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Experimental Verification of Design Techniques of Permanent-Magnet Synchronous Motors for Low-Torque-Ripple Applications

机译:低转矩纹波应用永磁同步电动机设计技术的实验验证

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摘要

High-performance motor drive applications require smooth operation with minimum torque ripple. This paper is focused on identifying various design parameters in the stator and rotor that can be utilized to reduce the torque ripple of sinusoidally excited permanent-magnet synchronous motors. This paper investigates the sensitivity of various design parameters on torque ripple and torque linearity that must be considered at the design stage for low-torque-ripple applications. Only the torque ripple and torque nonlinearity due to electromagnetic origin are considered in this paper. Finite-element analysis along with experimental data is provided to validate the findings. Design techniques have been provided to minimize the overall torque ripple and increase the torque linearity. Tradeoff between magnetic flux per pole and electrical loading of the machine is needed for low-torque-ripple performance. This also provides superior torque linearity.
机译:高性能电机驱动应用要求平稳的运行且扭矩波动最小。本文着重于确定定子和转子中的各种设计参数,这些参数可用于减少正弦励磁永磁同步电动机的转矩脉动。本文研究了在低转矩脉动应用的设计阶段必须考虑的各种设计参数对转矩脉动和转矩线性的敏感性。本文仅考虑由于电磁起因引起的转矩脉动和转矩非线性。提供有限元分析以及实验数据以验证发现。提供了设计技术以最小化总转矩波动并增加转矩线性度。为了实现低转矩纹波性能,需要在每极磁通量与电机的电气负载之间进行权衡。这也提供了卓越的扭矩线性度。

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