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Numerical Modeling and Experimental Validation of a Coreless Permanent Magnet Synchronous Motor

机译:无芯永磁同步电动机的数值模拟与实验验证

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This paper describes a method to estimate the performance and active mass of a coreless Axial Flux Permanent Magnet (AFPM) machine for integration in aircraft propulsion systems. The use of coreless AFPM machines has many advantages. Mainly, the high efficiency due to the elimination of the core losses and natural convective refrigeration air flow. Both leading to high power per unit mass. The determination of the motor constant considers the circuit flux linkage distribution from 2D Finite Element Analysis (FEA). The Back Electromotive Force (BEMF) waveform is also obtained. A simple model for estimating the motor active mass is implemented in an effort to implement a motor design parametric study of the ratio KV /active mass as the motor Figure of merit. The proposed methodology is compared with experimental results of a similar electrical machine.
机译:本文介绍了一种估计无芯轴向磁通永磁体(AFPM)机器的性能和主动质量的方法,用于在飞机推进系统中集成。 无芯AFPM机器的使用具有许多优点。 主要是,由于消除核心损失和自然对流制冷空气流动的高效率。 两者都导致每单位质量的高功率。 电动机常数的测定考虑了来自2D有限元分析(FEA)的电路通量连杆分布。 还获得了背部电动势(BEMF)波形。 用于估计电动机有效质量的简单模型是为了实现比率K的电动机设计参数研究 v /主动质量作为电动机的优点。 将所提出的方法与类似电机的实验结果进行比较。

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