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Comparison, with an analytical optimization process, of two synchronous halbach permanent magnet machines, for a direct drive stick application

机译:通过分析优化过程,将两台同步halbach永磁电机进行了比较,以用于直接驱动杆应用

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摘要

This paper deals with the comparison of two actuators with different frameworks, for a direct drive active stick application. Each actuator will be compared with three different sets of specifications which impose many constraints as: high torque, small volume, low temperature, etc. The high required torque per unit of mass and the small volume allowed involve the use of synchronous Halbach permanent magnet (PM) topologies which have the best torque performances. In this article, an analysis and a comparison of two optimized actuators designed with a Halbach configuration are done. It is a linear actuator and a double airgap rotating actuator. The electromagnetic torque is calculated by the Laplace force for which the flux density generated by the Halbach PM configuration is defined by a Laplace equation and a Poisson equation. An analytical optimization under a set of nonlinear constraints will be realized with the analytical expressions of the torque we got previously. In order to validate the analytical model, finite-element analysis (FEA) simulations will be performed on the optimized structure. Finally, two actuators will be compared in order to give the best compromises for the stick application for each set of specifications.
机译:本文针对具有直接驱动主动杆应用的不同框架的两个执行器进行比较。每个执行器将与三组不同的规格进行比较,这三组规格受到许多限制,例如:高扭矩,小体积,低温等。单位质量所需的高扭矩和允许的小体积涉及使用同步Halbach永磁体( PM)具有最佳转矩性能的拓扑。在本文中,对使用Halbach配置设计的两个优化执行器进行了分析和比较。它是线性执行器和双气隙旋转执行器。电磁转矩由拉普拉斯力计算,由拉普拉斯方程和泊松方程定义的Halbach PM配置产生的通量密度通过拉普拉斯力来计算。利用我们先前获得的转矩的解析表达式,可以实现一组非线性约束条件下的解析优化。为了验证分析模型,将在优化的结构上进行有限元分析(FEA)仿真。最后,将对两个执行器进行比较,以针对每种规格为斗杆应用提供最佳折衷。

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