Algorithm for determining static characteristic on electromagnetic actuator for rectilinear locomotion structure of a snake-like robot

E. Prada, A. Gmiterko, J. Bocko, M. Kelemen, R. Surovec, Ivan Virgala, M. Vacková
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引用次数: 3

Abstract

This work deals with the determination of static characteristics of electromagnetic actuator. Electromagnetic actuator is designed as drive for rectilinear locomotion structure parts of snake-like robot. Static characteristics are determined by the solving of a non-linear problem of the actuator's magnetic circuit in a ferromagnetic core's particular positions and at the different fluxional rates of the coil. Static characteristics are represented by a L induction, magnetic force affecting ferromagnetic core Fm. For the calculation of the coil induction L is used the power of magnetic field. Magnetic field power is calculated by using Maxwell stress tensor and differential formula by a numeric derivation way.
蛇形机器人直线运动结构电磁执行器静态特性的确定算法
本文研究了电磁作动器静态特性的测定。设计了电磁执行器作为蛇形机器人直线运动结构部件的驱动装置。静态特性是通过求解执行器在铁磁磁芯特定位置和线圈不同磁通速率下的磁路的非线性问题来确定的。静态特性由L感应表示,磁力影响铁磁磁芯Fm。计算线圈感应强度时,用磁场功率L表示。利用麦克斯韦应力张量和微分公式,通过数值推导方法计算磁场功率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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