大规模可再生能源电网多源实时互补有功控制的评述
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  • 英文篇名:Review of Real-time Complementary Active Power Control of Multi-type Power Resources for Large Scale Renewable Energy Grid
  • 作者:王昊昊 ; 周天 ; 赵宇 ; 汪马翔 ; 张昊天 ; 李吉晨
  • 英文作者:WANG Haohao;ZHOU Tian;ZHAO Yu;WANG Maxiang;ZHANG Haotian;LI Jichen;NARI Technology Co.Ltd.;NARI Group Corporation(State Grid Electric Power Research Institute);
  • 关键词:互补优化 ; 有功控制 ; 调度计划 ; 市场交易 ; 最大输电能力
  • 英文关键词:complementary optimization;;real-time control;;plan elasticity;;market transaction;;total transfer capability
  • 中文刊名:XDDL
  • 英文刊名:Modern Electric Power
  • 机构:国电南瑞科技股份有限公司;南瑞集团有限公司(国网电力科学研究院);
  • 出版日期:2019-04-17 08:33
  • 出版单位:现代电力
  • 年:2019
  • 期:v.36;No.161
  • 基金:国家重点研发计划课题(2017YFB0902204);; 国家电网公司科技项目(SGSCDK00XTJS1700047);; 云南电网公司科技项目([2016]000301DD00080);; 江苏省六大人才高峰项目(XNY-050)
  • 语种:中文;
  • 页:XDDL201904001
  • 页数:10
  • CN:04
  • ISSN:11-3818/TM
  • 分类号:5-14
摘要
阐述大规模可再生能源接入、市场交易等因素对特高压互联电网中多类电源实时互补有功控制的要求;对多类电源实时互补有功控制优化方法涉及的各主要环节进行分析,提出释放发电、输电计划可调空间,并在线计算输电断面最大输电能力(TTC)以充分利用电网的输电能力。以分调-省调两级调度为例,提出多类电源实时互补有功控制技术框架,强调兼顾可再生能源最大化消纳与其它电源调整的经济代价,强调运行约束、安全约束、市场交易约束和调度公平性约束的统筹考虑,兼顾经济性、安全性和"三公"调度的需求。
        This paper states real-time multi-resource complementation control requirement for power systems integrated with large-scale renewable energy under market transactions.The main aspects involved in the optimization method of real-time multi-resource complementary active power control are analyzed.This paper proposes to release the power generation and transmission planning elasticity,and calculate the transmission section limitation online to make full use of the power transmission capacity of the power grid.Besides,a real-time multi-resource complementation optimization control framework is given in this paper with taking provincial and regional two-level dispatching as an example.This framework emphasizes maximizing the consumption of renewable energy and minimizing the cost from other power resources adjustments,and addresses the requirements of economic,security and "justice,openness and fairness" dispatching.
引文
[1]吴世勇,周永,王瑞,等.雅砻江流域建设风光水互补千万千瓦级清洁能源示范基地的探讨[J].四川水力发电,2016,35(3):105-108.WU Shiyong,ZHOU Yong,WANG Rui,et al.Discussion on establishing a clean energy demonstration base with scenery and water complementary 10 million-Watt level in the Yalong river basin[J].Sichuan Water power,2016,35(3):105-108.
    [2]张伯明,吴文传,郑太一,等.消纳大规模风电的多时间尺度协调的有功调度系统设计[J].电力系统自动化,2011,35(1):1-6.ZHANG Boming,WU Wenchuan,ZHENG Taiyi,et al.Design of a multi-time scale coordinated active power dispatching system for accommodating large scale wind power penetration[J].Automation of E-lectric Power Systems,2011,35(1):1-6.
    [3]高宗和,滕贤亮,张小白.适应大规模风电接入的互联电网有功调度与控制方案[J].电力系统自动化,2010,34(17):37-41.GAO Zonghe,TENG Xianliang,ZHANG Xiaobai.Solution of active power dispatch and control for interconnected power grids with large-scale wind power integration[J].Automation of Electric Power Systems,2010,34(17):37-41.
    [4]YAN Yong,WEN Fushuan,YANG Shouhui,et al.Generation scheduling with fluctuating wind power[J].Automation of Electric Power Systems,2010,34(6):79-88.
    [5]王靖然,王玉林,杨志刚,等.考虑嵌套断面约束的大规模集群风电有功控制策略[J].电力系统自动化,2015,39(13):16-21.WANG Jingran,WANG Yulin,YANG Zhigang,et al.An active power control strategy for large-scale cluster of wind power considering constraints on nested transmission sections[J].Automation of Electric Power Systems,2015,39(13):16-21.
    [6]ROHIG K,SCHLOGL F,JURSA R.Advanced control strategies to integrate German offshore wind potential into electrical energy supply[C]//Proceedings of 5th International Workshop on Large Scale Integration of Wind Power and Transmission Systems for Offshore Wind Farms,Glasgow,UK:Philosophical Transactions,2005:559-560.
    [7]薛峰,常康,汪宁渤.大规模间歇式能源发电并网集群协调控制框架[J].电力系统自动化,2011,35(22):45-53.XUE Feng,CHANG Kang,WANG Ningbo.Coordinated control frame of large-scale intermittent power plant cluster[J].Automation of Electric Power Systems,2011,35(22):45-53.
    [8]李雪明,行舟,陈振寰,等.大型集群风电有功智能控制系统设计[J].电力系统自动化,2010,34(17):59-63.LI Xueming,XING Zhou,CHEN Zhenhuan,et al.Design of large clusters of wind power active intelligent control system[J].Automation of Electric Power Systems,2010,34(17):59-63.
    [9]徐泰山,汪宁渤,马明,等.基于预测调节性能和安全约束的新能源并网功率控制方法:201310174543.0[P].2013-10-17.
    [10]吴杰康,郭壮志,丁国强.采用梯级水电站动态弃水策略的多目标短期优化调度[J].中国电机工程学报,2011,31(4):15-23.WU Jiekang,GUO Zhuangzhi,DING Guoqiang.Short term multi-objective optimization scheduling with dynamic water spillage strategy for cascade hydroelectric plants[J].Proceedings of the CSEE,2011,31(4):15-23.
    [11]王金文,石琦,伍永刚,等.水电系统长期发电优化调度模型及其求解[J].电力系统自动化,2002,26(24):22-25.WANG Jinwen,SHI Qi,WU Yonggang,et al.Longterm optimal generation scheduling for the energy maximization of hydropower systems[J].Automation of Electric Power Systems,2002,26(24):22-25.
    [12]BARROS M,TSAI F,YANG S,et al.Optimization of large-scale hydropower system operations[J].Journal of Water Resources Planning and Management,2003,129(3):178-188.
    [13]ZAMBON R,BARROS M,LOPES J,et al.Optimization of large-scale hydrothermal system operation[J].Journal of Water Resources Planning and Management,2011,138(2):135-143.
    [14]行舟,陈永华,陈振寰,等.大型集群风电有功智能控制系统控制策略:(一)风电场之间的协调控制[J].电力系统自动化,2011,35(20):20-23.XING Zhou,CHEN Yonghua,CHEN Zhenhuan,et al.A Control strategy of active power intelligent control system for large cluster of wind farms part one coordination control for wind farms[J].Automation of Electric Power Systems,2011,35(20):20-23.
    [15]陈振寰,陈永华,行舟,等.大型集群风电有功智能控制系统控制策略(二)风火电“打捆”外送协调控制[J].电力系统自动化,2011,35(21):12-15.CHEN Zhenhuan,CHEN Yonghua,XING Zhou,et al.A control strategy of active power intelligent control system for large cluster of wind farms part two coordination control for shared transmission of wind power and thermal power[J].Automation of Electric Power Systems,2011,35(21):12-15.
    [16]杨秀媛,黄丹,申洪.多能源互补独立电力系统的控制策略仿真研究[J].中国电机工程学报,2013,33(4):156-162.YANG Xiuyuan,HUANG Dan,SHEN Hong,et al.Research on control strategy of multi-energy complementary isolated power system[J].Proceedings of the CSEE,2013,33(4):156-162.
    [17]任洛卿,白泽洋,于昌海,等.风光储联合发电系统有功控制策略研究及工程应用[J].电力系统自动化,2014,38(7):105-111.REN Luoqing,BAI Zeyang,YU Changhai,et al.Research on active control strategy and engineering application of the combined power generation system[J].Power system automation.2014,38(7):105-111.
    [18]王彩霞,乔颖,鲁宗相,等.低碳经济下风火互济系统日前发电计划模式分析[J].电力系统自动化,2011,35(22):111-117.WANG Caixia,QIAO Ying,LU Zongxiang,et al.Day-ahead dispatch mode for wind-thermal power system in low-carbon economy[J].Automation of Electric Power Systems,2011,35(22):111-117.
    [19]TUOHY A,MEIBOM P,DENNY E,et al.Unit commitment for systems with significant wind penetration[J].IEEE Trans.on Power Systems,2009,24(2):592-601.
    [20]RUIZ P A,PHILBRICK C R,SAUER P W.Wind power day-ahead uncertainty management through stochastic unit commitment policies[C]//Proceedings of Power Systems Conference and Exhibition,Seattle,USA:IEEE,2009:1-9.
    [21]徐泰山,王昊昊,汪马翔,等.计及电量交易计划的发电厂并网有功功率实时控制方法:中国,CN106655279A[P].2017-05-10.
    [22]徐泰山,常青,许涛,等.交直流混合电网联合实时调峰方法:中国,CN103715721A[P].2014-04-09.
    [23]王彬,孙勇,吴文传,等.应用于高风电渗透率电网的风电调度实时控制方法与实现[J].电力系统自动化,2015,39(21):23-29.WANG Bin,SUN Yong,WU Wenchuan,et al.Areal-time wind power control method for power systems with high wind power penetration and its implementation[J].Automation of Electric Power Systems,2015,39(21):23-29.
    [24]刘吉臻,王玮,胡阳,等.新能源电力系统控制与优化[J].控制理论与应用,2016,33(12):1555-1561.LIU Jizhen,WANG Wei,HU Yang,et al.Control and optimization of alternate electrical power system with renewable energy sources[J].Control Theory&Applications,2016,33(12):1555-1561.
    [25]张文.基于粒子群体优化算法的电力系统无功优化研究[D].济南:山东大学,2006.
    [26]张晓辉,董兴华.含风电场多目标低碳电力系统动态经济调度研究[J].电网技术,2013,37(1):24-31.ZHANG Xiaohui,DONG Xinghua.Research on Multi-objective scheduling for low-carbon power system with wind farms[J].Power System Technology,2013,37(1):24-31.
    [27]邹云阳,杨莉.基于经典场景集的风光水虚拟电厂协同调度模型[J].电网技术,2015,39(7):1855-1859.ZOU Yunyang,YANG Li.Synergetic dispatch models of a wind/PV/hydro virtual power plant based on representative scenario set[J].Power System Technology,2015,39(7):1855-1859.
    [28]盛四清,张立.基于风光水火多能互补的电力系统经济调度[J].电测与仪表,2016,53(22):66-71.SHENG Siqing,ZHANG Li..An economical scheduling strategy in power system based on integration of wind,photovoltaic,water and thermal power[J].E-lectrical Measurement&Instrumentation,2016,53(22):66-71.
    [29]梅华威,米增强,李聪,等.采用机组风速信息动态分类的风电场有功控制策略[J].中国电机工程学报,2014,34(34):6058-6065.MEI Huawei,MI Zengqiang,LI Cong,et al.An active control strategy based on wind speed information dynamic classification for WTGS in wind farm[J].Proceedings of the CSEE,2014,34(34):6058-6065.
    [30]全国电力监管标准化技术委员会.GB/T 19963-2011风电场接入电力系统技术规定[S].北京:中国标准出版社,2011.
    [31]中国电力企业联合会.GB/T 19964-2012光伏发电站接入电力系统技术规定[S].北京:中国标准出版社,2013.
    [32]王颖,张凯锋,付嘉渝,等.抑制风电爬坡率的风储联合优化控制方法[J].电力系统自动化,2013,37(13):17-23.WANG Ying,ZHANG Kaifeng,FU Jiayu,et al.Optimization control method of wind/storage system for suppressing wind power ramp rate[J].Automation of Electric Power Systems,2013,37(13):17-23.
    [33]OSHIYA A,LAKSHMI K.Interval optimization technique for the coordination of hydro units with wind power generation[C]//2016 3rd International Conference on Advanced Computing and Communication Systems,Coimbatore,India:IEEE,2016:1-6.
    [34]刘纯,黄越辉,张楠,等.基于智能电网调度控制系统基础平台的新能源优化调度[J].电力系统自动化,2015,39(1):159-163.LIU Chun,HUANG Yuehui,ZHANG Nan,et al.Renewable energy dispatching based on smart grid dispatching and control system platform[J].Automation of E-lectric Power Systems,2015,39(1):159-163.
    [35]徐林,阮新波,张步涵,等.风光蓄互补发电系统容量的改进优化配置方法[J].中国电机工程学报,2012,32(25):88-98.XU Lin,RUAN Xinbo,ZHANG Buhan,et al.An improved optimal sizing method for wind-solar-battery hybrid power system[J].Proceedings of the CSEE,2012,32(25):88-98.
    [36]COCHRAN J,LU D,KUMAR N.Improved flexibility of coal-fired power plant:from baseload power to peak power[J].Cornerstone,2014(4):49-53.
    [37]邓拓宇,田亮,刘吉臻.利用热网储能提高供热机组调频调峰能力的控制方法[J].中国电机工程学报,2015,35(14):3626-3633.DENG Tuoyu,TIAN Liang,LIU Jizhen.A Control method of heat supply units for improving frequency control and peak load regulation ability with thermal storage in heat supply net[J].Proceedings of the CSEE,2015,35(14):3626-3633.
    [38]吕泉,王海霞,陈天佑,等.考虑风电不确定性的热电厂蓄热罐运行策略[J].电力系统自动化,2015(14):23-29.LYU Quan,WANG Haixia,CHEN Tianyou,et al.Operation strategies of heat accumulator in combined heat and power plant with uncertain wind power[J].Automation of Electric Power Systems,2015(14):23-29.
    [39]吕泉,李玲,朱全胜,等.三种弃风消纳方案的节煤效果与国民经济性比较[J].电力系统自动化,2015,39(7):75-83.LYU Quan,LI Ling,ZHU Quansheng,et al.Comparison of coal-saving effect and national economic indices of three feasible curtailed wind power accommodating strategies[J].Automation of Electric Power Systems,2015,39(7):75-83.
    [40]高志华,任震,黄雯莹.电力市场中调峰权及其交易机制[J].中国电机工程学报,2005,25(5):88-92.GAO Zhihua,REN Zhen,HUANG Wenying.Peak regulation right and the corresponding transaction mechanism in electricity market[J].Proceedings of the CSEE,2005,25(5):88-92.
    [41]王娟娟,吕泉,李卫东,等.电力市场环境下燃气轮机调峰交易模式研究[J].电力自动化设备,2014,34(1):48-54.WANG Juanjuan,LYU Quan,LI Weidong,et al.Peak load regulation transaction mode for gas turbine in electricity market[J].Electric Power Automation Equipment,2014,34(1):48-54.
    [42]梅坚,杨立兵,李晓刚,等.调峰市场效用分析与低谷调峰市场设计[J].电力系统自动化,2013,37(21):134-138.MEI Jian,YANG Libing,LI Xiaogang,et al.Utility analysis for peak regulation market and trading market design for peak regulation capacity in valley time[J].Automation of Electric Power Systems,2013,37(21):134-138.
    [43]徐熙林,宋依群.市场环境下区域电网调峰的直调机组网际出力优化配置研究[J].电力系统保护与控制,2017,45(23):49-56.XU Xilin,SONG Yiqun.Study on power generation allocation of regional plants for peak operation in partly deregulated electricity market environment[J].Power System Protection and Control,2017,45(23):49-56.
    [44]刘永奇,张弘鹏,李群,等.东北电网电力调峰辅助服务市场设计与实践[J].电力系统自动化,2017,41(10):148-154.LIU Yongqi,ZHANG Hongpeng,LI Qun,et al.Design and practice of peak regulation ancillary service market for northeast China power grid[J].Automation of Electric Power Systems,2017,41(10):148-154.
    [45]孙荣富,张涛,梁吉.电网接纳风电能力的评估及应用[J].电力系统自动化,2011,35(4):70-76.SUN Rongfu,ZHANG Tao,LIANG Ji.Evaluation and application of wind power integration capacity in power grid[J].Automation of Electric Power Systems,2011,35(4):70-76.
    [46]张国强,吴文传,张伯明.考虑风电接入的有功运行备用协调优化[J].电力系统自动化,2011,35(12):15-19.ZHANG Guoqiang,WU Wenchuan,ZHANG Boming.Optimization of operation reserve coordination considering wind power integration[J]Automation of Electric Power Systems,2011,35(12):15-19.
    [47]王丹平,陈之栩,涂孟夫,等.考虑大规模风电接入的备用容量计算[J].电力系统自动化,2012,36(21):24-28.WANG Danping,CHEN Zhixu,TU Mengfu,et al.Reserve capacity calculation large-scale wind power integration[J].Automation of Electric Power Systems,2012,36(21):24-28.
    [48]舒隽,李春晓,苏济归,等.复杂预想场景下电力系统备用优化模型[J].中国电机工程学报,2012,32(10):105-110.SHU Jun,LI Chunxiao,SU Jigui,et,al.Optimal reserve dispatch model considering complicated contingency scenarios[J].Proceedings of the CSEE,2012,32(10):105-110.
    [49]薛禹胜,雷兴,薛峰,等.关于风电不确定性对电力系统影响的评述[J].中国电机工程学报,2014,34(29):5029-5040.XUE Yusheng,LEI Xing,XUE Feng,et al.A review on impacts of wind power uncertainties on power systems[J].Proceedings of the CSEE,2014,34(29):5029-5040.
    [50]程雄,程春田,申建建,等.大规模跨区特高压直流水电网省两级协调优化方法[J].电力系统自动化,2015,35(1):151-158.CHENG Xiong,CHENG Chuntian,SHEN Jianjian,et al.Coordination and optimization methods for large-scale trans-regional hydropower transmission via UHVDC in regional and provincial power grids[J].Automation of Electric Power Systems,2015,35(1):151-158.
    [51]谢旭,吴继平,张哲,等.一种分调-省调两级协调的风电增发控制方法:CN106160000A[P].2016-11-23.
    [52]韩红卫,涂孟夫,张慧玲.考虑跨区直流调峰的日前发电计划优化方法及分析[J].电力系统自动化.2015,39(16):138-142.HAN Hongwei,TU Mengfu,ZHANG Huiling,The method and analysis of day-to-day power generation planning considering cross-regional DC peak-shaving[J].Automation of Electric Power Systems,2015,39(16):138-142.
    [53]YUAN Yue,KUBOKAWA J,NAGATA T.A solution of dynamic available transfer capability by means of stability constrained optimal power flow[C]//Proceedings of IEEE Power Tech Conference,Bologna,Italy:IEEE,2003:8-16.
    [54]BETTIOL A L,WEHENKEL L,PAVELLA M.Transient stability-constrained maximum allowable transfer[J].IEEE Trans.on Power Systems,1999,14(2):654-659.
    [55]STAHLHUT J W,HEYDT G T.Stochastic-algebraic calculation of available transfer capability[J].IEEE Trans.on Power Systems,2007,22(2):616-623.
    [56]王成山,孙玮,王兴刚.含大型风电场的电力系统最大输电能力计算[J].电力系统自动化,2007,31(2):17-21.WANG Chengshan,SUN Wei,WANG Xinggang.Total transfer capability calculation of power system including large scale wind farm[J].Automation of Electric Power Systems,2007,31(2):17-21.
    [57]徐泰山,鲍颜红,苏寅生,等.暂态稳定断面功率极限区间和关联度指标计算[J].电力系统自动化,2016,40(20):154-160.XU Taishan,BAO Yanhong,SU Yinsheng,et al.Calculation of power limit interval and correlation degree for transient stability section[J].Automation of Electric Power Systems,2016,40(20):154-160.
    [58]王志.考虑风光水火协调运行的电网输电能力计算[D].保定:华北电力大学,2013.
    [59]卓峻峰,金学洙,邓波,等.考虑断面安全约束的大规模风电有功控制[J].电网技术,2015,39(4):1014-1018.ZHUO Junfeng,JIN Xuezhu,DENG Bo,et al.An active power control method of large-scale wind farm considering security constraints of tie lines[J].Power System Technology,2015,39(4):1014-1018.
    [60]HUYNH D C,NAIR N.Chaos PSO algorithm based economic dispatch of hybrid power systems including solar and wind energy sources[C]//Innovative Smart Grid Technologies-Asia.Bangkok,Thailand:IEEE,2015:1-6.
    [61]LIU Y J,SHI L B,WANG R,et al.Study on the dynamic economic dispatch for a wind-hydro hybrid power system[C]//International Conference on Renewable Power Generation.Beijing,China:IET,2016:1-6.
    [62]任岩,陈德新,顾波,等.一种风光水互补发电系统的优化调度方法:CN103488236A[P].2014-01-01.
    [63]OKUMUS I,DINLER A.Current status of wind energy forecasting and a hybrid method for hourly predictions[J].Energy Conversion and Management,2016,123:362-371.
    [64]FOLEY A M,LEAHY P G,MARVUGLIA A,et al.Current methods and advances in forecasting of wind power generation[J].Renewable Energy,2012,37(1):1-8.
    [65]王魁,张步涵,闫大威,等.含大规模风电的电力系统多时间尺度滚动协调调度方法研究[J].电网技术,2014,38(9):2434-2440.WANG Kui,ZHANG Buhan,YAN Dawei,et al.Amulti-time rolling coordinated scheduling method for power grid integrated with large scale wind farm[J].Power System Technology,2014,38(9):2434-2440.
    [66]徐帆,丁恰,谢丽荣,等.实时发电计划闭环控制模型与应用[J].电网技术,2014,38(11):3187-3192.XU Fan,DING Qia,XIE Lirong,et al.A closedloop control model for real-time generation scheduling and its application[J].Power System Technology,2014,38(11):3187-3192.
    [67]杨光.考虑相关性的风光互补发电系统优化调度研究[D].北京:华北电力大学,2014.
    [68]王金文,范习辉,张勇传,等.大规模水电系统短期调峰电量最大模型及其求解[J].电力系统自动化,2003,27(15):29-34.WANG Jinwen,FAN Xihui,ZHANG Yongchuan,et al.Short-term generation scheduling for the peak-energy maximization of large-scale hydropower systems.[J].Automation of Electric Power Systems,2003,27(15):29-34.

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