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A Procedure for Practical Prognostics and Health Monitoring of Fully Electric Vehicles for Enhanced Safety and Reliability

机译:用于完全电动汽车的实际预测和健康监测的程序,提高安全性和可靠性

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Fully Electric Vehicles (FEVs) for mass production present new challenges for automotive manufacturers. In particular, the relative immaturity of new building blocks such as motors and control components may have an impact on the safety and reliability of FEVs. In this context, one of the main objectives of the European FP7 Electrical Powertrain Health Monitoring for Increased Safety of FEVs (HEMIS) project is to design a Prognostic and Health Management System (PHMS), aiming to increasing the safety and availability of FEVs. This paper describes the practical procedures used to identify the most critical degradation mechanisms which can occur in FEV components, and for the development and verification of the PHMS algorithms. The analysis is focused on two of the most critical components: the Permanent Magnet Synchronous Machine (PMSM), and the FEV control capacitor.
机译:批量生产的全电动汽车(FEV)为汽车制造商提供了新的挑战。 特别地,新的构件块如电动机和控制部件的相对不成熟可能对FEV的安全性和可靠性产生影响。 在这种情况下,欧洲FP7电动动力总成的主要目标之一是FEVS(HEMIS)项目安全性增加的健康监测是设计预后和健康管理系统(PHMS),旨在提高FEV的安全性和可用性。 本文介绍了用于识别在FEV组件中可能发生的最临界降解机制的实用程序,以及用于PHMS算法的开发和验证。 分析专注于两个最关键的组件:永磁同步机(PMSM)和FEV控制电容。

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