Improved Hybrid Reactive Power Compensation System Based on FC and STATCOM and Its Control Method
作者机构:School of Electrical and Information EngineeringChangsha University of Science&TechnologyChangsha 410076China School of Electrical EngineeringXi’an Jiaotong UniversityXi’an 710049China School of Electrical and Electronic EngineeringNanyang Technological UniversitySingapore 639798Singapore School of Electrical EngineeringThe University of SydneySydney NSW 2006Australia Beijing Sgitg-Accenture Information Technology Co.Ltd.Beijing 100080China
出 版 物:《Chinese Journal of Electrical Engineering》 (中国电气工程学报(英文))
年 卷 期:2022年第8卷第2期
页 面:29-41页
核心收录:
学科分类:080801[工学-电机与电器] 0808[工学-电气工程] 08[工学]
基 金:Supported by the General Project of Hunan Natural Science Foundation(2021JJ30715) the Scientific Research Fund of Hunan Provincial Education Department(20B029) the Graduate Research Innovation Project of Changsha University of Science&Technology(CX2021SS52)
主 题:Static synchronous compensator hybrid topology reactive power compensation fixed capacitor
摘 要:The purpose of this study is to solve the main problems in distribution networks,including increased line loss and reduced power supply quality caused by insufficient capacitive reactive *** reduce the capacity,voltage,and current stress of an active module of a compensation device and improve the cost performance of the device,an improved hybrid reactive power compensation system based on a fixed capacitor(FC)and a static synchronous compensator(STATCOM)is *** topological structure and basic operating principle of the proposed reactive power compensation system are *** addition,from the perspectives of output voltage,current,power,loss of the active part,and system compensation cost,the performances of the proposed reactive compensator and the inductively coupled STATCOM(L-STATCOM)are compared and ***,the key parameters of the proposed system are designed,and the joint optimization control strategy of the FC and STATCOM is *** correctness and effectiveness of the proposed topology structure and control method are verified by simulations.