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Performance study of combined test rig for metro train traction

机译:地铁牵引联合试验台性能研究。

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This paper deals with a combined test rig for a traction system in the laboratory environment. An experimental system was designed and implemented to verify the performance of the traction system for a metro train. For a highly accurate control of the system, a hybrid control algorithm combining vector control and slip frequency control was applied to control the traction inverter. The design method of the flywheels, which represent the equivalent model of the train moment inertia, was elaborated. A train runtime diagnosis system was completed by adopting the multifunction vehicle bus (MVB) protocol. The dynamic performance of the metro power traction system was emulated under the control of the train runtime diagnosis system. Using the combined test rig, the performances of the traction system in traction, braking, temperature rise, etc., were verified through traction and breaking experiments.
机译:本文介绍了一种用于实验室环境中的牵引系统的组合测试台。设计并实施了一个实验系统,以验证地铁列车牵引系统的性能。为了对系统进行高精度控制,将矢量控制和滑差频率控制相结合的混合控制算法用于控制牵引逆变器。阐述了代表轮矩惯性等效模型的飞轮的设计方法。通过采用多功能车辆总线(MVB)协议,完成了列车运行时间诊断系统。在列车运行时间诊断系统的控制下,模拟了地铁动力牵引系统的动态性能。通过组合试验台,通过牵引和断裂试验验证了牵引系统在牵引,制动,温升等方面的性能。

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