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Comparison of vibration and magnetic force behaviours between different switched reluctance machine topologies

机译:不同开关磁阻电机拓扑之间振动和磁力行为的比较

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Switched reluctance machines (SRM) are widely accepted to have higher acoustic noise emissions than other machine technologies. Their acoustic noise becomes a crucial drawback for their penetration into the many applications which are noise and vibration sensitive. The poor sound quality of SRMs results from vibration of the stator structure, caused by excitation of high magnetic radial forces in the air-gap. Loud noise occurs when the radial forces on the stator pole excite natural frequencies of the stator structure, leading to high stator vibration. This paper compares and investigates the magnetic force, mechanical vibration and acoustic noise behaviours using a multi-physics analysis of different SRM topologies: I) A 12/8 conventional SRM, II) A 12/8 segmental rotor SRM and III) A 12/10 single-tooth wound segmental rotor SRM. The magnetic force densities which are the major source of vibration are calculated by 2D magnetic Finite-Element (FE) simulation at the same output power. These force densities are applied as input to the 3D structural FE simulation to calculate the vibration motions, and to predict the acceleration, velocity and deformation of the SRM structure. The acoustic noise emission is computed by 3D Boundary Element Method (BEM) using the vibration data results obtained by 3D structural FE. The simulation results for the SRM topologies are compared and discussed.
机译:开关磁阻电机(SRM)具有比其他电机技术更高的声噪声发射。它们的声学噪声成为其渗透到对噪声和振动敏感的许多应用中的关键缺点。 SRM的声音质量较差是由定子结构的振动引起的,该振动是由气隙中的高磁径向力的激发引起的。当作用在定子磁极上的径向力激发定子结构的固有频率时,会产生很大的噪音,从而导致较高的定子振动。本文通过对不同SRM拓扑的多物理场分析来比较和研究磁力,机械振动和声噪声行为:I)12/8常规SRM,II)12/8分段转子SRM和III)A 12 / 10个单齿缠绕分段转子SRM。通过2D磁性有限元(FE)模拟,以相同的输出功率计算出作为振动主要来源的磁力密度。这些力密度被用作3D结构有限元模拟的输入,以计算振动运动,并预测SRM结构的加速度,速度和变形。使用3D结构FE获得的振动数据结果,通过3D边界元法(BEM)计算声发射。比较并讨论了SRM拓扑的仿真结果。

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