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New generation traction power supply system and its key technologies for electrified railways

机译:电气化铁路新一代牵引供电系统及其关键技术

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Unlike the traditional traction power supply system which enables the electrified railway traction substation to be connected to power grid in a way of phase rotation, a new generation traction power supply system without phase splits is proposed in this paper. Three key techniques used in this system have been discussed. First, a combined co-phase traction power supply system is applied at traction substations for compensating negative sequence current and eliminating phase splits at exits of substations; design method and procedure for this system are presented. Second, a new bilateral traction power supply technology is proposed to eliminate the phase split at section post and reduce the influence of equalizing current on the power grid. Meanwhile, power factor should be adjusted to ensure a proper voltage level of the traction network. Third, a segmental power supply technology of traction network is used to divide the power supply arms into several segments, and the synchronous measurement and control technology is applied to diagnose faults and their locations quickly and accurately. Thus, the fault impact can be limited to a minimum degree. In addition, the economy and reliability of the new generation traction power supply system are analyzed.
机译:与传统的电力牵引牵引变电所能够以相位旋转的方式连接到电网的传统牵引电力供应系统不同,本文提出了一种无相分离的新一代牵引电力供应系统。讨论了该系统中使用的三种关键技术。首先,在牵引变电站中采用组合式同相牵引供电系统,以补偿负序电流并消除变电站出口处的相分离。介绍了该系统的设计方法和程序。其次,提出了一种新的双边牵引供电技术,以消除路段桩柱的相分离,减少均衡电流对电网的影响。同时,应调整功率因数以确保牵引网络的电压水平合适。第三,采用牵引网分段供电技术,将供电臂分为几部分,采用同步测控技术快速,准确地诊断故障及其位置。因此,可以将故障影响限制在最小程度。此外,还分析了新一代牵引电源系统的经济性和可靠性。

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