automation of Electric Power System,2017,41(7):814.
    [11] 王雅婷,张一驰,周勤勇,等.新一代大容量调相机在电网中的应用研究[J].电网技术,2017,41(1):2228.WANG Yating,ZHANG Yichi,ZHOU Qinyong,et al.Study on application of new generation large capacity synchronous condenser in power grid[J].Power System Technology,2017,41(1):2228.
    [12] 赵畹君.高压直流输电工程技术[M].北京:中国电力出版社,2011.
    [13] 杨欢欢,蔡泽祥,朱林,等.直流控制对直流系统无功动态特性及其对受端电网暂态电压稳定的影响[J].电力自动化设备,2017,37(10):8692.YANG Huanhuan,CAI Zexiang,ZHU Lin,et al.Dynamic characteristic of HVDC reactive power and its influence on transient voltage stability of receivingend power grid[J].Electric Power Automation Equipment,2017,37(10):8692.
    [14] 黄弘扬,徐政,许烽.多馈入直流输电系统短路比指标的有效性分析[J].电力自动化设备,2012,32(11):4650.HUANG Hongyang,XU Zheng,XU Feng.Effectiveness of short circuit ratio index for multiinfeed HVDC system[J].Electric Power Automation Equipment,2012,32(11):4650.
    [15] 郝志杰,江道灼,蔡永华.新型固态故障限流器对电力系统暂态稳定性的影响[J].电力系统自动化,2004,28(8):5056.HAO Zhijie,JIANG Daozhuo,CAI Yonghua.Effect of novel fault current limiters on power system transient stability[J].Automation of Electric Power System,2004,28(8):5056.
    [16] 郑超,周静敏,李惠玲,等.换相失败预测控制对电压稳定性影响及优化措施[J].电力系统自动化,2016,40(12):179183.ZHENG Chao,ZHOU Jingmin,LI Huiling,et al.Impact of Commutation failure prediction control on voltage stability and its optimization measures[J].Automation of Electric Power System,2016,40(12):179183.
    [17] 雷前,鲍伟,瞿海妮,等.多馈入直流系统无功补偿选址研究[J].中国电力,2019,52(3):5660.LEI Qian,BAO Wei,QU Haini,et al.Site Selection for reactive power compensation of multiinfeed HVDC systems[J].Electric Power,2019,52(3):5660.
    [18] 陈宝平,林涛,黄华,等.一种新的静态电压稳定性评估指标[J].电力科学与技术学报,2018,33(3):3743.CHEN Baoping,LIN Tao,HUANG Hua,et al.A new evaluation index for static voltage stability[J].Journal of Electric Power Science and Technology,2018,33(3):3743.
    [19] 程艳,张健,管荑,等.HVDC换相失败时受端电网的电压与频率联合控制策略[J].高压电器,2020,56(4):241245.CHENG Yan,ZHANG Jian,GUAN Ti,et al.Coordinated control strategy of voltage and frequency support at receiving end of HVDC system under commutation failure[J].High Voltage Apparatus,2020,56(4):241245.
    [20] 张国辉,李其莹,张海静,等.基于电压灵敏度的交直流系统源网协调电压优化控制[J].智慧电力,2019,47(4):6672+80.ZHANG Guohui,LI Qiying,ZHANG Haijing,et al.Sensitivitybased optimal sourcegrid coordinated voltage control in AC/DC hybrid system[J].Smart Power,2019,47(4):6672+80.
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杨丹,党杰,邱威,等.祁韶特高压直流投运后湖南电网电压稳定问题[J].电力科学与技术学报,2020,35(6):163-170.
YANG Dan, DANG Jie, QIU Wei, et al. Study on voltage stability of Hunan power grid integrated with QiShao UHVDC transmission line[J]. Journal of Electric Power Science and Technology,2020,35(6):163-170.

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  • 在线发布日期: 2021-04-16
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