电力系统保护与控制
電力繫統保護與控製
전력계통보호여공제
POWER SYSTM PROTECTION AND CONTROL
2013年
17期
127-134
,共8页
周念成%蒲松林%王强钢%姜光学%曾宪平%肖松%陈敏%谢捷
週唸成%蒲鬆林%王彊鋼%薑光學%曾憲平%肖鬆%陳敏%謝捷
주념성%포송림%왕강강%강광학%증헌평%초송%진민%사첩
配电网%快速充电站%电动汽车%储能缓冲系统%有功变化率
配電網%快速充電站%電動汽車%儲能緩遲繫統%有功變化率
배전망%쾌속충전참%전동기차%저능완충계통%유공변화솔
distribution network%fast charging station%electric vehicle%energy storage buffer system%real power change rate
利用储能缓冲系统补偿电动汽车快速充电的脉冲功率,能够减小快速充电站接入对配电网的不利影响。研究含储能缓冲系统的快速充电站结构、不同类型蓄电池的快速充电功率特性,提出计及配电网有功变化率限值的储能缓冲系统运行方式和电流控制策略。结合快速充电站配置,推导储能缓冲系统的运行参数,进而设计储能系统元件参数。利用Matlab/Simulink搭建含储能缓冲系统的快速充电站模型,分析不同电动汽车脉冲充电功率下储能缓冲系统动态特性,验证了所提出控制策略的正确性和有效性。
利用儲能緩遲繫統補償電動汽車快速充電的脈遲功率,能夠減小快速充電站接入對配電網的不利影響。研究含儲能緩遲繫統的快速充電站結構、不同類型蓄電池的快速充電功率特性,提齣計及配電網有功變化率限值的儲能緩遲繫統運行方式和電流控製策略。結閤快速充電站配置,推導儲能緩遲繫統的運行參數,進而設計儲能繫統元件參數。利用Matlab/Simulink搭建含儲能緩遲繫統的快速充電站模型,分析不同電動汽車脈遲充電功率下儲能緩遲繫統動態特性,驗證瞭所提齣控製策略的正確性和有效性。
이용저능완충계통보상전동기차쾌속충전적맥충공솔,능구감소쾌속충전참접입대배전망적불리영향。연구함저능완충계통적쾌속충전참결구、불동류형축전지적쾌속충전공솔특성,제출계급배전망유공변화솔한치적저능완충계통운행방식화전류공제책략。결합쾌속충전참배치,추도저능완충계통적운행삼수,진이설계저능계통원건삼수。이용Matlab/Simulink탑건함저능완충계통적쾌속충전참모형,분석불동전동기차맥충충전공솔하저능완충계통동태특성,험증료소제출공제책략적정학성화유효성。
By using the energy storage buffer system, we can compensate the pulse power of fast charging electric vehicles (EV) and reduce the adverse influence on the distribution network caused by the fast charging stations. This paper studies the topology structure of fast charging station with energy storage buffer system and the fast charging power characteristics of different types of batteries. Then taking the distribution network real power change limit into account, we propose an operation mode of the energy storage buffer system of the fast charging stations and its current control strategy. Furthermore, to design the storage buffer system module and its control parameters, we combine the configuration of fast charging stations to deduce the operation parameters of the storage buffer system. Using Matlab/Simulink software, we build a model of fast charging station with energy storage buffer system, analyze the dynamic characteristics of fast charging station with different pulse charging power, and verify the correctness and effectiveness of the control strategy. <br> This work is supported by National Natural Science Foundation of China (No. 51277184).