一种适合城市轨道交通列车通过第三轨断电区的牵引与辅助系统

A Traction and Auxiliary System Suitable for Urban Rail Transit Train Passing through the Third-rail Outrage Zone

  • 摘要:
    目的 传统第三轨受流轨道交通车辆在通过断电区时,高压母线可能导致断电区意外带电,存在安全隐患。因此,有必要设计一种新型的牵引与辅助系统,解决第三轨断电区通过高压母线意外得电的风险,同时提高辅助系统可用性,降低车辆配置成本。
    方法 提出了一种新型的牵引与辅助系统方案,该方案取消了传统设计中的高压母线,避免第三轨断电区意外得电的风险;采用轨道间隙探测电流传感器来探测第三轨断电区,当列车进入断电区时,牵引电机作为发电机将动能转换为电能,通过一条馈线为辅助逆变器提供电能,从而解决了辅助逆变器在列车通过断电区时不能正常工作的问题。
    结果及结论 新型牵引与辅助系统方案可以通过对列车传统电路进行简易改造实现,通过取消高压母线,彻底消除第三轨断电区意外得电的安全隐患,保障运营和检修人员安全;同时辅助逆变器在断电区可正常持续工作,避免了传统方案中因断电导致的系统关断问题,提高了辅助系统的可用性,降低了车辆的配置成本。

     

    Abstract:
    Objective When a traditional third-rail power collection rail transit train passing through outrage zones, the high-voltage busbar may lead to unintended electrification of the zone, posing safety risks. Therefore, it is necessary to design a new type of traction and auxiliary system to mitigate the risk of high-voltage busbar unintended electrification in third-rail outrage zones, while improving auxiliary system availability and reducing vehicle configuration costs.
    Method A new traction and auxiliary system scheme is proposed, in which the high-voltage busbar in traditional design is eliminated to avoid the risk of unintended electrification in third-rail outrage zones. A current sensor for track gap detection is used to identify the third-rail outrage zone. When the train enters the outrage zone, the traction motor functions as a generator to convert kinetic energy into electrical energy, which is supplied via a feeder line to the auxiliary inverter. This resolves the problem of the auxiliary inverter failing to operate normally when the train passes through an outrage zone.
    Result & Conclusion The new traction and auxiliary system scheme can be implemented through simple modifications to the traditional circuits of the train. By eliminating the high-voltage busbar, the safety risk of unintended electrification in third-rail outrage zones is completely eradicated, ensuring the safety of operation and maintenance personnel. Meanwhile, the auxiliary inverter can continue to operate normally in outrage zones, avoiding system shutdowns caused by power interruptions in traditional schemes, enhancing the availability of the auxiliary system and reducing vehicle configuration costs.

     

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