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A new restructured shaded pole induction motor-3D finite element analysis and experimental verification

机译:新型重构阴影极感应电动机的三维有限元分析与实验验证

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Shaded pole induction motors, despite the simplicity and low cost, are difficult to analyze particularly in the equivalent circuit methods, due to the asymmetric structure, saturation, harmonics, inaccurate estimation of leakage inductances and skew. Hence, 3D numerical methods could be very useful in the design and optimization stage. This paper presents the 3D transient finite element analysis (3DTFEM) of a 1/60HP, 2-pole prototyped, restructured shaded pole induction motor that has been designed and optimized using genetic algorithm technique. Experimental test has been carried out by a hysteresis brake dynamometer to determine the motor performance. Detailed comparisons among 2D, and 3D finite-element analysis, and experimental results are presented, which confirm the potentials of the new restructured shaded pole motor to achieve lower cost and higher efficiency objectives than the previous designs.
机译:阴影极感应电动机尽管简单且成本低廉,但由于结构不对称,饱和,谐波,漏电感的估计不准确和偏斜,因此很难用等效电路方法进行分析。因此,3D数值方法在设计和优化阶段可能非常有用。本文介绍了使用遗传算法技术设计和优化的1 / 60HP,两极原型,重构阴影极感应电动机的3D瞬态有限元分析(3DTFEM)。磁滞制动测功机已进行了实验测试,以确定电机性能。给出了2D和3D有限元分析之间的详细比较以及实验结果,这些结果证实了新的重构阴影极电动机的潜力,可以实现比以前的设计更低的成本和更高的效率目标。

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