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Design Principle for Linear Electrical Machines to Minimize Power Loss in Periodic Motions

机译:线性电机设计原理,以最小化周期运动中的功率损耗

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This paper describes a novel approach to the design of linear machines that are not run at a steady state operating point. The focus lies on minimizing the power loss to achieve highest possible efficiency. First analytical considerations reveal the potential of designing electrical machines for periodic, accelerated motion. It shows the influence of the machine size on the power losses due to the dependence of machine force as well as moving mass on this parameter. Based on these findings, a simulation model was created with which a linear machine can be optimized for a specific motion and load cycle. The simulation consist of a stationary and a time dependent finite element analysis of the linear machine in conjunction with an operational model that includes a given movement cycle. It was used to design a flat type linear machine for a free piston linear generator. The simulation results validate the analytical calculations and illustrate the differences to conventional design approaches for linear machines.
机译:本文介绍了一种新颖的方法,用于设计在稳态操作点不运行的线性机器。焦点在于最小化功率损失以实现最高效率。第一次分析考虑揭示了用于定期,加速运动的设计电机的潜力。它显示了由于机械力的依赖性以及该参数上的移动质量导致机器尺寸对功率损耗的影响。基于这些发现,创建了一种模拟模型,利用该模拟模型,可以针对特定运动和负载周期进行线性机器进行优化。模拟包括与包括给定运动周期的操作模型的线性机器的静止和时间依赖性有限元分析。它用于设计一个用于自由活塞线性发电机的扁平型线性机器。仿真结果验证了分析计算,并说明了与线性机器的传统设计方法的差异。

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