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A Combinational Power Circuit-based Submodule Topology for MMC With Shoot-through and Selfbalancing Capability

机译:具有直通和自平衡功能的MMC的基于组合电源电路的子模块拓扑

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The upper and lower power switches of sub modules (SMs) in Modular Multilevel Converter (MMC) could be switched on simultaneously by disturbances which could destroy the SM circuit and cause damage to MMC. To improve reliability, this paper proposes a novel SM topology based on the combinational power circuit. It consists of three circuits: the half-bridge circuit, clamping circuit and energy-transfer circuit. It overcomes the shoot-through problem using the impedance-source network. The fluctuation of SM capacitor voltages can be controlled by the hysteresis control strategy in each SM. The SMs are self-balanced by making the fluctuation of each SM capacitor voltage consistent. The circulating harmonic current can be small even without any circulating current suppression strategy (CCSS). Without the need for voltage balancing control and CCSS, it greatly reduces the computation load. Finally, a five-level single-phase experimental platform is established to verify the feasibility of MMC based on the proposed SM topology.
机译:模块化多电平转换器(MMC)中子模块(SM)的上下电源开关可能会因干扰而同时打开,这可能会破坏SM电路并损坏MMC。为了提高可靠性,本文提出了一种基于组合电源电路的新型SM拓扑。它由三个电路组成:半桥电路,钳位电路和能量传输电路。它克服了使用阻抗源网络的直通问题。可以通过每个SM中的磁滞控制策略来控制SM电容器电压的波动。通过使每个SM电容器电压的波动保持一致,SM可以自平衡。即使没有任何循环电流抑制策略(CCSS),循环谐波电流也可能很小。无需电压平衡控制和CCSS,可大大减轻计算负担。最后,建立了一个五级单相实验平台,以基于提出的SM拓扑验证MMC的可行性。

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