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Efficient modeling of an MMC-based multiterminal DC system employing hybrid HVDC breakers

机译:基于HMC混合断路器的基于MMC的多端子DC系统的高效建模

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Summary form only given. The feasibility of future multiterminal dc (MTDC) systems depends largely on the capability to withstand dc-side faults. Simulation models of MTDC systems play a very important role in investigating these faults. For such studies, the test system needs to be accurate and computationally efficient. This paper proposes a detailed equivalent model of the modular multilevel converter (MMC), which is used to develop the MTDC test system. The proposed model is capable of representing the blocked-mode operation of the MMC, and can be used to study the balancing control of the capacitor voltages. In addition, the operation of the MMC when redundant submodules are included in the arms can also be studied. A simplified model of a hybrid high-voltage dc (HVDC) breaker is also developed. Hence, the developed test system is capable of accurately describing the behavior of the MMC-based MTDC system employing hybrid HVDC breakers, during fault conditions. Using time-domain simulations, permanent dc-side faults are studied in the MTDC system. In addition, a scheme to control the fault current through the MMC using thyristors on the ac-side of the converter is proposed.
机译:仅提供摘要表格。未来的多端子直流(MTDC)系统的可行性在很大程度上取决于承受直流侧故障的能力。 MTDC系统的仿真模型在调查这些故障中起着非常重要的作用。对于此类研究,测试系统需要准确且计算效率高。本文提出了模块化多电平转换器(MMC)的详细等效模型,用于开发MTDC测试系统。所提出的模型能够代表MMC的阻塞模式操作,并可用于研究电容器电压的平衡控制。此外,还可以研究臂中包含冗余子模块时MMC的操作。还开发了混合高压直流(HVDC)断路器的简化模型。因此,在故障情况下,开发的测试系统能够准确地描述采用混合HVDC断路器的基于MMC的MTDC系统的行为。使用时域仿真,在MTDC系统中研究了永久性直流侧故障。此外,提出了一种使用转换器交流侧的晶闸管来控制通过MMC的故障电流的方案。

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