城市轨道交通牵引供电系统双向变流装置设置方案研究

Research on the Bidirectional Converter Setting Scheme for Urban Rail Transit Traction Power Supply System

  • 摘要:
    目的 双向变流技术是城市轨道交通牵引供电智能化、绿色化应用技术研究的重要方向。由于双向变流装置与整流机组的外特性存在差异,需要开展相关研究,优化双向变流装置应用方案,以提高二者为牵引网供电的匹配性。
    方法 基于现行设计规范,给出了适用于双向变流装置的标准工作制选取方法,确定了设置双向变流装置的牵引变电所的设备容量配置原则。提出了“1+1”模式与“1+2”模式的双向变流装置设置方案,并从供电可靠性、谐波含量的角度提出并分析了不同主接线方案及其适用场景。以某城市轨道交通线路为例,合理选取了含双向变流装置的牵引变电所设备容量及主接线方案,并对该线路进行了仿真计算。根据仿真结果,对“1+2”模式的双向变流装置设置方案与传统整流机组设置方案开展技术经济比较。
    结果及结论 牵引供电系统设置双向变流装置能够提高列车再生制动能量利用水平,同时减少牵引网电能损耗,进而在使用周期内大幅降低电费支出,减少运维成本。

     

    Abstract:
    Objective Bidirectional converter technology is an important direction in the application technology research of intelligent and green urban rail transit traction power supply. Due to the differences in external characteristics of bidirectio-nal converter devices and rectifier units, it is necessary to carry out relevant research and optimize the application scheme of bidirectional converter devices, thereby improving the matching performance of power supply to the traction network between the two.
    Method Based on the current design specifications, a standard working system selection method applicable to bidirectional converter devices is proposed, and an equipment capacity configuration principle for traction substations with bidirectional converter devices is determined. Then, the '1+1' mode and '1+2' mode configuration schemes for bidirectional converter devices are put forward. Different main wiring schemes and their applicable scenarios are proposed and analyzed from the perspectives of power supply reliability and harmonic content. Taking a certain urban rail transit line as an example, the equipment capacity and main wiring scheme of the traction substation with bidirectional converter devices are reasonably selected, and simulation calculations are carried out for the line. Based on the simulation results, a technical and economic comparison is conducted between the '1+2' mode confi-guration scheme of bidirectional converter devices and the traditional rectifier unit configuration scheme.
    Result & Conclusion The installation of bidirectional converter devices in the traction power supply system can enhance the utilization level of train regenerative braking energy, reduce electric energy loss of the catenary. Furthermore, it can significantly reduce electricity expenses during the service life, thereby reducing operation and maintenance costs.

     

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