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An Improved H8 Topology for Common-Mode Voltage Reduction

IEEE Transactions on Power Electronics, 2019
This paper presents an improved H8 power converter for common-mode voltage (CMV) reduction and electromagnetic interference suppression. The proposed H8 converter can realize zero CMV variation when entering and leaving the zero state, which is mainly achieved by both the improvement of the structure and the control strategy.
Yangxiao Xiang   +4 more
openaire   +1 more source

Controlling common-mode voltages in multilevel inverters

2008
This paper proposes a novel method based on pulse width modulation techniques to reduce and control the common-mode voltage in three-phase multilevel inverters. Besides controlling the common-mode voltage, this method is capable of controlling capacitors voltages and load currents with low switching losses and harmonic contents.
Ghoreishy, H., Zare, F., Hassanpour, H.
openaire   +1 more source

Common-Mode Voltage Reduction Method for Three-Level Inverter With Unbalanced Neutral-Point Voltage Conditions

IEEE Transactions on Industrial Informatics, 2021
C. Qin   +4 more
semanticscholar   +1 more source

Integrated Modulation of Dual-Parallel Three-Level Inverters With Reduced Common Mode Voltage and Circulating Current

IEEE transactions on power electronics, 2021
Weiwei Li   +6 more
semanticscholar   +1 more source

Common Mode Voltage Reduction in DCMLI

International Journal of Engineering Trends and Technology, 2014
M.S.Raghavendra Reddy   +3 more
openaire   +1 more source

A review of common-mode voltage suppression methods in wind power generation

Renewable & Sustainable Energy Reviews
Zicheng Liu   +7 more
semanticscholar   +1 more source

Triple-Mode Isolated Resonant Buck–Boost Converter Over Wide Input Voltage Range for Residential Applications

IEEE Transactions on Industrial Electronics, 2021
Jinuk Kim, Sang-Wook Ryu, Minsung Kim
exaly  

A Dual Two-Level Inverter Scheme With Common Mode Voltage Elimination for an Induction Motor Drive

IEEE Transactions on Power Electronics, 2004
M R Baiju, K K Mohapatra, K Gopakumar
exaly  

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