Effect of the closed-loop control on the diagnosis of rotor demagnetization in five-phase surface-mounted permanent magnet generators

Y. Gritli, A. Tani, M. Mengoni, L. Zarri, G. Serra, F. Filippetti, D. Casadei
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引用次数: 6

Abstract

Multiphase permanent-magnet generators are an attractive alternative for a variety of emerging applications owing to their reliability and dynamic performance such as hybrid traction systems. In this context, diagnosing the status of the rotor magnets is crucial for improving the reliability of the generators. The effect of the closed-loop control system cannot be neglected when the fault detection process is based on the signature analysis of electrical variables. Therefore, investigating the relevance of the bandwidth of the control system on the induced fault component is mandatory. In this paper, the detectability of the demagnetization of the rotor magnet trailing edges, due to large stator currents, in five-phase surface-mounted permanent magnet synchronous generators, is investigated. The theoretical analysis is validated by means of numerical simulations.
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闭环控制对五相表面贴装永磁发电机转子退磁诊断的影响
多相永磁发电机由于其可靠性和动态性能,如混合牵引系统,在各种新兴应用中是一个有吸引力的替代方案。在这种情况下,转子磁体的状态诊断对于提高发电机的可靠性至关重要。在基于电变量特征分析的故障检测过程中,闭环控制系统的影响是不可忽视的。因此,研究控制系统带宽与诱导故障分量的相关性是必要的。本文研究了五相面贴式永磁同步发电机由于定子电流过大而引起转子磁体尾缘退磁的可探测性。通过数值模拟验证了理论分析的正确性。
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