引用本文:杨宇,文福拴,周星龙,王力成,吴聪,龚一莼.高光伏渗透率配电系统电压协同控制研究综述[J].电力自动化设备,2023,43(10):48-58
YANG Yu,WEN Fushuan,ZHOU Xinglong,WANG Licheng,WU Cong,GONG Yichun.Research review of voltage cooperative control in distribution system with high photovoltaic penetration[J].Electric Power Automation Equipment,2023,43(10):48-58
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高光伏渗透率配电系统电压协同控制研究综述
杨宇1, 文福拴1, 周星龙2, 王力成3, 吴聪4, 龚一莼4
1.浙江大学 电气工程学院,浙江 杭州 310027;2.国能经济技术研究院有限责任公司,北京 102211;3.浙江工业大学 信息工程学院,浙江 杭州 310023;4.国网能源研究院有限公司,北京 102209
摘要:
未来新能源电力系统的典型特征之一是具备高渗透率的光伏发电,新能源电力系统将面临光伏出力频繁波动和通信性能不良的挑战。此外,新并网的光伏逆变器与现有的配电系统电压管理体系不尽匹配,需要对二者进行协同控制。在此背景下,对高光伏渗透率配电系统的电压协同控制方面的研究进行全面而系统的综述。对高光伏渗透率配电系统的内涵、定义以及电压协同控制亟需解决的矛盾进行概述;围绕分布式光伏逆变器的协同控制策略、逆变器与传统电压控制设备的协同这2个电压协同控制难题,对高光伏渗透率配电系统的相关研究现状进行综述;对这一领域尚待解决的理论和技术问题进行展望。
关键词:  配电系统  运行控制  电压管理  光伏发电  通信性能  分布式控制
DOI:10.16081/j.epae.202309012
分类号:TM732;TM615
基金项目:国家重点研发计划资助项目(2022YFB2403100)
Research review of voltage cooperative control in distribution system with high photovoltaic penetration
YANG Yu1, WEN Fushuan1, ZHOU Xinglong2, WANG Licheng3, WU Cong4, GONG Yichun4
1.College of Electrical Engineering, Zhejiang University, Hangzhou 310027, China;2.China Energy Economic and Technological Research Institute Co.,Ltd.,Beijing 102211, China;3.College of Information Engineering, Zhejiang University of Technology, Hangzhou 310023, China;4.State Grid Energy Research Institute, Beijing 102209, China
Abstract:
High photovoltaic penetration is one of the typical features of future renewable energy power system, which will face the challenges of frequent fluctuation of photovoltaic output and poor communication performance. Furthermore, the newly integrated photovoltaic inverters do not well align with the existing voltage management system of distribution system, it is necessary to cooperate the control of the two. Under this background, a comprehensive and systematic review of voltage cooperative control of distribution system with high photovoltaic penetration is carried out. The intension and definition of distribution system with high photovoltaic penetration and the urgent contradiction to be solved in voltage cooperative control are outlined. Focusing on the voltage cooperative control issues of cooperative control strategy of distributed photovoltaic inverters and the coordination of inverters and traditional voltage control devices, the related research status of distribution system with high photovoltaic penetration is reviewed. The theoretical and technical issues to be solved in the field are prospected.
Key words:  distribution system  operation and control  voltage management  photovoltaic generation  communication performance  distributed control

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