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A Fault-Tolerant Permanent-Magnet Traction Module for Subway Applications

机译:地铁应用中的容错永磁牵引模块

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摘要

A fault-tolerant permanent-magnet traction module is proposed for subway application, which has three different operation modes: normal, isolation, and fault-tolerant mode. In normal mode, 2 three-phase permanent-magnet synchronous machines (PMSMs) are controlled by 2 three-leg voltage-source inverters (VSIs), respectively. The proposed module can output maximum torque and reach the maximum velocity. When one leg fails, the corresponding PMSM is isolated from the fault VSI and the fault subway train operates in isolation mode, in which the traction effort is reduced but the maximum velocity can be maintained under light load. However, the fault subway train will stop if the load is heavy. To avoid the stop, the fault subway train is switched into fault-tolerant mode, in which the healthy VSI and fault VSI are reconfigured to 1 five-leg VSI by a fault-tolerant bridge. Due to lower phase–phase voltage apportionment ratio, the fault-tolerant mode is not used until the velocity is decreased to half of the maximum velocity. In fault-tolerant mode, the nonadjacent selection principle is proposed to prevent the common leg from overcurrent damage. The subway train equipped with the proposed module can maintain basic operation performances if any leg fails. The performances are analyzed and the effectiveness is verified by experimental results.
机译:提出了一种用于地铁应用的容错永磁牵引模块,该模块具有三种不同的运行模式:正常,隔离和容错模式。在正常模式下,2个三相永磁同步电机(PMSM)分别由2个三臂电压源逆变器(VSI)控制。建议的模块可以输出最大扭矩并达到最大速度。当一条腿出现故障时,相应的PMSM与故障VSI隔离,并且故障地铁列车以隔离模式运行,在这种模式下,牵引力有所降低,但在轻载下仍可以保持最大速度。但是,如果负载很重,则故障地铁列车将停止。为了避免停车,将故障地铁列车切换到容错模式,在该模式下,通过容错桥将健康的VSI和故障VSI重新配置为1个五段式VSI。由于较低的相间电压分配比,直到速度降低到最大速度的一半时才使用容错模式。在容错模式下,提出了不相邻的选择原理,以防止普通支路受到过流损坏。如果任何一条支路出现故障,配备有建议模块的地铁列车都可以保持基本的运行性能。对性能进行了分析,并通过实验结果验证了有效性。

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