电动四轮车同步磁阻电机的两轴建模

M. Nikhila, V. Mini, R. Harikumar, N. Mayadevi
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引用次数: 1

摘要

电动汽车中使用的电机,如感应电机,其动力特性不如感应电机。同样,在无刷直流电动机和永磁同步电机中使用稀土磁体增加了建造成本。同步磁阻电机不需要高成本的稀土磁体,结构简单,易于维护,是现有电动机的合适替代品。本文用d-q模型研究了同步磁阻电动机的动力特性。从同步磁阻电机的二维模型中得到直轴和交轴电感值,并以查找表的形式引入到d-q模型中。电机设计参数受电动汽车的重量、尺寸、速度和坡度等特性的影响。通过分析同步磁阻电机的转矩、转速等输出参数与输入参数的关系,分析了同步磁阻电机的性能。在MATLAB和ANSYS等不同的仿真平台上对上述模型进行了验证。
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Two-Axis Modeling of Synchronous Reluctance Motor for Electric Four Wheeler
The motors used in an electric vehicle such as induction motors are inferior to their dynamic characteristics. Similarly, the utilization of rare earth magnets in brushless dc motors and permanent magnet synchronous motors increases the cost of construction. The synchronous reluctance motor is a suitable replacement for existing electric motors because of the absence of high-cost rare earth magnets and simple construction with easy maintenance. This paper proposes the dynamic behavior of synchronous reluctance motors using the d-q model for electric propulsion. The direct and quadrature axis inductance values are obtained from the 2D model of synchronous reluctance motor and it is introduced in the d-q model as look-up tables. The motor design parameters are influenced by several electric vehicle characteristics such as weight, size, speed, and gradient. The performance of the developed synchronous reluctance motor is analyzed by variation in output parameters such as torque and speed concerning the input parameters. The aforementioned model is validated in different simulation platforms such as MATLAB and ANSYS platforms.
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