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Single-Phase Hybrid Cascaded H-Bridge and Diode-Clamped Multilevel Inverter: RL Load Case

机译:单相混合级联H桥和二极管钳位多电平逆变器:RL负载情况

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Each of the three multilevel inverter topological families - diode-clamped, cascaded H-bridge and flying capacitor - has its particular advantages and disadvantages. Hybrid multilevel inverters, combining two topologies, can yield more advantages than each possesses and even result in novel behavior, as in the case of connecting together a single-phase diode-clamped inverter and a single-phase cascaded H-bridge inverter in series. This paper considers such a hybrid inverter supplying moderately-lagging power factor loads, which results in a different number of waveform levels than for unity power factor loads. A novel modulation scheme optimized for this load type is proposed, which yields lower harmonic distortion for both lagging power factor and unity power factor loads than when using the existing modulation scheme. Simulation and test results are shown as corroboration of the reduced distortion.
机译:三种多电平逆变器拓扑系列(二极管钳位,级联H桥和飞跨电容器)中的每一个都有其特殊的优点和缺点。结合了两种拓扑的混合多电平逆变器可以产生比每种拓扑都更多的优势,甚至可以带来新颖的性能,例如在串联连接单相二极管钳位式逆变器和单相级联H桥逆变器的情况下。本文考虑了这样一种混合式逆变器,该逆变器提供适度滞后的功率因数负载,与单位功率因数负载相比,其导致的波形电平数量有所不同。提出了针对这种负载类型优化的新型调制方案,与使用现有调制方案时相比,该方法对于滞后功率因数和单位功率因数负载均产生较低的谐波失真。仿真和测试结果显示为减少失真的佐证。

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