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Mechanical DC circuit breakers and FBSM-based MMCs in a high-voltage MTDC network: Coordinated operation for network riding through DC fault

机译:高压MTDC网络中的机械式DC断路器和基于FBSM的MMC:通过DC故障进行网络穿越的协调运行

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DC circuit breaker is of vital importance for security in a high voltage (HV) multi-terminal DC (MTDC) network, particularly in the HV MTDC based on voltage source converters (VSCs) that are typically based on two-level, neutral point clamed (NPC) three-level and modular multilevel. Mechanical DC circuit breaker characterized with low costs and losses has been widely used in the conventional LCC-based HV MTDC network, but cannot be directly applied in the VSC-based HV MTDC due to its slow response and limited breaking capacity. On the other hand, the technology of hybrid DC circuit breaker is immature at present, which has been demonstrated with prototype and cannot be employed in HV (≥320kV) applications in over ten years. As a result, DC circuit breaker has become an obstacle for HV MTDC development. This paper presents a kind of coordinated operation between mechanical DC breakers and full-bridge sub-module (FBSM) based MMCs to guarantee DC fault ride-through in a HV MTDC network. The proposed coordination strategy is dependent on the DC fault current controllability provided by FBSM-based MMC. Specifically, the capability of FBSM's negative level is adopted to change the common-mode component of MMC arm's reference voltage, which can restrain the fault current to the maximum operation threshold of mechanical DC circuit breaker. This scheme can reduce the demand of breaking capacity and response time for mechanical DC circuit breaker, which thus shows great potential in the applications of HV MMC-based MTDC network. The effectiveness and validity of the coordinated operation is verified by simulation results.
机译:直流断路器对于高压(HV)多端子DC(MTDC)网络中的安全至关重要,特别是在基于电压源转换器(VSC)的HV MTDC中,该电压源通常基于两级中性点保护(NPC)三级和模块化多级。机械直流断路器具有低成本和低损耗的特点,已广泛用于常规的基于LCC的HV MTDC网络,但由于其响应速度慢和分断能力有限,因此无法直接应用于基于VSC的HV MTDC。另一方面,混合直流断路器技术目前还不成熟,已经通过原型进行了证明,并且在超过十年的高压(≥320kV)应用中无法使用。结果,直流断路器已成为HV MTDC发展的障碍。本文提出了一种机械式直流断路器与基于全桥子模块(FBSM)的MMC之间的协调操作,以确保HV MTDC网络中的直流故障穿越。所提出的协调策略取决于基于FBSM的MMC提供的DC故障电流可控性。具体来说,采用FBSM的负电平能力来改变MMC臂参考电压的共模分量,从而可以将故障电流限制在机械式直流断路器的最大操作阈值上。该方案可以减少对机械式直流断路器的分断能力和响应时间的需求,因此在基于HV MMC的MTDC网络的应用中显示出巨大的潜力。仿真结果验证了协同作战的有效性和有效性。

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