基于电压PAM控制策略的开关磁阻电机综合算法的设计优化

A. Deihimi
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引用次数: 2

摘要

用于变速驱动的开关磁阻电机(SRMs)的设计不可避免地受到电子变换器和控制单元主要特性的影响。其中,决定变换器拓扑结构的控制策略和门控方式对整机性能影响最大。因此,当选择的控制策略发生变化时,SRM的最优设计将会不同。这种依赖关系使设计问题复杂化,并增加了搜索空间的维度。本文考虑了电压脉冲调幅(PAM)控制策略,该策略比其他控制策略具有更高的效率和更小的转矩脉动。为了系统地解决系统的多维设计问题,本文提出了一种基于电压PAM控制策略的SRM综合算法,并介绍了如何将其应用于SRM设计优化中。此外,由于大多数应用中的驱动器在许多工作点上正常运行,因此将讨论如何在所有工作点上优化SRM设计的整体驱动器性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Novel Switched Reluctance Machine synthesis algorithm based on voltage PAM control strategy for machine design optimization
The design of Switched Reluctance Machines (SRMs) for variable speed drive applications is inevitably affected by main characteristics of electronic converter and control unit. Among these, the control strategy that dictates converter topology and gate commanding approach has the greatest impact on the machine performance. Therefore, the optimum design of the SRM will differ if the selected control strategy changes. Such a dependency complicates the design problem, and increases the search-space dimensions. The voltage Pulse Amplitude Modulation (PAM) control strategy that leads to higher efficiency and lower torque ripple than other control strategies is considered here. To systematically tackle the multidimensional design problem, the paper presents a novel SRM synthesis algorithm based on voltage PAM control strategy, and shows how to use it in SRM design optimization. Moreover, as drives in most of applications operate normally at a number of operating points, it will be addressed how to optimize the SRM design in terms of overall drive performance at all the operating points.
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