Software design tool for optimum Axial Flux BLDC motors

J. Jayasundara, R. Munasinghe
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引用次数: 4

Abstract

The Axial Flux BLDC motors are relatively new, specially at higher power ratings over 10kW. Therefore the designers face a lot of difficulties in designing and optimizing the motor for a given application. This paper presents a new method to optimize the performance in speed, torque, torque stability, power output, power density and motor dimensions in view of the cost and reliability for a given motor; specially to be used for traction purposes. By this method, the motor designers can easily choose the exact parameters of the motor to match the requirement and make sure of the optimization of the design. A software interface and simulation results are presented to check the level of optimization achievable with the system. This paper discusses a three phase axial flux outer rotor BLDC motor, but the core equations can be easily changed to simulate for any kind of motor with the same software and simulation interface.
软件设计工具的最佳轴向磁通无刷直流电机
轴向磁通无刷直流电机是相对较新的,特别是在更高的额定功率超过10kW。因此,设计人员在设计和优化给定应用的电机时面临许多困难。从成本和可靠性的角度出发,提出了一种在转速、转矩、转矩稳定性、功率输出、功率密度和电机尺寸等方面优化电机性能的新方法;专门用于牵引目的的。通过这种方法,电机设计人员可以方便地选择符合要求的电机参数,确保设计的优化。给出了软件界面和仿真结果,验证了该系统可达到的优化水平。本文讨论的是一种三相轴向磁通外转子无刷直流电动机,但其核心方程可以很容易地改变,用相同的软件和仿真界面对任何类型的电机进行仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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