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An efficient design optimization framework for nonlinear switched reluctance machines

机译:非线性开关磁阻电机的有效设计优化框架

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摘要

A new computationally efficient paradigm for the design and analysis of switched reluctance machines is proposed. At the heart of the rapid analysis and design methodology is the reduced order computational method based on a flux tube model which has been refined and extended. It is demonstrated how the improved model enables consistent and accurate analysis and design optimization. Instead of an analytical derivation, an automatic generation of cubic splines is introduced to model the magnetic flux. The flux linkage functions obtained from the improved flux tube method indicate that the method offers good accuracy compared to finite element based analysis, but withsignificantly improved computational efficiency. The approach is applicable to translating and rotating switched reluctance machines of various topologies and therefore enables rapid design search and optimization of novel topologies.
机译:提出了一种新的计算有效的范例,用于开关磁阻电机的设计和分析。快速分析和设计方法的核心是基于流量管模型的降阶计算方法,该方法已经过完善和扩展。演示了改进的模型如何实现一致,准确的分析和设计优化。代替解析推导,引入了三次样条的自动生成来对磁通量进行建模。从改进的通量管方法获得的通量链接函数表明,与基于有限元的分析相比,该方法具有较高的准确性,但计算效率显着提高。该方法适用于平移和旋转各种拓扑的开关磁阻电机,因此可以快速搜索设计并优化新型拓扑。

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