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Fast optimum-predictive control and capacitor voltage balancing strategy for bipolar back-to-back NPC converters in high-voltage direct current transmission systems

机译:高压直流输电系统中双极背对背NPC转换器的快速最优预测控制和电容器电压平衡策略

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摘要

Multilevel power converters have been introduced as the solution for high-power high-voltage switching applications where they have well-known advantages. Recently, full back-to-back connected multilevel neutral point diode clamped converters (NPC converter) have been used inhigh-voltage direct current (HVDC) transmission systems. Bipolar-connected back-to-back NPC converters have advantages in long-distance HVDCtransmission systems over the full back-to-back connection, but greater difficulty to balance the dc capacitor voltage divider on both sending and receiving end NPC converters. This study shows that power flow control and dc capacitor voltage balancing are feasible using fast optimum-predictive-based controllers in HVDC systems using bipolar back-to-back-connected five-level NPC multilevel converters. For both converter sides, the control strategytakes in account active and reactive power, which establishes ac grid currents in both ends, and guarantees the balancing of dc bus capacitor voltages inboth NPC converters. Additionally, the semiconductor switching frequency is minimised to reduce switching losses. The performance and robustness of the new fast predictive control strategy, and its capability to solve the DC capacitor voltage balancing problem of bipolar-connected back-to-back NPCconverters are evaluated.
机译:引入多级功率转换器作为具有众所周知优势的大功率高压开关应用的解决方案。最近,全背靠背连接的多电平中性点二极管钳位转换器(NPC转换器)已用于高压直流(HVDC)传输系统中。与长距离背靠背连接相比,双极性连接背靠背NPC转换器在远程HVDC传输系统中具有优势,但是在发送和接收端NPC转换器上平衡直流电容器分压器的难度更大。这项研究表明,在采用双极背对背连接的五电平NPC多电平转换器的HVDC系统中,使用基于快速最优预测的控制器,功率流控制和直流电容器电压平衡是可行的。对于转换器的两侧,控制策略都考虑有功和无功功率,这将在两端建立交流电网电流,并确保两个NPC转换器之间的直流总线电容器电压保持平衡。另外,半导体开关频率被最小化以减少开关损耗。评估了新的快速预测控制策略的性能和鲁棒性,以及其解决双极性背靠背NPC转换器的直流电容器电压平衡问题的能力。

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