基于本地测量的高比例新能源电力系统不平衡功率估算与附加功率控制策略
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TM732

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国网山西省电力公司电力科学研究院科技项目(SGTYHT/19-JS-215);国家自然科学基金青年科学基金(51807150)


Local measurement based unbalanced active power estimation and supplementary power modulation for power systems with high proportions of renewable energy
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    摘要:

    随着新能源渗透率不断地提高,电力系统惯量水平逐步下降,导致频率稳定问题愈加突出。提出一种提升新能源电力系统频率稳定性的控制策略,通过检测系统惯量中心频率变化率与系统等值惯量水平估算频率事件发生时系统的不平衡功率,并调整换流器功率参考值,为系统提供惯量支撑。所提的不平衡功率估算方法包括系统惯量中心频率变化率检测和系统等值惯量计算2部分:考虑到系统惯量中心频率曲线经过本地测量频率曲线二阶导数零点,系统惯量中心频率曲线可由二阶导数零点连接得到的分段线性曲线近似;系统等值惯量计及了系统中非同步元件的有效惯量,可通过统计系统同步惯量、发电机功率变化与不平衡功率总额获得。提出了按照新能源装机容量占比补偿不平衡功率的附加控制方法,在频率事件发生时快速调整新能源接入换流站的功率参考值,以抑制系统频率波动。PSCAD/EMTDC仿真验证了所提附加控制策略的有效性。

    Abstract:

    With the increasingly high penetration of renewable energy into the power system, the inertia level of the power system is gradually decreasing, and the frequency stability issue has become more prominent than ever before. This paper proposes a supplementary control strategy to improve the frequency stability of the renewable energy integrated power system, which estimates the unbalanced power of the system by detecting the rate of change of frequency in the center of system inertia (COI) as well as the equivalent inertia level of the system, and adjusts the referenced power of the converter to provide inertia support for ac grids. The proposed unbalanced power estimating method includes two parts:rate of change of COI frequency detection and system equivalent inertia calculation. Since the COI frequency curve passes through the zero points of the second derivative of the local measurement frequency curve, the COI frequency curve can be approximated by the piecewise linear curve connected by the second derivative zero points. The system equivalent inertia considering the effective inertia of the non-synchronized components in the system can be obtained by counting the synchronous inertia of the system, change of active power of generators, and the total unbalanced power. Subsequently, an additional control method is proposed to compensate for unbalanced power based on the proportion of the capacities of renewable energies. The referenced power value of the renewable energy station will be quickly adjusted to suppress system frequency fluctuations when a frequency event occurs. PSCAD/EMTDC simulation verifies the effectiveness of the proposed additional control strategy.

    参考文献
    [1] 肖安南,张蔚翔,张超,等.含光伏发电与储能的配电网基于源—网—荷互动模式下电压安全最优控制策略[J].电力科学与技术学报,2020,35(2):120-127.XIAO Annan,ZHANG Weixiang,ZHANG Chao,et al.Voltage security optimal control strategy of distribution network with PVs and ESs under “source-grid-load” interaction[J].Journal of Electric Power Science and Technology,2020,35(2):120-127.
    [2] 和萍,祁盼,申润杰,等.计及风电和燃料电池的综合能源系统阻尼特性分析[J].电力科学与技术学报,2020,35(1):14-23.HE Ping,QI Pan,SHEN Runjie,et al.Analysis of damping characteristics of an integrated energy system with hybrid wind-fuel cells integrated[J].Journal of Electric Power Science and Technology,2020,35(1):14-23.
    [3] 李佳朋,李宇骏,袁枭添,等.远海风能集中接入的多端直流系统直流故障分析与故障检测方法[J].电力自动化设备,2020,40(12):119-128.LI Jiapeng,LI Yujun,YUAN Xiaotian,et al.DC fault analysis and detection for offshore wind farms integration via MTDC[J].Electric Power Automation Equipment,2020,40(12):119-128.
    [4] 黄智达,石兆麒,梅勇.多端柔性直流输电系统动态协调优化控制策略[J].智慧电力,2020,48(2):45-52.HUANG Zhida,SHI Zhaoqi,MEI Yong.Dynamic coordination optimization control strategy for MMC-MTDC systems[J].Smart Power,2020,48(2):45-52.
    [5] 秦晓辉,苏丽宁,迟永宁,等.大电网中虚拟同步发电机惯量支撑与一次调频功能定位辨析[J].电力系统自动化,2018,42(9):36-43.QIN Xiaohui,SU Lining,CHI Yongning,et al.Function orientation discrimination of inertia support and primary frequency regulation of virtual synchronous generator in large power grid[J].Automation of Electric Power System,2018,42(9):36-43.
    [6] 张明锐,王俊凯,王佳莹,等.微网混合式孤岛检测及运行模式切换研究[J].电力系统保护与控制,2020,48(2):1-8.ZHANG Mingrui,WANG Junkai,WANG Jiaying,et al.Research on hybrid islanding detection and operation mode switching of microgrid[J].Power System Protection and Control,2020,48(2):1-8.
    [7] 张武其,文云峰,迟方德,等.电力系统惯量评估研究框架与展望[J].中国电机工程学报,2021,41(20):6842-6855.ZHANG Wuqi,WEN Yunfeng,CHI Fangde.Researchframework and prospect on power system inertia estimation[J].Proceedings of the CSEE,2021,41(20):6842-6855.
    [8] 胡洋,田兵,雷金勇.面向能源互联的分布式发电系统聚合服务运营模式分析[J].中国电力,2020,53(8):1-8.HU Yang,TIAN Bing,Lei Jinyong Analysis of energy interconnection oriented distributed generation system aggregation service operation mode[J].Electric Power,2020,53(8):1-8.
    [9] LI Y J,LIU S N,ZHU J B,et al.Novel MTDC droop scheme with decoupled power control for enhancing frequency stabilities of weak AC systems[J].IET Renewable Power Generation,2020,14(11):2007-2016.
    [10] 高晖胜,訾鹏,黄林彬,等.能量约束下电力电子并网装备的最优频率控制[J].电力系统自动化,2020,44(17):9-22.GAO Huisheng,ZI Peng,HUANG Linbin,et al.Optimal frequency control of grid-connected power electronic devices with energy constraints[J].Automation of Electric Power System,2020,44(17):9-22.
    [11] 李明贤,熊连松,唐震,等.考虑储能变流器容量限制的电网低频振荡抑制策略[J].电网技术,2021,45(3):908-917.LI Mingxian,XIONG Liansong,TANG Zhen,et al.Suppression strategy for low frequency oscillations of power grid considering ess converter capacity limit[J].Power System Technology,2021,45(3):908-917.
    [12] 吕志鹏,盛万兴,刘海涛.虚拟同步机技术在电力系统中的应用与挑战[J].中国电机工程学报,2017,37(2):349-359.LYU Zhipeng,SHENG Wanxing,LIU Haitao,et al.Application and challenge of virtual synchronous machine technology in power system[J].Proceedings of the CSEE,2017,37(2):349-359.
    [13] 颜湘武,王德胜,杨琳琳,等.直驱风机惯量支撑与一次调频协调控制策略[J].电工技术学报,2021,36(15):3282-3292.YAN Xiangwu,WANG Desheng,YANG Linlin,et al.Coordinated control strategy of inertia support and primary frequency regulation of PMSG[J].Transactions of China Electrotechnical Society,2021,36(15):3282-3292.
    [14] 党建,魏晋源,贾嵘等.基于Hilbert和CA-VMD的风电机组叶轮不平衡故障电信号特征提取方法[J].电网与清洁能源,2021,37(1):112-118+126.DANG Jian,WEI Jinyuan,JIA Rong,et al.Feature extraction method for unbalanced fault electrical signal of wind turbine impeller based on hilbert and CA-VMD[J].Power System and Clean Energy,2021,37(1):112-118+126.
    [15] 石荣亮,张烈平,王文成,等.基于改进频率微分运算的虚拟惯量控制策略[J].电力系统自动化,2020,44(20):94-105.SHI Rongliang,ZHANG Lieping,WANG Wencheng.Virtual inertia control strategy based on improved frequency differential operation[J].Automation of Electric Power System,2020,44(20):94-105.
    [16] 王淋,巨云涛,吴文传,等.面向频率稳定提升的虚拟同步化微电网惯量阻尼参数优化设计[J].中国电机工程学报,2021,41(13):4479-4489.WANG Lin,JU Yuntao,WU Wenchuan,et al.Optimal design of inertia and damping parameters of virtual synchronous microgrid for improving frequency stability[J].Proceedings of the CSEE,2021,41(13):4479-4489.
    [17] MILANO F.Rotor speed-free estimation of the frequency of the center of inertia[J].IEEE Transactions on Power Systems,2018,33(1):1153-1155.
    [18] XUE Y S,VAN CUSTEM T,RIBBENS-PAVELLA M.Extended equal area criterion justifications,generalizations,applications[J].IEEE Transactions on Power Systems,1989,4(1):44-52.
    [19] CAI D Y,REGULSKI P,OSBORNE M,Et al.Wide area inter-area oscillation monitoring using fast nonlinear estimation algorithm[J].IEEE Transactions on Smart Grid,2013,4(3):1721-1731.
    [20] 孙华东,王宝财,李文锋,等.高比例电力电子电力系统频率响应的惯量体系研究[J].中国电机工程学报,2020,40(16):5179-5192.SUN Huadong,WANG Baocai,LI Wenfeng,et al.Research on inertia system of frequency response for power system with high penetration electronics[J].Proceedings of the CSEE,2020,40(16):5179-5192.
    [21] National grid house.firm frequency response review,outline change proposals document(OCP-18)[EB/OL].https://www.nationalgrid.com/sites/default/files/documents/FFR%20OCP%2018%20-%20EXT%20-14.06.2018..pdf?msclkid=032c514ab8db11ec878e56431161bd55,2018-06-14.
    [22] 刘丽娟,伍小刚,朱崇铭,等.振荡型有界波模拟器特性阻抗的计算及其影响因素研究[J].高压电器,2020,56(2):128-134+141.LIU Lijuan,WU Xiaogang,ZHU Chongming,et al.Calculation of the characteristic impedance and analysis of influencing factors on impedance for oscillatory bounded-wave simulator[J].High Voltage Apparatus,2020,56(2):128-134+141.
    [23] 齐军,孙绥,李佳朋,等.风储交流微电网自动功率平衡控制策略[J].智慧电力,2020,48(1):9-14+34.QI Jun,SUN Sui,LI Jiapeng,et al.Autonomous active power balance control strategy for islanded AC microgrids with wind generation and energy storage system[J].Smart Power,2020,48(1):9-14+34.
    [24] ATHAY T M,PODMORE R,VIRMANI S.A practical method for the direct analysis of transient stability[J].IEEE Transactions on Power Apparatus and Systems,1979,98(2):573-584.
    [25] BYERLY R T,SHERMAN D E,BENNON R J.Phase II:frequency domain analysis of low-frequency oscillations in large electric power systems.Volume 1.Basic concepts,mathematical models,and computing methods.Final report[R].United States:N.p.,1982.
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张军六,李佳朋,唐震,等.基于本地测量的高比例新能源电力系统不平衡功率估算与附加功率控制策略[J].电力科学与技术学报,2022,37(3):50-60.
ZHANG Junliu, LI Jiapeng, TANG Zhen, et al. Local measurement based unbalanced active power estimation and supplementary power modulation for power systems with high proportions of renewable energy[J]. Journal of Electric Power Science and Technology,2022,37(3):50-60.

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  • 在线发布日期: 2022-07-24
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