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Modulation signal analysis and parameter selection for modular multi-level converters with harmonic injection method

机译:用谐波喷射方法模块化多级转换器的调制信号分析和参数选择

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摘要

The harmonic injection method is widely used in modular multilevel converters (MMCs) to suppress the significant amplitude of the submodule (SM) capacitor voltage fluctuation under low-frequency operation. A method is required to inject high-frequency common-mode voltages and circulating currents, which both occupy modulation space and are prone to over-modulation. This paper focuses on the modulation signal required for circulating current injection, which has been neglected in previous studies. In addition, this paper redefines the amplitude references of the injected harmonics to reserve modulation space for the injected circulating current. By analyzing the characteristics of an MMC system with the harmonic injection method, the relationship between the modulation signal for the circulating current and other variables (such as the output modulation index, output frequency and injection frequency) is obtained. Using the obtained relationship, a strategy for selecting the amplitude and frequency of the injected harmonics is presented to avoid over-modulation under variable conditions while suppress the SM capacitor voltage fluctuation. The theoretical analysis, the proposed injection method and its parameter selection strategy are verified by experimental results.
机译:谐波注入方法广泛用于模块化多级转换器(MMC),以抑制低频操作下子模块(SM)电容器电压波动的显着幅度。需要一种方法来注入高频共模电压和循环电流,其占用调制空间均易于过度调制。本文侧重于循环电流注射所需的调制信号,在先前的研究中已经被忽视。此外,本文重新定义了注射谐波的幅度参考,以便注射循环电流的调制空间。通过利用谐波喷射方法分析MMC系统的特性,获得了循环电流和其他变量的调制信号(例如输出调制指数,输出频率和注射频率)之间的关系。使用所获得的关系,提出了一种选择注入谐波的幅度和频率的策略,以避免在可变条件下过度调制,同时抑制SM电容器电压波动。通过实验结果验证了理论分析,所提出的注射方法及其参数选择策略。

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