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Hybrid high-voltage direct current topology with line commutated converter and modular multilevel converter in series connection suitable for bulk power overhead line transmission

机译:混合高压直流拓扑结构,具有线路换向转换器和模块化多电平转换器串联连接,适用于大功率架空线路传输

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摘要

In this study, a hybrid high-voltage direct current (HVDC) topology with line commutated converter (LCC) and modular multilevel converter (MMC) in series-connection is proposed, which is suitable for bulk power overhead line transmission. This topology is of operational flexibility in terms of active and reactive power controls, and is able to withstand ac and dc faults by the cooperative control of LCC and MMC. First, the operation principle and mathematical model are presented. Then, the control strategies for ac faults at rectifier and inverter side are discussed, which can prevent current cut-off under ac fault at rectifier side as well as maintain part of active power if commutation failure of LCC occurs under ac fault at inverter side. In addition, the feasibility on dealing with dc fault is theoretically demonstrated by analysing the characteristic of MMC under blocking state. A detailed control strategy for dc fault is further proposed combined with a test system. Finally, the effectiveness of the control strategy for ac and dc faults is verified and further compared with LCC-based HVDC topology through time-domain simulation.
机译:在这项研究中,提出了一种线性高压直流(HVDC)混合拓扑结构,其中线路换向转换器(LCC)和模块化多电平转换器(MMC)串联连接,适用于大功率架空线路传输。这种拓扑结构在有功和无功功率控制方面具有操作灵活性,并且通过LCC和MMC的协同控制能够承受交流和直流故障。首先,给出了工作原理和数学模型。然后,讨论了整流器和逆变器侧的交流故障的控制策略,该策略可以防止整流器侧的交流故障下的电流切断,并且如果逆变器侧的交流故障下发生LCC的换向故障,则可以保持一部分有功功率。另外,通过分析MMC在阻塞状态下的特性,从理论上证明了处理直流故障的可行性。结合测试系统,进一步提出了直流故障的详细控制策略。最后,验证了交流和直流故障控制策略的有效性,并通过时域仿真将其与基于LCC的HVDC拓扑进行了比较。

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