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Properties of Cogging Torque, Starting Torque, and Electrical Circuits for the Single-Phase Brushless DC Motor

机译:单相无刷直流电动机的齿槽转矩,起动转矩和电路特性

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A single-phase brushless dc motor requires an asymmetric air gap to eliminate the dead point where the excitation net torque is zero. In this paper, we use the finite-element method (FEM) to analyze the properties of cogging torque, starting torque, and electrical circuits. Others have discussed the influences of various asymmetric air gaps on these properties. However, the optimum asymmetric air-gap condition is very difficult to find. Here, we describe an optimum asymmetric air-gap structure that not only produces an optimum starting torque but also reduces the cogging torque to a tolerable range. We compare simulation results with the measurement results to illustrate the accuracy of the FEM model.
机译:单相无刷直流电动机需要不对称的气隙,以消除励磁净转矩为零的死点。在本文中,我们使用有限元方法(FEM)来分析齿槽转矩,启动转矩和电路的特性。其他人已经讨论了各种不对称气隙对这些性能的影响。但是,很难找到最佳的不对称气隙条件。在此,我们描述了一种最佳的非对称气隙结构,该结构不仅可以产生最佳的启动扭矩,而且还可以将齿槽转矩减小到可容忍的范围。我们将仿真结果与测量结果进行比较,以说明FEM模型的准确性。

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