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《Agricultural Equipment & Vehicle Engineering》 2018-12
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Research and Design of APFC Circuit Based on Brushless Motor Speed Control System

Jin Aijuan;Li Yi;Jia Yusong;Li Na;Mai Dina;Xu Yanchao;Cao Wenbin;School of Optical-Electrical and Computer Engineering, University of Shanghai for Science and Technology;  
Aiming at the problems of low power factor and harmonic pollution in power equipment such as charging pile of electric vehicle, in this paper, an APFC circuit based on CSC converter was introduced and analyzed. In order to improve the power factor of the motor power system and realize adjustability of bus voltage, the CSC control method working in DCM mode was adopted. The simulation results were obtained by constructing the MATLAB model and the physical platform was built to verify the simulation results. It was proved that the APFC circuit based on CSC converter can effectively reduce harmonic generation in charging pile system and realize the purpose of power factor correction.
【CateGory Index】: TM46
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【Citations】
Chinese Journal Full-text Database 2 Hits
1 Wang Huizhen Zhang Junda(Nanjing University of Aeronautics and Astronautics Nanjing 210016 China);A Bridgeless Boost PFC Converter[J];电工技术学报;2010-05
2 ZHOU Ling, GONG Chun-ying (Nanjing University of Aeronautics and Astronatics College of Automation Engineering, Nanjing 210016,China);Development of a Novel Converter with Active Power Factor Correction[J];江西电力职工大学学报;2002-02
【Co-citations】
Chinese Journal Full-text Database 10 Hits
1 HUANG Zhi-liang;YE Kai-ming;LIN Tian-jin;LI Wen-quan;College of Electrical Engineering and Automation,Fuzhou University;State Grid Quanzhou Power Supply Company;;Research and Implementation on Interleaved Boost Power Factor Correction Converter[J];电气开关;2015-06
2 CHEN Xiao-hu;CHEN Xi-kun;Electromechanical Engineering and Automation College,Shanghai University;;Research on a novel vehicle charger of hybrid electric vehicle[J];电气传动自动化;2015-06
3 WANG Chang;WANG Cong;WANG Ke-feng;CHENG Hong;YANG Liang;School of Mechanical Electronic & Information Engineering,China University of Mining and Technology ( Beijing);China Electric Power Research Institute;;New control algorithm of bridgeless PFC[J];电工电能新技术;2015-11
4 CHEN Chen;ZHANG Shu;XIONG Qi;ZHANG Xing-jie;College of Mechanical Engineering,Zhejiang University of Technology;;Analysis of new bridgeless PFC BLDC control[J];机电工程;2015-10
5 Chen Yucheng;Zhangzhou Institute of Technology;;Research on Output Voltage Ripple of doubler Boost PFC[J];电气技术;2015-06
6 SUN Zhoutong;ZHAO Heyong;CHEN Baixin;Northeast Dianli University;Xing'an Power Supply Company;;Application of three-level boost circuit in PFC[J];黑龙江电力;2015-03
7 Wang Mingxia;Du Hongji;Nanjing University of Science and Technology;;Analysis and Design of Boost PFC Converters based on IC IR1150S[J];电源世界;2014-11
8 Hu Wei;Kang Yong;Zhou Xiaoning;Wang Xuehua;State Key Laboratory of Advanced Electromagnetic Engineering and Technology Huazhong University of Science & Technology;Wuhan Quanhua Optoelectronics Co. Ltd;;A Zero-Voltage Transition Dual Boost Power Factor Correction Converter[J];电工技术学报;2014-10
9 YANG Jin;YANG Cheng;Department of Signal and Communication,Nanjing Institute of Railway Technology;Railway Control Engineering Center of Jiangsu Province;Nanjing Metro Operation Co. ,Ltd. Tong Road;;Design of Railway Signal Lamp Drive Device Based on Flyback Switching Power Supply[J];电子器件;2014-05
10 CAO Tai-qiang;HUANG Jun;WANG Jun;SUN Zhang;YOU Fang;LUO Qian;School of Electric Information,Xihua University;Guodian Tibet Niyanhe River Hydropower Develoment Company;Information Filiale,the Second Research Institute of CAAC;;One-cycle controlled bridgeless Pseudo-Boost PFC converter[J];电机与控制学报;2014-04
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