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Multiobjective Optimization of a Magnetically Levitated Planar Motor With Multilayer Windings

机译:具有多层绕组的磁悬浮平面电动机的多目标优化

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摘要

In this paper, a novel magnetically levitated coreless planar motor with three-layer orthogonal overlapping windings is shown to have higher power density and higher space utilization compared with other coreless planar motors. In order to achieve maximum forces with minimum cost and minimum space, a multiobjective optimization of the novel planar motor is carried out. In order to reduce the computational resources required for finite-element (FE) analyses, a fast but accurate analytical tool is developed, based on expressions of the flux density of the permanent-magnet array, which are derived from the scalar magnetic potential method. The validity and accuracy is verified by 3-D FE results. Based on the force formulas and the multiobjective function derived from the analytical models, a particle swarm optimization (PSO) algorithm is applied to optimize the dimensions of the planar motor. The design and optimization of the planar motor is validated with experimental results, measured on a built prototype, thus proving the validity of the analytical tools.
机译:在本文中,与其他无芯平面电动机相比,具有三层正交重叠绕组的新型磁悬浮无芯平面电动机显示出更高的功率密度和更高的空间利用率。为了以最小的成本和最小的空间获得最大的力,对新型平面电动机进行了多目标优化。为了减少有限元(FE)分析所需的计算资源,基于永磁体阵列的磁通密度表达式(基于标量磁势方法),开发了一种快速而准确的分析工具。通过3-D FE结果验证了有效性和准确性。基于力公式和解析模型得出的多目标函数,应用粒子群算法(PSO)优化平面电机的尺寸。平面电动机的设计和优化通过实验结果进行验证,并在已构建的原型上进行测量,从而证明了分析工具的有效性。

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