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(2N+1) Selective Harmonic Elimination-PWM for Modular Multilevel Converters: A Generalized Formulation and A Circulating Current Control Method

机译:模块化多电平转换器的(2N + 1)选择性谐波消除-PWM:广义公式和循环电流控制方法

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摘要

The performance of modular multilevel converters (MMCs) in medium-voltage applications, where the number of required submodules is not high, can be improved utilizing low switching frequency modulations such as (2N+1) selective harmonic elimination-pulse width modulation (SHE-PWM), which provides tight control of lower order harmonics and low switching losses. This paper proposes a calculation method, which is based on a novel formulation, to solve the SHE-PWM problem. In particular, MMCs with (2N+1) phase output voltage levels are considered, obtaining a (2N+1) SHE-PWM waveform. This method utilizes a unique system of equations that is valid for any possible waveform. Therefore, it is able to calculate simultaneously, without predefined waveforms, both the switching patterns and the associated firing angles that solve the (2N+1) SHE-PWM problem. Consequently, the search process is simplified and optimized. Furthermore, this paper also proposes a circulating current control technique, which can be applied along with (2N+1) SHE-PWM without disturbing the phase output voltage. Simulation results and experimental tests obtained with a single-phase laboratory prototype prove the validity of the novel (2N+1) SHE-PWM implementation method and the proposed circulating current control technique.
机译:通过使用低开关频率调制(例如(2N + 1)选择性谐波消除脉冲宽度调制(SHE-)),可以提高中压应用中模块化多级转换器(MMC)在所需子模块数量不多的情况下的性能。 PWM),可对低阶谐波和低开关损耗进行严格控制。本文提出了一种基于新颖公式的计算方法,以解决SHE-PWM问题。特别地,考虑具有(2N + 1)相输出电压电平的MMC,以获得(2N + 1)SHE-PWM波形。该方法利用了对任何可能的波形均有效的独特的方程组。因此,它能够在没有预定义波形的情况下同时计算解决(2N + 1)SHE-PWM问题的开关模式和相关的触发角。因此,简化并优化了搜索过程。此外,本文还提出了一种循环电流控制技术,该技术可与(2N + 1)SHE-PWM一起应用而不会干扰相位输出电压。用单相实验室原型获得的仿真结果和实验测试证明了新颖的(2N + 1)SHE-PWM实现方法和所提出的循环电流控制技术的有效性。

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