Evaluation of motor-drive segmentation strategies for fault-tolerance

M. Rottach, C. Gerada, P. Wheeler
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引用次数: 7

Abstract

High availability and safety is a major concern for many actuation applications. Fault-tolerant electrical machines and power converters help achieving this goal but component overrating and system complexity have to be minimised for favourable system designs. This paper will assess several segmentation strategies of fault-tolerant permanent magnet machines on the example of an aerospace actuation system and examine the impacts on system weight and complexity. Considerable detail will be presented on the integration of multi 3-phase machine units in a common motor housing alongside with a detailed comparison between axial and circumferential segmentation, which to the knowledge of the authors has not been published before. A helicopter primary flight control actuation application is used to compare segmentation strategies. Initial results suggest that circumferential machine segmentation and a single layer concentrated winding arrangement are most suitable for applications with a high level of required fault tolerance and high peak to rated torque and speed ratio.
电机驱动容错分割策略的评价
高可用性和安全性是许多驱动应用的主要关注点。容错电机和电源转换器有助于实现这一目标,但为了有利的系统设计,必须将组件高估和系统复杂性降至最低。本文将以航空航天作动系统为例,评估容错永磁电机的几种分割策略,并考察其对系统权重和复杂性的影响。相当详细的将介绍在一个共同的电机外壳与轴向和圆周分割之间的详细比较,这对作者的知识尚未发表之前的集成多三相机单元。利用一个直升机主飞控制驱动应用程序对分割策略进行了比较。初步结果表明,机器的圆周分段和单层集中绕组排列最适合要求高容错性和高峰值额定转矩和速比的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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