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Unit-wave response-based computation of magnetic noise of electric machines

机译:基于单位波响应的电机磁噪声计算

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The demands on modern electrical machines are continuously increasing. Electrical motors are more frequently used in variable-speed drives and thus their operation at resonant speeds has become a critical aspect, together with the increased audible noise and vibration. This poses a challenge for electrical machinery manufacturers in the form of demanding vibration and noise performance characteristics. This fact has to be taken into account in the electrical machine design process. The simulation of the electromagnetic sound power emission of an electrical machine is a three-stage process. First, the magnetic force waves in the air gap are calculated. Then a structure-dynamical model of the electrical machine is created. At this stage, the structural response, usually the vibration velocity is calculated for the magnetic excitation forces given. Finally, the radiated sound power is calculated. The traditional sound power simulation process is numerically heavy and time consuming and thus cannot be considered as an everyday or practical approach to electrical machine design. As a result, a new approach is required in order to carry out electromagnetic sound power calculation in a realistic time frame and with realistic effort. In this paper, a simplified methodology for computation of magnetic sound power based on unit-wave responses is presented, studied, and discussed.
机译:对现代电机的需求正在不断增加。电动机更常用于变速驱动器中,因此,它们在共振速度下的运行以及增加的可听噪声和振动已成为至关重要的方面。这以要求的振动和噪声性能特征的形式对电机制造商提出了挑战。在电机设计过程中必须考虑到这一事实。电机电磁声功率发射的仿真过程分为三个阶段。首先,计算气隙中的磁力波。然后,建立电机的结构动力学模型。在此阶段,针对给定的磁激励力计算结构响应,通常是振动速度。最后,计算出辐射声功率。传统的声功率仿真过程在数字上繁重且耗时,因此不能被视为电机设计的日常或实用方法。结果,需要新的方法以在现实的时间范围内并以现实的努力进行电磁声功率计算。本文提出,研究和讨论了一种简化的基于单位波响应的磁声功率计算方法。

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