考虑电网辅助服务的分布式能源聚合体优化方法
CSTR:
作者:
作者单位:

(1.中国南方电网电力调度控制中心,广东 广州510530;2.东方电子股份有限公司,山东 烟台 264000)

通讯作者:

吴问足(1993—),男,硕士,工程师,主要从事电力市场建设、电力系统调度控制研究;E?mail:nfdwlgxz@163.com

中图分类号:

TM863

基金项目:

中国南方电网有限责任公司科技项目(0000002021030101XT00066)


Research on the optimization method of distributed energy polymer considering grid ancillary services
Author:
Affiliation:

(1.China Southern Power Grid Power Dispatching Control Center,Guangdong 510530, China;2.Dongfang Electronics Co., Ltd., Yantai 264000, China)

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    摘要:

    分布式能源个体一般无法直接参与电力市场交易或提供电网辅助服务,这可以通过分布式能源聚合来解决。在多能源类型、多交易市场及多服务基础上,提出一种新的分布式能源聚合体优化方法,该方法分为一级、二级、三级3个阶段的优化。首先,一级优化中使用了线性化技术来克服聚合体跨时空调度问题的非凸性,并将问题转换成混合整数线性规划问题,得出日前机组组合方案;其次,二级优化中基于一级优化给出的机组组合方案并使用最优潮流方程的二阶锥凸松弛求解经济调度问题以获得节点电压和功率流;然后,在三级优化中对偏离二级优化设定点进行惩罚,使三级优化接近系统最佳运行点,同时具有较短的规划范围;最后,在案例研究中将优化方法应用于一个包含电解制氢、风力发电及光伏发电等多能源聚合体模型。测试结果表明:所提出方法在电网辅助服务支持和聚合体灵活性增强方面的优势,并以最大限度增加运营收益,证明所提方法的有效性。

    Abstract:

    Distributed energy individuals generally cannot directly participate in electricity market transactions or provide grid auxiliary services. This issue can be solved through distributed energy aggregation. This paper proposes a new distributed energy polymer optimization method based on multiple energy types, multiple trading markets, and multiple services. The optimization method can be divided into three stages: high?level, middle?level, and low?level optimization. First, in the high?level optimization, linearization techniques are used to overcome the non?convexity of the cross spatiotemporal scheduling problem of aggregates, and the problem is transformed into a mixed integer linear programming problem to obtain the day?ahead unit combination scheme. Based on the unit combination scheme, the middle?level optimization solves the economic dispatch problem by the second?order cone?convex relaxation of the optimal power flow equation to obtain the node voltage and power flow. Deviations from the middle?level optimization set point are then penalized in the low?level optimization, making the results of the low?level optimization get close to the system optimal operating point while having a shorter planning horizon. Finally, in a case study, the optimization method is applied to a multi?energy polymer model including electrolytic hydrogen production, wind power generation, photovoltaic power generation, etc. The results show the advantages of the proposed method in terms of grid ancillary service and aggregate flexibility enhancement. The operational benefits are maximized, which validate the effectiveness of the proposed method.

    参考文献
    [1] 徐立新,沈志钧,刘明波,等.考虑配电网安全校核的分布式能源聚合商参与市场竞标的双层混合整数优化模型[J].电网技术,2021,45(11):4395?4406. XU Lixin,SHEN Zhijun,LIU Mingbo,et al.Double?layer mixed integer optimization model for distributed energy aggregators to participate in market bidding considering distribution network security check[J].Power System Technology,2021,45(11):4395?4406.
    [2] 李淑静,谭清坤,张煜,等.虚拟电厂关键技术及参与电力市场模式设计研究[J].电测与仪表,2022,59(12): 33?40. LI Shujing,TAN Qingkun,ZHANG Yu,et al.Research on key technologies of virtual power plant and its participation in power market model design[J].Electrical Measurement & Instrumentation,2022,59(12):33?40.
    [3] 潘明夷,刘念,雷金勇.含热电联产机组的分布式能源集群动态划分方法[J].电力系统自动化,2021,45(1):168?176. PAN Mingyi,LIU Nian,LEI Jinyong.Dynamic partition method of distributed energy clusters with cogeneration units[J].Automation of Electric Power Systems,2021,45(1):168?176.
    [4] 郭新志,刘英新,李秋燕,等.基于智能负荷控制的分布式能源系统调控策略研究[J].智慧电力,2022,50(3):8?14. GUO Xinzhi,LIU Yingxin,LI Qiuyan,et al.Regulation strategy for distributed energy system based on intelligent load control[J].Smart Power,2022,50(3):8?14.
    [5] 龚超,张轩,赵越,等.考虑虚拟电厂可调能力的综合需求响应市场出清策略[J].南方电网技术,2021,15(12):56?65. GONG Chao,ZHANG Xuan,ZHAO Yue,et al.A comprehensive demand response market clearing strategy considering the adjustable capacity of virtual power plants[J].Southern Power System Technology,2021,15(12):56?65.
    [6] 田宇,黄婧,谢枭,等.主动配电网无功补偿和OLTC鲁棒多目标优化配置[J].中国电力,2023,56(3):94?99. TIAN Yu,HUANG Jing,XIE Xiao,et al.Reactive power compensation and OLTC robust multi?objective optimization of active distribution network[J].Electric Power,2023,56(3):94?99.
    [7] KNEZOVI? K,MARTINENAS S,ANDERSEN P B,et al.Enhancing the role of electric vehicles in the power grid:field validation of multiple ancillary services[J].IEEE Transactions on Transportation Electrification,2016,3(1):201?209.
    [8] KIM W W,SHIN J S,KIM J O.Operation strategy of multi?energy storage system for ancillary services[J].IEEE Transactions on Power Systems,2017,32(6):4409?4417.
    [9] CARDOSO G,STADLER M,MASHAYEKH S,et al.The impact of ancillary services in optimal DER investment decisions[J].Energy,2017,130:99?112.
    [10] KAZEMI M,ZAREIPOUR H,AMJADY N,et al.Operation scheduling of battery storage systems in joint energy and ancillary services markets[J].IEEE Transactions on Sustainable Energy,2017,8(4):1726?1735.
    [11] WENZEL G,NEGRETE?PINCETIC M,OLIVARES D E,et al.Real?time charging strategies for an electric vehicle aggregator to provide ancillary services[J].IEEE Transactions on Smart Grid,2017,9(5):5141?5151.
    [12] 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.
    [13] ULLAH Z,MOKRYANI G,CAMPEAN F,et al.Comprehensive review of VPPs planning,operation and scheduling considering the uncertainties related to renewable energy sources[J].IET Energy Systems Integration,2019,1(3):147?157.
    [14] 梁作宾,高山,王庆,等.低碳背景下基于自适应鲁棒优化的含源配电系统规划方法[J].电网与清洁能源,2021,37(12):70?80. LIANG Zuobin,GAO Shan,WANG Qing,et al.A planning method for the source?containing distribution system based on adaptive robust optimization under low?carbon background[J].Power System and Clean Energy,2021,37(12):70?80.
    [15] RIESZ J,GILMORE J,MACGILL I.Frequency control ancillary service market design:Insights from the australian national electricity market[J].The Electricity Journal,2015,28(3):86?99.
    [16] JIU Y,ZHANG D L,WANG X Y.A peak regulation ancillary service optimal dispatch method of virtual power plant based on reinforcement learning[C]//IEEE Innovative Smart Grid Technologies?Asia (ISGT Asia),Chengdu,China,2019.
    [17] 平健,陈思捷,严正.适用于电力系统凸优化场景的能源区块链底层技术[J].中国电机工程学报,2020,40(1):108?116+378. PING Jian,CHEN Sijie,YAN Zheng.The underlying technology of energy blockchain suitable for power system convex optimization scenarios[J].Proceedings of the CSEE,2020,40(1):108?116+378.
    [18] MAVROMATIDIS G,OREHOUNIG K,CARMELIET J.Uncertainty and global sensitivity analysis for the optimal design of distributed energy systems[J].Applied Energy,2018,214:219?238.
    [19] YANG J W,ZHANG N,KANG C Q,et al.A state? independent linear power flow model with accurate estimation of voltage magnitude[J].IEEE Transactions on Power Systems,2017,32(5):3607?3617.
    [20] MAVROMATIDIS G,OREHOUNIG K,CARMELIET J.Design of distributed energy systems under uncertainty:a two?stage stochastic programming approach[J].Applied energy,2018,222:932?950.
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吴问足,赵玉柱,刘国伟,等.考虑电网辅助服务的分布式能源聚合体优化方法[J].电力科学与技术学报,2023,38(4):205-213.
WU Wenzu, ZHAO Yuzhu, LIU Guowei, et al. Research on the optimization method of distributed energy polymer considering grid ancillary services[J]. Journal of Electric Power Science and Technology,2023,38(4):205-213.

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  • 在线发布日期: 2023-11-06
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