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Control and performance analysis methodology for scale-up of MMC submodules for back-to-back HVDC applications

机译:用于倒退HVDC应用的MMC子模块扩大的控制和性能分析方法

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The modular multilevel converter (MMC) is a promising topology for both Medium Voltage (MV) and High Voltage Direct Current (HVDC) applications. The MMC employs a large number of “submodule” (SM) cascaded in series per phase arm to achieve the MV- or HVDC voltage. The SM numbers per phase arm can be as high as 256 or 512 SMs for +/? 300kV DC bus voltage for typical 300–600MW Back-to-Back (B2B) and also point to point HVDC applications. The MMC AC side interface voltage Total Harmonics Distortion (THD) requirements are normally < 3% which can be achieved by 48-pulse stepped AC waveform. This paper addresses the first step towards scale-up control and performance analysis such that the behavior of a large number of SMs can be predicted by a cumulative set of a smaller number of SMs. The SM capacitor voltage control is analyzed for scale-up of MMC. Simulation results of B2B HVDC application based MMC system with minimum values of MMC components (SMs capacitors and arms inductors) based on a parametric search are performed using Real Time Digital Simulator (RTDS) system.
机译:模块化多电平转换器(MMC)是中压(MV)和高压直流(HVDC)应用的有前途拓扑。 MMC采用大量的“子模块”(SM)在每个相臂串联级联,以实现MV或HVDC电压。每相臂的SM数字可以高达256或512短信用于+ /? 300kV直流母线电压为典型的300-600MW背对背(B2B),也指向点HVDC应用。 MMC AC侧接口电压总谐波失真(THD)要求通常是<3%,其可以通过48脉冲阶梯式交流波形实现。本文解决了扩展控制和性能分析的第一步,使得可以通过较少数量的SMS累积集来预测大量SMS的行为。分析SM电容器电压控制以用于MMC的扩展。基于B2B HVDC应用的MMC系统基于MMC组件的最小值(SMS电容器和臂电感器)的MMC系统的仿真结果是使用实时数字模拟器(RTDS)系统进行参数搜索的。

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