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Effects of Geometric Parameters on Performance of a SRM by Numerical-Analytical Approach

机译:几何参数对数值分析方法进行SRM性能的影响

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The robustness, simplicity, reduced cost and high mass torque ratio of the SRM allow them to have various applications at high speed or low speed and high torque [25], [26]. The drawback of these machines is the presence of a pulsatory torque. Several research works try to minimize this latter by optimizing the geometric and control parameters [27-33]. The prediction of the behavior of an electromagnetic system from the knowledge of its non-linear parameters, also connected to external sources, has always been a difficult problem to solve. The numerical solution is a priori appealing for solving complex problems with better accuracy but the computing time is penalizing [34]. While easy to implement, the analytical models are relatively inaccurate due to the simplifying assumptions [35].
机译:SRM的鲁棒性,简单性,降低成本和高质量扭矩比允许它们以高速或低速和高扭矩[25],[26]具有各种应用。这些机器的缺点是存在脉动扭矩。几项研究作品试图通过优化几何和控制参数[27-33]来最大限度地减少后者。从其非线性参数知识预测电磁系统的行为,也连接到外部来源,这始终是解决的难题。数值解决方案是一种先验的吸引力,用于解决具有更好精度的复杂问题,但计算时间是惩罚[34]。虽然易于实现,但由于简化假设[35],分析模型相对不准确。

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