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Control of voltage source converter based multi-terminal DC grid under DC fault operating condition

机译:基于DC故障操作条件下基于电压源转换器的多端子直流电网的控制

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Recently, Voltage Source Converter (VSC) based Multi-Terminal DC (MTDC) transmission systems have gained more attention. Compared to current source converter technology, voltage source converters have several benefits including higher power quality, lower power transmission losses, and higher voltage capability. Flexibility in bidirectional power flow control is the main advantage of voltage source converters in large scale MTDC power transmission systems. However, VSC based MTDC transmission systems are vulnerable to DC side fault, and expensive DC circuit breakers are required to protect them against DC fault. This paper proposes a control method of a dc fault resilient voltage source converter that has ultra-fast electronic isolation capability following dc fault which can be protected against dc fault without using expensive DC circuit breakers. In this paper, the control scheme of MTDC grid based on droop control method with dead-band controller is proposed. The appropriate control algorithm of VSC based MTDC transmission system for DC fault operation and recovery after DC fault is also proposed. Finally, PSCAD simulation results are presented to evaluate the dynamic performance of VSC based MTDC grid with the proposed control algorithm under DC fault operating condition.
机译:最近,基于电压源转换器(VSC)的多终端DC(MTDC)传输系统获得了更多的关注。与电流源转换器技术相比,电压源转换器具有多种优势,包括较高的功率质量,较低的电力传输损耗和更高的电压能力。双向动力流量控制的灵活性是大规模MTDC电力传输系统中电压源转换器的主要优点。然而,基于VSC的MTDC传输系统容易受到直流侧故障的影响,并且需要昂贵的直流断路器来保护它们免受DC故障。本文提出了一种DC故障弹性电压源转换器的控制方法,其在直流故障之后具有超快速的电子隔离能力,可以防止直流故障而不使用昂贵的直流断路器。本文提出了基于D防震控制方法的MTDC网格的控制方案。还提出了适当的基于VSC的MTDC传输系统的适当控制算法及DC故障后的DC故障操作和恢复。最后,提出了PSCAD仿真结果,以评估VSC基于MTDC网格的动态性能与DC故障操作条件下提出的控制算法。

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