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首页> 外文期刊>IEEE Transactions on Energy Conversion >Analytic Model for Performance Study and Computer-Aided Design of Single-Phase Shaded-Pole Induction Motors
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Analytic Model for Performance Study and Computer-Aided Design of Single-Phase Shaded-Pole Induction Motors

机译:单相罩极感应电动机的性能研究解析模型和计算机辅助设计

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摘要

Single-phase-shaded-pole induction motors (SPIMs) are widely used in low-power applications. These motors have low cost, low efficiency, and simple construction. However, mathematical modeling of the SPIMs is rather complicated. This paper proposes an analytic model for performance study of SPIMs using winding function theory. Considering the low efficiency, core loss is included in the model by adding an appropriate resistance in parallel to the stator main winding. A commercial SPIM is selected for the modeling and simulation purpose. Physical inspection and measurements as well as dc and no-load tests results and genetic algorithm are used for extracting required technical data of the motor. Correctness of the modeling and simulation process is verified by comparison to experimental results. This model can be used in computer-aided design of the SPIMs, particularly, for selecting optimal values for the angular spans and resistances of the stator short-circuited loops as well as the skewing and resistance of the rotor bars.
机译:单相阴影极感应电动机(SPIM)广泛用于低功率应用。这些电动机成本低,效率低且结构简单。但是,SPIM的数学建模相当复杂。本文提出了一种基于缠绕函数理论的SPIM性能分析模型。考虑到效率低下,通过在定子主绕组上并联一个适当的电阻来将铁损纳入模型。选择商业SPIM进行建模和仿真。物理检查和测量以及直流和空载测试结果以及遗传算法被用于提取电动机所需的技术数据。通过与实验结果进行比较,验证了建模和仿真过程的正确性。该模型可用于SPIM的计算机辅助设计中,特别是用于为定子短路环的角跨度和电阻以及转子棒的偏斜和电阻选择最佳值。

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