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Multiparameter Analysis for Efficiency Improvement of Single-Phase Capacitor Motor

机译:单相电容器电动机效率改进的多相局部分析

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Single-phase motors are known for their small power ratings and their usage in various household appliances. Although they are not large electricity consumers, their widespread application contributes to the overall electricity consumption. In addition, standard IEC 60034-30-1:214 defines the efficiency levels for single- and three-phase motors and stipulates the increased electrical efficiency for the electrical motors. Therefore, this paper sets the parametric analysis of permanently split capacitor motor with five different design parameters that have impact on the efficiency of the motor. As an output from the parametric analysis, two different optimized motor models are obtained with increased efficiency. The impact of each parameter on motor efficiencyas well as on the other operating characteristics, like starting torque, overloading capacity, rated current, starting current, total losses, and power factoris analyzed and adequate conclusions are derived. The obtained motor models are verified with Finite Element Method (FEM) for magnetic flux density distribution.
机译:单相电动机以其小型电力额定值而闻名及其在各种家用电器中的用途。虽然它们不是大电力消费者,但他们的广泛应用有助于整体电力消耗。此外,标准IEC 60034-30-1:214定义了单相和三相电动机的效率水平,并规定了电动机的增加的电效率。因此,本文设定了具有对电机效率影响的五种不​​同设计参数的永久分离电容器电动机的参数分析。作为参数分析的输出,通过提高效率获得两种不同的优化电动机模型。各种参数对电动机效率的影响良好的其他操作特性,如起始扭矩,过载容量,额定电流,启动电流,分析和充分结论的开始,总损耗和功率因子。所获得的电动机模型用有限元法(FEM)验证,用于磁通密度分布。

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