Constant Effective Duty Cycle Control For Flying Capacitor Balancing In Flying Capacitor Multi-Level Converters

2018 IEEE 19TH WORKSHOP ON CONTROL AND MODELING FOR POWER ELECTRONICS (COMPEL)(2018)

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摘要
One of the challenges of utilizing Flying Capacitor Multi-Level (FCML) converters is the flying capacitor balancing. Poorly balanced flying capacitors increase the switch voltage stress, which is detrimental to performance and device rating requirements. Previously, valley current detection was shown as a potential method to balance flying capacitors, but the method suffers from poor flying capacitor balancing performance at light load. Here, we investigate the light load conditions that lead to poor balancing and propose a new method, constant effective duty cycle (CEDC) compensation, which provides active balancing for the full load range of the converter. The proposed method is validated with an 4-level FCML experimental prototype, demonstrating excellent flying capacitor balancing over all load ranges and across multiple induced flying capacitor imbalances.
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关键词
balanced flying capacitors,device rating requirements,poor flying capacitor balancing performance,constant effective duty cycle compensation,active balancing,4-level FCML experimental prototype,multiple induced flying capacitor imbalances,constant effective duty cycle control,flying capacitor multilevel converters,switch voltage stress,valley current detection,light load conditions,CEDC compensation
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