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Control of Arm Capacitor Voltages in Modular Multilevel Converters

机译:模块化多电平转换器中臂电容器电压的控制

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Modular multilevel converters have several attractive features such as a modular structure, high voltage capability and scalability, excellent quality of the output voltage waveforms, as well as, low expense for redundancy. However, the main drawback of this converter is the complexity of the control system due to the multiple control objectives which include the input, output, circulating current and the capacitor voltages. Several control schemes for the capacitor voltages have been proposed, being usually divided into the control of the average voltage and the balancing of the capacitor voltages among the submodules and among the arms. These control schemes can effectively control the capacitor voltage when the reference is the same for all arms, but they cannot manage arbitrary voltage references when each arm capacitor voltage must be controlled independently as required, for example, to achieve maximum power point tracking in photovoltaic applications. This paper proposes a control strategy for a modular multilevel converter capable to manage the average capacitor voltage of each arm independently. The proposed scheme is based on a decomposition of the energy of the arms in different components, according to theirs symmetries. Results validating the performance of the proposed control scheme are shown and the impact on the output current is also discussed.
机译:模块化多电平转换器具有一些吸引人的功能,例如模块化结构,高电压能力和可扩展性,出色的输出电压波形质量以及低廉的冗余成本。然而,由于包括输入,输出,循环电流和电容器电压在内的多个控制目标,该转换器的主要缺点是控制系统的复杂性。已经提出了几种用于电容器电压的控制方案,通常将其分为平均电压的控制和子模块之间以及臂之间的电容器电压的平衡。当所有支路的参考电压都相同时,这些控制方案可以有效地控制电容器电压,但是当必须按要求独立控制每个支路电容器的电压时,例如在光伏应用中实现最大功率点跟踪时,它们无法管理任意电压参考。本文提出了一种模块化多电平转换器的控制策略,该转换器能够独立管理每个臂的平均电容器电压。所提出的方案基于臂的能量在不同组件中的分解,具体取决于它们的对称性。显示了验证所提出的控制方案的性能的结果,并讨论了对输出电流的影响。

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