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Hybrid Railway Traction Power Quality Compensator for power rating reduction of converters

机译:混合动力铁路牵引电力质量补偿器,用于降低变频器的额定功率

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AC electrified railway traction loads create a lot of problems related to power quality due to their non-linear nature and being single-phase, such as significant amount of Negative Sequence Current (NSC), low power factor, harmonic injection, reactive power consumption, etc. In order to solve above problems, a Hybrid Railway Traction Power Quality Compensator (HRTPQC) based on a Railway Power Conditioner (RPC) and two Static VAR Compensators (SVCs) is proposed in this paper. The HRTPQC will significantly reduce the initial investment cost of compensation system and converters rating of the RPC. The RPC is only used to balance active powers of two adjacent feeder sections and suppress harmonic currents. The SVCs are applied to compensate reactive power and suppress the third and fifth harmonic currents. In this paper firstly, the principle of power quality compensation is analyzed step by step. Then, the control strategies for SVC and RPC are presented. Finally, a simulation carried out using Matlab/Simulink software to demonstrate the effectiveness and correctness of the HRTPQC and compensation strategy and also show that the HRTPQC could compensate all power quality problems.
机译:交流电气化铁路牵引负载由于其非线性特性和单相特性而产生了许多与电能质量相关的问题,例如,大量的负序电流(NSC),低功率因数,谐波注入,无功功耗,为了解决上述问题,本文提出了一种基于铁路动力调节器(RPC)和两个静态无功补偿器(SVC)的混合式铁路牵引电能质量补偿器(HRTPQC)。 HRTPQC将显着降低RPC的补偿系统和转换器等级的初始投资成本。 RPC仅用于平衡两个相邻馈线部分的有功功率并抑制谐波电流。 SVC用于补偿无功功率并抑制三次谐波电流和五次谐波电流。本文首先对电能质量补偿的原理进行了逐步分析。然后,提出了SVC和RPC的控制策略。最后,使用Matlab / Simulink软件进行了仿真,以证明HRTPQC和补偿策略的有效性和正确性,还表明HRTPQC可以补偿所有电能质量问题。

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