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Hybrid compensation method for traction power quality compensators in electrified railway power supply system

机译:电气化铁路电源系统中牵引电能补偿器的混合补偿方法

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In order to improve the Power Quality(PQ)of traction power supply system and reduce the power rating and operation cost of compensator,a Static VAR Compensator(SVC)integrated Railway Power Conditioner(RPC)is presented in this paper.RPC is a widely used device in the AC electrified railway systems to enhance the PQ indices of the main network.The next generation of this equipment is Active Power Quality Compensator(APQC).The major concern of these compensators is their high kVA rating.In this paper,a hybrid technique is proposed to solve aforementioned problems.A combination of SVC as an auxiliary device is employed together with the main compensators,i.e.,RPC and APQC that leads on to the reduction of power rating of the main compensators.The use of proposed scheme will cause to reduce significantly the initial investment cost of compensation system.The main compensators are only utilized to balance active powers of two adjacent feeder sections and suppress harmonic currents.The SVCs are used to compensate reactive power and suppress the third and fifth harmonic currents.In this paper firstly,the PQ compensation procedure in AC electrified railway is analyzed step by step.Then,the control strategies for SVC and the main compensators are presented.Finally,a simulation is fulfilled using Matlab/Simulink software to verify the effectiveness and validity of the proposed scheme and compensation strategy and also demonstrate that this technique could compensate all PQ problems.
机译:为了提高牵引电源系统的电力质量(PQ)并降低补偿器的功率额定值和操作成本,本文提出了一种静态VAR补偿器(SVC)集成的铁路功率调节器(RPC).RPC是广泛的AC电气化铁路系统中的使用装置来增强主网络的PQ指数。下一代该设备是有源电力质量补偿器(APQC)。这些补偿器的主要问题是他们的高kVA评级。本文提出了混合技术来解决上述问题。作为辅助装置的SVC组合与主要补偿器,即RPC和APQC一起使用,从而导致主要补偿器的额定功率降低。使用所提出的方案将使用导致显着降低补偿系统的初始投资成本。主要补偿器仅用于平衡两个相邻馈线部分的主动功率并抑制谐波电流。SVCS a RE用于补偿无功功率并抑制第三和第五谐波电流。本文首先,通过步骤分析了交流电气化铁路中的PQ补偿程序。然后,介绍了SVC的控制策略和主补偿器。最后,使用Matlab / Simulink软件满足模拟,以验证所提出的方案和补偿策略的有效性和有效性,并表明该技术可以补偿所有PQ问题。

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