The analytical beam element model: novel approach for fast calculation of vibrations in electric machines

Author:

Gerlach Martin EnnoORCID,de Barros Allan,Huang Xudong,Langfermann Markus,Ponick Bernd,Ebrahimi Amir

Abstract

AbstractThe vibration and acoustic behavior of electric machines is an important aspect of the design process. A crucial part of the modeling is the correct prediction of the stator’s vibration behavior, characterized by the stator’s eigenfrequencies and eigenmodes. For this purpose, a calculation approach called the analytical beam element model (ABM) was presented in a previous paper [18], where EulerBernoulli beams were used to describe the vibration behavior of the stator. The ABM introduced offers an alternative to the finite element (FE) method and to classical analytical models. In this paper, the model is examined and extended further. Different approaches conceived to better describe the influence of the stator yoke’s thickness by using Timoshenko beams and a multi-layer discretization are presented and discussed. Furthermore, a new feature that considers the lever arm effect of the stator teeth with respect to the yoke is introduced. The results are compared to FE calculations and measurements. Lastly, the improved ABM is used to calculate the vibration behavior of four stators with outer diameters ranging from $$160\,\text{mm}$$ 160 mm to $$7\,\text{m}$$ 7 m . The results are compared to FE results to prove the accuracy of the ABM.

Funder

Gottfried Wilhelm Leibniz Universität Hannover

Publisher

Springer Science and Business Media LLC

Subject

Electrical and Electronic Engineering

Reference22 articles.

1. Jordan H (1950) Der geräuscharme Elektromotor. Girardet, Essen

2. Braunisch D, Ponick B, Bramerdorfer G (2013) Combined analytical–numerical noise calculation of electrical machines considering nonsinusoidal mode shapes. IEEE Trans Magn 49(4):1407–1415

3. Vip S-A, Hollmann J, Ponick B (2019) Nvh-simulation of salient-pole synchronous machines for traction applications. In: Proceedings 2019 International Aegean Conference on Electrical Machines and Power Electronics (ACEMP) & 2019 International Conference on Optimization of Electrical and Electronic Equipment (OPTIM). IEEE, Piscataway, pp 246–253

4. Hofmann A, Qi F, Lange T, de Doncker RW (2014) The breathing mode-shape 0: Is it the main acoustic issue in the pmsms of today’s electric vehicles? In: 17th International Conference on Electrical Machines and Systems (ICEMS). IEEE, Piscataway, pp 3067–3073

5. Frohne H (1959) Über die primäre Bestimmungsgrößen der Lautstärke bei Asynchronmaschinen. Dissertation thesis, Technische Hochschule Hannover, Hannover

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