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Autonomous health management for PMSM rail vehicles through demagnetization monitoring and prognosis control

机译:PMSM轨道车辆通过退磁监测和预后控制的自主健康管理

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摘要

Autonomous vehicles are playing an increasingly importance in support of a wide variety of critical events. This paper presents a novel autonomous health management scheme on rail vehicles driven by permanent magnet synchronous motors (PMSMs). Firstly, the PMSMs are modeled based on first principle to deduce the initial profile of pneumatic braking (p-braking) force, then which is utilized for realtime demagnetization monitoring and degradation prognosis through similarity-based theory and generate prognosis-enhanced p-braking force strategy for final optimal control. A case study is conducted to demonstrate the feasibility and benefit of using the real-time prognostics and health management (PHM) information in vehicle 'drive-brake' control automatically. The results show that accurate demagnetization monitoring, degradation prognosis, and real-time capability for control optimization can be obtained, which can effectively relieve brake shoe wear. (C) 2018 ISA. Published by Elsevier Ltd. All rights reserved.
机译:自治车辆正在越来越重要,以支持各种各样的关键事件。本文介绍了永磁同步电动机(PMSMS)驱动的轨道车辆的新型自主健康管理方案。首先,基于第一原理建模PMSM,以推断出气动制动(P制动)力的初始轮廓,然后通过相似性的理论用于实时去磁监测和降解预后,并产生预后增强的P制动力最终最佳控制的策略。进行案例研究以证明自动使用车辆“驱动制动器”控制中的实时预测和健康管理(PHM)信息的可行性和益处。结果表明,可以获得准确的退磁监测,降解预后和控制优化的实时能力,可以有效地缓解制动鞋磨损。 (c)2018 ISA。 elsevier有限公司出版。保留所有权利。

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