叉车牵引用开关磁阻电机设计

M. Terzic, B. Bilgin, A. Emadi
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引用次数: 4

摘要

本文介绍了一种用于叉车牵引电机的开关磁阻电机的设计。根据叉车牵引电机的规格,确定设计约束和输入参数。三相感应电机通常用于叉车推进系统。设计了几种转子极数大于定子极数的SRM结构,以比较它们的特性和性能。这些配置分别为12/16、12/20和18/24,并在平均扭矩、重量、均方根扭矩脉动、效率和温升方面进行了比较。初始设计是由基本的解析施胶方程得到的。采用解析有限元法和遗传算法控制优化相结合的方法对初始设计进行优化。优化目标是以最小的体积和质量实现设计,提高扭矩密度(转矩/体积)和比扭矩(转矩/质量)。结果表明,12/16 SRM具有较高的转矩密度,适合叉车推进。
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Switched Reluctance Motor Design for a Forklift Traction Application
This paper presents the design of a switched reluctance motor (SRM) for the traction motor of a forklift application. Design constraints and input parameters are defined according to the specifications of a forklift traction motor. Three-phase induction machines are commonly used for forklift propulsion systems. Several SRM configurations with higher number of rotor than stator poles are designed in order to compare their characteristics and capabilities. These configurations are 12/16, 12/20 and 18/24, and they are compared in terms of average torque, weight, RMS torque ripple, efficiency and temperature rise. Initial designs are obtained by basic analytical sizing equations. Optimization of initial designs is performed using combined analytical-FEA approach and genetic algorithm control optimization. Optimization goal is to achieve the design with the lowest volume and mass to increase torque density (torque/volume) and specific torque (torque/mass). The results show that 12/16 SRM is a suitable configuration for the forklift propulsion application due to its higher torque density.
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