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Electromagnetic hybrid compensation method of three-phase unbalance for high-speed railway traction supply system

机译:高速铁路牵引供电系统三相不平衡电磁混合补偿方法

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摘要

For power quality in V/V traction system of the high-speed railway, a kind of electromagnetic hybrid compensation system (EHCS) is proposed. The EHCS is constituted by small-capacity railway static power conditioner (RPC) and high-capacity magnetic static var compensation (MSVC). By utilizing the transient power transfer capability of RPC reasonably, EHSC overcomes the problem of high installation capacity in the traditional SVC compensation system. Because RPC is completely autonomous and disconnected from MSVC, the reliability of EHCS is improved. Under the premise of meeting corresponding standard requirement of power quality, the mathematical model for hybrid compensation method is proposed and further optimized to make the compensating capacity of MSVC smaller. The simulation and experimental results verify that hybrid optimized compensation method can limit the negative-sequence current and power factor within the desired bounds efficiently.
机译:针对高速铁路V / V牵引系统的电能质量,提出了一种电磁混合补偿系统(EHCS)。 EHCS由小容量铁路静态功率调节器(RPC)和大容量磁静态无功补偿(MSVC)组成。通过合理利用RPC的瞬态功率传输能力,EHSC克服了传统SVC补偿系统中高安装容量的问题。由于RPC是完全自主的并且与MSVC断开连接,因此提高了EHCS的可靠性。在满足电能质量标准要求的前提下,提出了混合补偿方法的数学模型,并对其进行了进一步优化,以减小MSVC的补偿能力。仿真和实验结果验证了混合优化补偿方法可以有效地将负序电流和功率因数限制在所需范围内。

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