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Experimental investigation on electromagnetic transduction characteristic of linear oscillation electrical machine

机译:线性振荡电机电磁换能特性的实验研究

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The electromagnetic transduction coefficient has a strong influence on efficiency as well as the sensorless control of linear oscillation electrical machine (LOEM). This paper presents a reciprocal LOEM method for measurement of the electromagnetic transduction coefficient, to investigate the effect of the magnet length on the characteristics of the transduction coefficient. The result shows that the transduction coefficient has two regimes, a constant regime and a nonlinear regime. As the harmonic distortion begins to appear in the induced electromotive force, the electromagnetic transduction coefficient passes from the constant regime to the nonlinear regime, and the corresponding stroke is defined as critical stroke. The range of constant regime equals the observed critical stroke, and the critical stroke is 8.81 mm and 10.78 mm when the length of the permanent magnet is 11 mm and 13 mm respectively. The relationship among the geometrical dimension of yoke and permanent magnet, the critical stroke and the stroke of the LOEM are carefully investigated. Then optimal lengths for both the yoke and the permanent magnet are suggested for the LOEM design with the rated stroke, to achieve the highest efficiency and least material cost simultaneously.
机译:电磁换能系数对效率以及线性振荡电机(LOEM)的无传感器控制都有很大影响。本文提出了一种互易的LOEM方法来测量电磁转换系数,以研究磁体长度对转换系数特性的影响。结果表明,转导系数具有两种状态,恒定状态和非线性状态。随着在感应电动势中开始出现谐波畸变,电磁换能系数从恒定状态变为非线性状态,并将相应的行程定义为临界行程。恒定范围的范围等于观察到的临界冲程,并且当永磁体的长度分别为11mm和13mm时,临界冲程为8.81mm和10.78mm。仔细研究了磁轭和永磁体的几何尺寸,临界行程和LOEM行程之间的关系。然后,对于具有额定行程的LOEM设计,建议使用磁轭和永磁体的最佳长度,以同时实现最高效率和最低材料成本。

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