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Design and Development of Capacitor Run Split-Phase Fan Motor for Higher Efficacy

机译:电容器运行分体相风机电机的设计与开发,效率更高

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This paper presents the design and development of the permanent capacitor split phase ceiling fan motor with higher air delivery per unit power consumption. An existing ceiling fan is taken as a case study and experimental performance is validated against finite element analysis (FEA). A parametric analysis of significant parameters such as turns in both the windings, permanent capacitor connected across the auxiliary winding, air gap length, stack length and loading, is made in detail. The copper losses and the core losses are also analyzed for the parametric variations. Moreover, the efficiency of the motor is enhanced for optimum operation. Based on the study, two new motors are designed for improvement in the performance keeping the outer diameter of the motor same as the existing motor. The overall saturation of the motor is reduced by modifying the lamination design and increasing overall volume of the motor. The designed motors are analyzed using FEA and prototypes are developed. Both the prototype results show significant improvement in the power consumption as well as the air delivery with blades of existing fan.
机译:本文介绍了永久电容器分离相位吊扇电机的设计和开发,每单位功耗较高空气输送。现有的吊扇是作为案例研究的,并且对有限元分析(FEA)验证了实验性能。详细介绍了诸如绕组,空气间隙长度,堆长和装载的绕组中的显着参数的参数分析,例如绕组,连接在辅助绕组,气隙长度,堆叠长度和装载中的永久电容器。对于参数变化,还分析了铜损耗和核心损失。此外,电动机的效率得到了增强的最佳操作。基于该研究,设计了两种新电机,用于改进性能,保持与现有电机相同的电机外径。通过改变层压设计和增加电动机的整体体积,降低了电动机的整体饱和度。使用FEA分析设计的电动机,并开发了原型。原型结果都显示出功耗的显着改善以及现有风扇叶片的空气输送。

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