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首页> 外文期刊>Industrial Electronics, IEEE Transactions on >Small Linear PM Oscillatory Motor: Magnetic Circuit Modeling Corrected by Axisymmetric 2-D FEM and Experimental Characterization
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Small Linear PM Oscillatory Motor: Magnetic Circuit Modeling Corrected by Axisymmetric 2-D FEM and Experimental Characterization

机译:小型线性永磁振动电机:通过轴对称二维有限元校正的磁路建模和实验表征

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摘要

Linear permanent-magnet (PM) actuators with short strokes represent an excellent alternative to pneumatic or hydraulic actuators in different fields of application, whenever fast response, flexibility, high reliability, and safety are required. The purpose of this paper is to present a new hybrid model and a testing sequence to rather completely characterize a small PM oscillatory motor for compressor-like applications. The hybrid model is composed of an iterative nonlinear magnetic circuit method which is corrected by an axisymmetric (2-D) finite-element method (FEM) model. The benefit that this hybrid model has is its low computation time when compared with similar analysis using 3-D FEM. This characteristic is very significant for industrial usage.
机译:当需要快速响应,灵活性,高可靠性和安全性时,具有短行程的线性永磁(PM)执行器是气动或液压执行器的绝佳替代品。本文的目的是提出一种新的混合模型和测试程序,以完全表征用于类似压缩机的应用的小型PM振荡电机。混合模型由迭代非线性磁路方法组成,该方法通过轴对称(2-D)有限元方法(FEM)模型进行了校正。与使用3-D FEM进行的类似分析相比,此混合模型的优势在于计算时间短。该特性对于工业用途非常重要。

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