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Optimum Design of a Single-Phase Line-Start PM Motor Considering Efficiency, Maximum Torque, and Starting Torque

机译:考虑效率,最大转矩和起动转矩的单相线路启动永磁电动机的优化设计

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摘要

In this paper, an optimum design for a single-phase line start permanent magnet (LSPM) motor with respect to efficiency, maximum torque, and starting torque is proposed. The design variables, objective functions, and constraints are selected for this optimum design, which is divided into three steps. Step I maximizes the rated efficiency while maintaining a balanced operation and minimizing the stator copper loss. Step II utilizes equivalent circuit analysis to consider the efficiency and the maximum torque, while Step III calculates the precise starting torque using finite element (FE) analysis. The validity of the optimum design is verified by comparing the efficiency, maximum torque, and starting torque characteristics of the time-step FE analysis with experimental results.
机译:本文针对效率,最大转矩和起动转矩提出了一种单相线路起动永磁(LSPM)电动机的优化设计。为此最佳设计选择了设计变量,目标函数和约束,该设计分为三个步骤。步骤I使额定效率最大化,同时保持平衡运行并最小化定子铜损。步骤II利用等效电路分析来考虑效率和最大扭矩,而步骤III使用有限元(FE)分析来计算精确的启动扭矩。通过将时步有限元分析的效率,最大转矩和启动转矩特性与实验结果进行比较,验证了最佳设计的有效性。

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