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H-bridge modular multi-level converter: control strategy for improved DC fault ride-through capability without converter blocking

机译:H桥模块化多电平转换器:控制策略可提高直流故障穿越能力,而不会阻塞转换器

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摘要

This study presents a control scheme that separates control of the fundamental current associated with AC power control from the DC and harmonic components in the arms of the H-bridge modular multi-level converter (MMC). In addition, this control scheme fully exploits the subtractive and additive switch states of the H-bridge MMC to maintain capacitor voltage balance when the converter DC-link voltage collapses during DC faults. The significance of this control scheme is that it permits the H-bridge MMC to ride through DC faults without the need for converter blocking, as is presented in the literature. This study provides comprehensive discussion of MMC fundamental theory, including a logical mathematical derivation of the relationships that governed its operation and modulation. The validity of the presented control scheme is confirmed using simulations and experimentations. Besides DC fault survival, this study presents operating the H-bridge-MMC from bi-polar DC-link voltages; thus, creating the possibility of complex hybrid DC grids with reversible DC-link voltage where the conventional line commutated current-source converters can operate alongside voltage-source converters. Operation of the H-bridge-MMC with reversible DC-link voltage is validated using simulation.
机译:这项研究提出了一种控制方案,该方案将与交流功率控制相关的基本电流控制与H桥模块化多电平转换器(MMC)支路中的直流分量和谐波分量分开。另外,当转换器在直流故障期间直流母线电压崩溃时,该控制方案可充分利用H桥MMC的减法和加法开关状态来维持电容器电压平衡。该控制方案的意义在于,它允许H桥MMC穿越直流故障而无需转换器阻塞,如文献所述。这项研究对MMC基本理论进行了全面的讨论,包括控制其操作和调制的关系的逻辑数学推导。通过仿真和实验验证了所提出控制方案的有效性。除了直流故障幸存之外,这项研究还提出了通过双极性直流母线电压来操作H桥MMC。因此,产生了具有可逆直流母线电压的复杂混合直流电网的可能性,其中传统的线路换向电流源转换器可以与电压源转换器一起运行。通过仿真验证了具有可逆直流母线电压的H桥MMC的运行。

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