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Modeling, Performance Analyzing, and Prototyping of Variable Reluctance Resolver With Toroidal Winding

机译:环形绕组可变磁阻旋转变压器的建模,性能分析和原型设计

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摘要

Resolver, as an electromagnetic sensor, is widely used in different industrial applications such as servo motor feedback applications because of its reliable performance in the presence of undesired external factors in a harsh environment. Among different types of resolvers, variable reluctance (VR) resolvers draw attention due to their robust structure with a winding-less solid rotor and low-cost manufacturing. In this article, analytical modeling based on the magnetic equivalent circuit (MEC) is employed to investigate the output signals of the proposed toroidal winding arrangements for VR resolver with a 5-X rotor. Time-stepping finite element analysis (TSFEA) is used for all the simulations to achieve a satisfactory precision in analyzing the performance of the proposed VR resolver. Eventually, the results of the analytical model and TSFEM are both verified with an experimental test on the prototype resolver.
机译:旋转变压器作为电磁传感器,广泛用于不同的工业应用,如伺服电机反馈应用,因为其在恶劣环境中存在不希望的外部因素的可靠性。在不同类型的拆分器中,可变磁阻(VR)拆分器由于其鲁棒结构而引起了一种,具有较大的固体转子和低成本制造。在本文中,采用基于磁性等效电路(MEC)的分析建模来研究具有5-X转子的VR旋转变换器的所提出的环形绕组装置的输出信号。时间步进有限元分析(TSFEA)用于所有模拟,以实现令人满意的精确度,分析所提出的VR解析器的性能。最终,分析模型和TSFEM的结果均通过对原型旋转变性的实验测试进行验证。

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