无铁机器设计和新颖的数字控制汽车应用

I. Stamenkovic, N. Milivojević, M. Krishnamurthy, N. Schofield, A. Emadi
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引用次数: 3

摘要

永磁无刷直流电机通常用于汽车应用,因为它们固有的高效率,功率密度,可靠性和低维护。然而,为了获得上述应用程序的高性能,整个硬件系统可能非常复杂和昂贵。本文提出了一种可用于轮毂牵引机和集成起动机/交流发电机(ISA)的无铁电机设计,采用一种新颖的四象限电机运行数字控制策略进行控制。机器设计适合不同的车轮半径,功率密度可扩展。它不需要铁,所以可以使用复合材料,这是传统机器的局限性之一。此外,还提出了一种低成本的数字控制策略,可以单独使用,也可以作为更复杂控制方案的子系统。对于不需要高度速度精度的应用,当变速命令应用于机器的轴时,所提出的控制策略显示出更快的响应。该方案的实现也比汽车应用中使用的大多数现有方法简单得多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ironless machine design and novel digital control for automotive applications
Permanent magnet brushless DC machines are commonly used for automotive applications because of their inherently high efficiency, power density, reliability and low maintenance. However, in order to obtain high performance for mentioned applications, the overall hardware system can be very complex and costly. This paper presents an ironless machine design that can be used for in-wheel traction machines as well as for Integrated Starter/Alternators (ISA), controlled by a novel digital control strategy for 4-quadrant machine operation. Machine design is suitable for different radius of the wheel and is scalable in terms of power density. It does not require iron, so composite materials can be used, which was one of the limitations with conventional machine. In addition, a low-cost digital control strategy has been presented that can be used by itself, or as a subsystem of a more complex control scheme. For applications that do not require a high degree of speed accuracy, the proposed control strategy shows faster response when variable speed command is applied to the shaft of the machine. The implementation of this scheme is also much simpler than most existing methods used in automotive applications.
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