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作 者:陈晓英 楼继开 邱亚鸣 胡静 陆裔晨 岑垚 雷顶 CHEN Xiaoying;LOU Jikai;QIU Yaming;HU Jing;LU Yichen;CEN Yao;LEI Ding(Shanghai Caojing Thermal Power Company Limited,Shanghai 201507,China;Shanghai Minghua Electric Power Science&Technology Company Limited,Shanghai 200090,China)
机构地区:[1]上海漕泾热电有限责任公司,上海201507 [2]上海明华电力科技有限公司,上海200090
出 处:《综合智慧能源》2023年第9期77-85,共9页Integrated Intelligent Energy
摘 要:为使可调节负荷参与电力市场辅助服务期间收益最大化,提升可调节负荷的自动控制水平势在必行。针对可调节容量相对较大、响应速度相对较快的光储协同综合智慧能源,在分析《华东区域电力并网运行管理实施细则》《华东区域电力辅助服务管理实施细则》对可调节负荷相关考核补偿指标要求的基础上,提出综合智慧能源控制系统参与自动功率控制(APC)辅助服务应具备的基本条件,构建“多尺度负荷预测-APC响应策略寻优-底层协同控制”完整的控制系统架构,制定三层控制系统架构的程序部署方式,并给出典型系统的监控画面。项目实践表明,该控制系统能够实现光储协同综合智慧能源的全自动、经济地APC响应,为类似园区型综合智慧能源站参与APC辅助服务提供了参考,对底层控制系统层面的研究有借鉴意义。To maximize the revenue of adjustable loads participating in power market ancillary services,it is imperative to enhance the automatic control on adjustable loads.In view of the large adjustable capacity and fast response speed of photovoltaic‒storage collaborative smart energy systems,the basic requirements for the integrated smart energy's control systems participating in automatic power control(APC)ancillary services are proposed based on the adjustable load assessment and compensation indicators in the Implementation Measures for East China Regional Power Grid Operation Management and Implementation Measures for East China Regional Power Ancillary Service Management.Then,a complete three-level control system architecture is constructed,including multi-scale load forecasting,APC response strategy optimization and bottom-level collaborative control.The deployment and typical monitoring interfaces of the control system are given.Project practices show that this control system can achieve fully automatic and economic APC response for photovoltaic-storage collaborative smart energy,providing reference for similar park-type integrated smart energy stations participating in APC ancillary services and the design of bottom-level control system.
关 键 词:综合智慧能源 光储协同 可调节负荷 辅助服务电力市场 自动功率控制 新型电力系统
分 类 号:TK01[动力工程及工程热物理]
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