机电能量转换的定性方法:重塑可调速驱动器的设计艺术

B. Fahimi
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引用次数: 14

摘要

近年来,大量的研究工作致力于电力电子技术的发展,以增强对电力驱动的控制。传统的驱动器分析和控制通常基于广义系统模型,其中平均转矩与相电流之间的关系是解析建立的。然而,所应用的控制方案对合成径向力分量和力的几何分布的影响并没有由这些模型提供。本文提出了一种新的磁场重建方法,以实现对驱动器的精确建模,该方法包括描述机器电磁行为的解析表达式。这是从电磁角度对电驱动进行数值分析和性能评价的理想技术。由于有限元分析(FEA)只需要执行一次,因此产生所需结果所涉及的成本和时间大大减少。本文使用三相永磁同步电机来说明原理证明。然而,这个概念可以扩展到任何已知几何形状的机器类型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Qualitative approach to electromechanical energy conversion: Reinventing the art of design in adjustable speed drives
In recent years, considerable research efforts have been devoted to the development of power electronics for enhanced control of electric drives. Traditional analysis and control of a drive is often based on a generalized system model, wherein a relationship between the average torque and phase current is established analytically. However effects of the applied control scheme on the resultant radial force components and geometrical distribution of forces are not provided by these models. This paper presents a novel field reconstruction approach towards the accurate modeling of the drive which includes an analytical expression describing the electromagnetic behavior of the machine. This is an ideal technique for the numerical analysis and performance evaluation of an electric drive from an electromagnetic perspective. Since finite element analysis (FEA) only needs to be performed once, the cost and time involved in generating the desired results are dramatically reduced This paper uses a 3-phase PMSM to illustrate the proof of principle. However the concept can be extended to any machine type with a known geometry.
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