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首页> 外文期刊>International Journal of Applied Electromagnetics and Mechanics >Strategies of game theory for the automated optimal design in electromechanics
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Strategies of game theory for the automated optimal design in electromechanics

机译:机电自动化优化设计的博弈论策略

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Abstract. Classical microeconomics and game theory offer a conceptual frame to solve a design problem, characterized bynmultiple objective functions in mutual conflict. This viewpoint is largely accepted for the design of high-tech products as seennin aerospace engineering. However, for long-established products – like electromechanical and electromagnetic devices – thenongoing evolution in design strategies is not fully influenced by the impact of new design methodologies and software facilities.nWith this rationale, the shape design of a permanent-magnet three-phase motor is considered as an example of small actuatornfor house appliances; the analysis of the magnetic field is based on a finite-element model of the device. The design goal isnto identify the magnet shape, such that the cogging torque of the motor is minimum for a given value of radial induction atnthe air-gap. More generally, the problem is cast in terms of multiobjective design: find the set of magnet shapes such that thentorque is minimum and the induction is maximum, subject to the given constraints. Solutions in terms of Pareto front and Nashnequilibrium are obtained by means of an evolutionary algorithm; during the automated search, discrete-valued design variablesnwere considered, for the sake of a realistic design. The paper shows that the application of multi-objective optimisation innelectromechanics gives a powerful design tool. Requirements in terms of timing and facilities are compatible with the resourcesnof a research-and-development (R&D) centre of an industrial company in the area of electrical engineering.
机译:抽象。古典微观经济学和博弈论提供了解决设计问题的概念框架,其特征是相互冲突中的多个目标函数。正如航空航天工程中所见,这种观点已被高科技产品的设计所广泛接受。但是,对于机电和电磁设备等历史悠久的产品,新的设计方法和软件设施的影响并没有完全影响设计策略的不断发展。n基于此原理,永磁三相电动机的形状设计被认为是用于家用电器的小型致动器的示例;磁场的分析基于设备的有限元模型。设计目标是确定磁体的形状,以使电动机的齿槽转矩对于气隙处给定的径向感应值最小。更笼统地说,问题出在多目标设计方面:在给定的约束下,找到一组磁铁形状,使得转矩最小,感应最大。通过进化算法获得关于帕累托前沿和纳什平衡的解。在自动搜索过程中,为了实现逼真的设计,不考虑离散值设计变量。本文表明,多目标优化技术在机电领域的应用提供了强大的设计工具。时间和设施方面的要求与电气工程领域的一家工业公司的研发中心的资源兼容。

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