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Demagnetization monitoring and life extending control for permanent magnet-driven traction systems

机译:永磁驱动牵引系统的退磁监控和寿命控制

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摘要

This paper presents a novel scheme of demagnetization monitoring and life extending control for traction systems driven by permanent magnet synchronous motors (PMSMs). Firstly, the offline training is carried to evaluate fatigue damage of insulated gate bipolar transistors (IGBTs) under different flux loss based on first-principle modeling. Then an optimal control law can be extracted by turning down the power distribution factor of the demagnetizing PMSM until all damages of IGBTs turn to balance. Next, the similarity-based empirical modeling is employed to online estimate remaining flux of PMSMs, which is used to update the power distribution factor by referring the optimal control law for the health-oriented autonomous control. The proposed strategy can be demonstrated by a case study of traction drive system coupled with dual-PMSMs. Compared with traditional control strategy, the results show that the novel scheme can not only guarantee traction performance but also extend remaining useful life (RUL) of the system after suffering demagnetization fault.
机译:本文提出了一种由永磁同步电动机(PMSM)驱动的牵引系统的去磁监控和寿命控制的新方案。首先,基于第一性原理,进行离线训练以评估绝缘栅双极型晶体管(IGBT)在不同磁通量损耗下的疲劳损伤。然后,通过降低退磁PMSM的功率分配因子直到IGBT的所有损坏恢复平衡,可以提取出最佳控制律。接下来,基于相似性的经验模型被用于在线估计PMSM的剩余通量,该PMSM通过参考面向健康的自主控制的最优控制律来更新功率分配因子。结合双PMSM的牵引驱动系统的案例研究可以证明所提出的策略。结果表明,与传统控制策略相比,该方案不仅可以保证牵引性能,而且还可以延长系统退磁故障后的剩余使用寿命。

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