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Design using simple modeling and experimental study on direct-drive disk-type motor with dense stator configuration

机译:用致密定子配置使用简单建模和实验研究的设计

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Electric propulsion system in marine application has been given high attention due to energy saving and low maintenance requirements. A transverse flux-type machine (TFM) with permanent magnets (PMs) has been developed as a direct-drive propulsion motor without gearbox called for high torque at low speed and high reliability simultaneously. This manuscript describes design procedure of the TFM using simple modeling focused on magnetic-circuit structure of the motor. The electrical design of the motor is based on electrical and magnetic theory. The minimalist design is shown to be advantageous for effective use in three-dimensional numerical analysis. The validity of the proposed method and the fulfillment of design requirements, torque density defined as torque to total volume ratio of more than 10kNm/m3 and power factor (PF) of more than 0.80, are verified through the numerical computation and experimental result on a prototype machine. High torque density and high PF contributes to compactness of whole motor-drive system including motor and power converter system.
机译:由于节能和低维护要求,海洋应用中的电动推进系统得到了很高的关注。具有永磁体(PMS)的横向磁通型机(TFM)作为直接驱动推进式电动机,无需齿轮箱,同时以低速和高可靠性称为高扭矩。此稿件描述了使用专注于电动机磁路结构的简单建模的TFM的设计过程。电动机的电气设计基于电磁理论。简约的设计被证明是有利于在三维数值分析中有效的用途。所提出的方法和满足设计要求的有效性,定义为扭矩至总体积比的扭矩密度超过10knm / m 3 和功率因数(pf),通过原型机上的数值计算与实验结果。高扭矩密度和高PF有助于整个电机驱动系统的紧凑性,包括电机和功率转换器系统。

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