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Optimal Design of a Single-Phase Two-Value Capacitor Induction Motor with Fan Load

机译:带风扇负载的单相二值电容感应电动机的优化设计

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Nowadays, due to increase in price of electrical energy, the efficiency is especially important in the design of electrical motors. Since the different types of electrical motors are used in various fields including industry, agriculture, households, etc., increasing the efficiency of electrical motors significantly reduce the consumption of electrical energy. The losses of electrical motors include stator and rotor ohmic losses, core loss, mechanical loss and stray load loss. In this paper, to increase the efficiency, the design parameters of a single-phase two-value capacitor induction motor are optimized by Genetic Algorithm (GA). In order to reduce the copper losses, the copper bars are used for rotor cage. Since for manufacturers the production costs are very important, this factor is also included in objective function. The accuracy of design process and optimization approach are verified by simulation results.
机译:如今,由于电能价格的上涨,效率在电动机的设计中尤为重要。由于在工业,农业,家庭等各个领域中使用了不同类型的电动机,因此提高电动机的效率显着降低了电能的消耗。电动机的损耗包括定子和转子的欧姆损耗,铁心损耗,机械损耗和杂散负载损耗。为了提高效率,采用遗传算法对单相二值电容器感应电动机的设计参数进行了优化。为了减少铜损,铜棒被用于转子笼。由于对于制造商而言,生产成本非常重要,因此该因素也包含在目标函数中。仿真结果验证了设计过程和优化方法的准确性。

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