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Optimal Design of a Fault-Tolerant IPM Motor with High Torque Density for Electric Power Steering System

机译:电动助力转向系统高转矩密度容错IPM电动机的优化设计

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Electric Power Steering system provides the assist steer torque in vehicle through an electric motor. Since the electric motor is directly connected to the mechanical steering rack, must have the following features: Torque production with minimum Ripple for Precise steer control, High efficiency, easy Manufacturing technology and minimum size and weight. Motor structure optimization is done in order to increasing force to motor volume ratio, increasing fault tolerance, decreasing Permanent Magnet volume and force ripple. In this paper, Analytical relations Necessary and relevant for optimization have been obtained and finally desired objective function is defined in terms of machine design parameters such as air gap length, inner and outer machine diameter, slots dimensions, PM dimensions and location and machine electric and magnetic characteristics. Motor behavior study and confirmation in force production with determined power supply is done with finite element method simulation. At the end, entire electric power steering system including electric motor, power supply and controller have been simulated and the performance evaluation of system is done.
机译:电动助力转向系统通过电动机为车辆提供辅助转向扭矩。由于电动机直接连接到机械转向齿条,因此必须具有以下特征:以最小的波纹产生扭矩,以实现精确的转向控制,高效,易于制造的技术以及最小的尺寸和重量。进行了电动机结构优化,以增加力与电动机的体积比,增加容错能力,减小永磁体体积和力纹波。在本文中,获得了优化所需和必要的分析关系,并最终根据机器设计参数定义了所需的目标函数,例如气隙长度,机器内部和外部直径,插槽尺寸,PM尺寸和位置以及机器电气和电气特性。磁特性。在确定电源的情况下,进行力行为的电动机行为研究和确认是通过有限元方法仿真完成的。最后,对整个电动助力转向系统进行了仿真,包括电动机,电源和控制器,并对系统的性能进行了评估。

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