外文翻译---应用计算机辅助施瓦兹—克里斯托菲尓变换电机设计和分析的初级研究
《外文翻译---应用计算机辅助施瓦兹—克里斯托菲尓变换电机设计和分析的初级研究》由会员分享,可在线阅读,更多相关《外文翻译---应用计算机辅助施瓦兹—克里斯托菲尓变换电机设计和分析的初级研究(8页珍藏版)》请在毕设资料网上搜索。
1、外文翻译 2006 IEEE COMPEL Workshop, Rensselaer Polytechnic Institute, Troy, NY, USA, July 16-19, 2006 A Preliminary Investigation of Computer-Aided Schwarz-Christoffel Transformation for Electric Machine Design and Analysis Timothy C. OConnell and Philip T. Klein Grainger Center for Electric Machinery a
2、nd Electro mechanics Department of Electrical and Computer Engineering University of Illinois at Urbana-Champaign 1406 W. Green St. Urbana, IL 61801-2918 USA Abstract-Analternative method to finiteelement analysis (FEA)for electricmachine design and analysis is presented that applies Schwarz-Christo
3、ffel(SC)conformal mapping theoryusing the SC Toolbox for MATLAB that has appeared in the previous literature. In this method, a two-dimensional (2D) developed machine cross-section domain is mappedvia SCtransformation to a concentric cylinder domain where solutions for the electromagnetic (EM) field
4、s are known. These solutions are mapped back tothe original domain, thussolving theoriginal problem. All mapping is done via the SC Toolbox. Examples are given in which the procedure is used to calculate the EM field in the air gap of and the force on the rotor ofvarious 2D developed machine cross-s
5、ections. The numerical accuracy of the results is verified by comparing the solutions as the air gap gets small with magnetic equivalent circuit (MEC)-derived co-energy solutions. I. INTRODUCTION The most general electric machine design problem can be described as followsgiven a set of desired machi
6、ne output characteristics,find the optimum machine geometry, materials, and input source characteristics that will achieve these goals. This is a formidable problem in its most general form, especially -considering the recent increase in theavailability of inverters, exotic permanent magnet (PM) mat
7、erials, and low-cost, precision manufacturing. Usually several - assumptions and basic a priori design decisions must be made to render the problem tractable. A standard technique is to use basic machine theory to generate a rough design which might include the type of machine (synchronous, inductio
8、n, PM, etc.), the number of poles, and the materials. The base design is then analyzed and refined in an iterative process using FEA software until an acceptable match to the desired output is found. While FEA is a powerful analysis tool that is fairly easy to use and widely available in a number of
9、 commercial software packages, its utility in design is less obvious. Using FEA, it is oftendifficult to see the relationships between various input and outputparameters without extensive and time-consuming iterations.Frequently, the necessary accuracy needed for agiven problem cannot be achieved wi
10、thout unreasonable computer run times. Thus, an alternative to FEA, more suitedto design, can be auseful addition to the machine designersrepertoire.This paper investigates the utility of the MATLAB SC Toolbox, a free add-on toolbox developed by T. Driscoll 1-3 that automates the process of calculat
11、ing SC maps. The SC method is a 2D complex analysis tool that allows one to circumventmany of the difficulties encountered when solving a boundary value problem on a domain defined by a complicated geometry. Using a complex conformal mapping from the problem domain to a simpler domain, one can more
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