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Voltage sources in 2D fourier-based analytical models of electric machines

机译:基于2D傅立叶的电机分析模型中的电压源

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摘要

The importance of extensive optimizations during the design of electric machines entails a need for fast and accurate simulation tools. For that reason, Fourier-based analytical models have gained a lot of popularity. The problem, however, is that these models typically require a current density as input. This is in contrast with the fact that the great majority of modern drive trains are powered with the help of a pulse-width modulated voltage-source inverter. To overcome that mismatch, this paper presents a coupling of classical Fourier-based models with the equation for the terminal voltage of an electric machine, a technique that is well known in finite-element modeling but has not yet been translated to Fourier-based analytical models. Both a very general discussion of the technique and a specific example are discussed. The presented work is validated with the help of a finite-element model. A very good accuracy is obtained.
机译:在电机设计过程中进行广泛优化的重要性需要快速而准确的仿真工具。因此,基于傅立叶的分析模型已广受欢迎。然而,问题在于这些模型通常需要电流密度作为输入。这与以下事实相反:绝大多数现代传动系统都借助脉宽调制电压源逆变器供电。为了克服这种不匹配,本文提出了一种基于经典傅立叶模型与电机端电压方程的耦合方法,这种技术在有限元建模中是众所周知的,但尚未转化为基于傅立叶的分析方法。楷模。讨论了该技术的非常笼统的讨论和一个特定的示例。所提出的工作在有限元模型的帮助下得到了验证。获得了非常好的精度。

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