Scalable system simulation for electric drives

L. Kostetzer, F. Hetemi, D. Gerling
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引用次数: 1

Abstract

The present paper presents a methodology to include noise prediction into virtual prototyping of an electric drive using numerical simulation tools. Field based solutions using FEM and IFEM methods are used in order to simulate electromagnetic induced vibrations and radiated sound in a permanent magnetic motor. The key feature is on the work-flow methodology and the coupling mechanism between the three computational models: electromagnetics, structural dynamics and acoustics. Transient force density signals are integrated over geometric sectors and transformed to frequency domain to be used in the vibration analysis. The complete displacement filed at the machine housing in then used to calculate the radiated sound pressure in the environment and microphone locations.
电力驱动的可扩展系统仿真
本文提出了一种利用数值模拟工具将噪声预测纳入电力驱动虚拟样机的方法。为了模拟永磁电机中的电磁感应振动和辐射声,采用了基于场的有限元和IFEM方法。主要特点是工作流程的方法和耦合机制的三个计算模型:电磁学,结构动力学和声学。在几何扇区上对瞬态力密度信号进行积分,并将其转换为频域用于振动分析。然后利用机壳处的完全位移场计算环境和传声器位置下的辐射声压。
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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