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Efficient Sequential Switching Hybrid-Modulation Techniques for Cascaded Multilevel Inverters

机译:级联多电平逆变器的高效顺序开关混合调制技术

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摘要

This paper presents four different sequential switching hybrid-modulation strategies and compared for cascaded multilevel inverters. Hybrid-modulation strategies represent combinations of fundamental-frequency modulation and multilevel sinusoidal-modulation (MSPWM) strategies, and are designed for performance of the well-known alternative phase opposition disposition, phase-shifted carrier, carrier-based space-vector modulation, and single-carrier sinusoidal-modulations. The main characteristic of these modulations are the reduction of switching losses with good harmonic performance, balanced power loss dissipation among the devices with in a cell, and among the series-connected cells. MSPWM and its base modulator design are implemented on a TMS320F2407 digital signal processor (DSP). Complex programmable logic device realizes hybrid-modulation algorithm with base pulsewidth modulation (PWM) circulation, and is integrated with DSP for sequential switching hybrid PWM generation. The proposed modulations can be easily extended to three phase, and higher level inverters, operates with same physical structure of the power module. The feasibility of these hybrid modulations are verified through spectral analysis, power loss analysis, simulation, and experimental results.
机译:本文介绍了四种不同的顺序开关混合调制策略,并对级联的多电平逆变器进行了比较。混合调制策略代表了基频调制和多级正弦调制(MSPWM)策略的组合,并且设计用于执行众所周知的替代相移配置,相移载波,基于载波的空间矢量调制以及单载波正弦调制。这些调制的主要特征是减少具有良好谐波性能的开关损耗,在一个单元中的设备之间以及在串联连接的单元之间的平衡的功率损耗耗散。 MSPWM及其基本调制器设计在TMS320F2407数字信号处理器(DSP)上实现。复杂的可编程逻辑器件实现了具有基本脉宽调制(PWM)循环的混合调制算法,并且与DSP集成在一起,用于顺序切换混合PWM的生成。所提出的调制方式可以轻松扩展到三相,并且更高级别的逆变器可以在功率模块的相同物理结构下运行。这些混合调制的可行性通过频谱分析,功率损耗分析,仿真和实验结果得到了验证。

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