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Hybrid cascaded modular multilevel converter with DC fault ride-through capability for HVDC transmission system

机译:具有直流故障穿越能力的混合级联模块化多电平转换器,用于高压直流输电系统

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摘要

A new hybrid cascaded modular multilevel converter for high-voltage dc (HVDC) transmission system is presented. The half-bridge (HB) cells are used on the main power stage and the cascade full-bridge (FB) cells are connected to its ac terminals. The main power stage generates the fundamental voltages with quite low switching frequency, resulting relatively low losses. The cascaded FB cells only attenuate the harmonics generated by the main power stage, without contribution to the power transfer. Thus, the energy storage requirement of the cascaded FB cells is low and the capacitance of FB cells is reduced significantly. Due to the dc fault reverse blocking capability of the cascaded FB cells, the proposed topology can ride-through the pole-to-pole dc fault. In addition the soft restart is achieved after the fault eliminates, without exposing the system to significant inrush current. Besides, the average-value model of the proposed topology is derived, based on which the control strategy is presented. The results show the feasibility of the proposed converter.
机译:提出了一种用于高压直流(HVDC)输电系统的新型混合级联模块化多电平转换器。半桥(HB)电池用于主功率级,级联全桥(FB)电池连接至其交流端子。主功率级产生具有相当低开关频率的基波电压,从而导致相对较低的损耗。级联的FB单元仅衰减主功率级产生的谐波,而无助于功率传输。因此,级联FB单元的能量存储需求低并且FB单元的电容显着减小。由于级联FB单元具有直流故障反向阻断功能,因此建议的拓扑可以穿越极点到直流故障。此外,在故障消除后即可实现软重启,而不会使系统承受大量浪涌电流。此外,推导了所提出拓扑的平均值模型,并在此模型的基础上提出了控制策略。结果表明了该转换器的可行性。

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