An algebraic approach to determine the current supply in a faulty 5-phase PM BLDC drive. Part I - model setup and its application to the case of one open phase fault

S. Garlapati, G. Buja, A. Tessarolo
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引用次数: 4

Abstract

This paper (Part I), together with a companion one (Part II), deals with the fault-tolerant operation of a 5-phase permanent magnet (PM) brushless DC (BLDC) drive. In particular, this paper proposes an algebraic approach to set up a model of the motor current supply in healthy conditions. Afterwards, a faulty drive is considered with one or more open phases and, by constraining the proposed model with fault-specific conditions, scheduling and magnitude of the currents in the surviving phases are determined automatically as well as the maximum magnitude of the currents and the maximum torque developed by the motor. At last, the paper applies the model to the case of a drive with one open phase fault. In the companion paper the model is applied to the cases of more-than-one open phase faults.
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确定故障5相永磁无刷直流驱动器中电流供应的代数方法。第一部分,模型的建立及其在单相断相故障中的应用
本文(第一部分)与配套的一篇(第二部分)讨论了五相永磁无刷直流(BLDC)驱动器的容错操作。特别地,本文提出了一种代数方法来建立电机在健康状态下的电流供应模型。然后,将故障驱动器考虑为一个或多个开相,并通过使用故障特定条件约束所提出的模型,自动确定剩余相位中电流的调度和大小以及电流的最大大小和电机产生的最大转矩。最后,本文将该模型应用于单相断相变频器的故障分析。本文将该模型应用于多个开相故障的情况。
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