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作 者:Ning Xie Wei Zhao Wenzhi Lin Zhenglei Wang Yukai Chen Chengzhi Li Jianfei Chen
机构地区:[1]Digital Grid Research Institute Co.,Ltd.,China Southern Power Grid,Guangzhou 510700,China [2]School of Electrical Engineering and Automation,Wuhan University,Wuhan 430072,China
出 处:《Chinese Journal of Electrical Engineering》2024年第3期25-36,共12页中国电气工程学报(英文)
基 金:Supported in part by the Guangdong Innovative Program on New Power System Technology under Grant 1688483408285;in part by the National Natural Science Foundation of China under Grant 52207221;in part by Wuhan Science and Technology Project under Grant 2023010201010071.
摘 要:Capacitor voltage imbalance in four-level(4L)neutral-point clamped(NPC)converters is a direct factor hindering their application.In particular,when they are applied in motor drives,space vector pulse-width modulation(SVPWM)is a more popular scheme,but conventional 4L SVPWM cannot achieve the voltage balancing control of DC-link capacitors,is complex to implement,and requires costly computation.A hybrid modulation method with capacitor voltage-balancing control for 4L NPC converters is proposed.The proposed method is achieved using three-level(3L)SVPWM and two-level(2L)carrier-based pulse-width modulation(CPWM)based on the concept of"4L=3L+2L".Thus,it can be easily implemented on a digital chip because the modulation process is nearly identical to that of 3L SVPWM without the more cumbersome 4L SVPWM algorithm.Meanwhile,any proven optimization scheme of 3L SVPWM can be directly applied to the proposed method to further improve performance.Simulation and experimental results for a 4L active NPC converter demonstrate the effectiveness of the proposed method.
关 键 词:4L NPC converters 3L SVPWM 2L CPWM voltage balancing control
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