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超磁致伸缩执行器的自由能磁滞模型的优化算法研究
引用本文:田春,汪鸿振. 超磁致伸缩执行器的自由能磁滞模型的优化算法研究[J]. 中国机械工程, 2005, 16(1): 24-27
作者姓名:田春  汪鸿振
作者单位:上海交通大学,上海,200240
摘    要:介绍了超磁滞伸缩执行器的自由能磁滞模型,对该自由能磁滞模型的数值计算进行了具体分析,由此提出了该自由能磁滞模型的四种数值实现方法;比较了四种数值实现方法的计算精度和计算效率,并与已有文献的实验结果和计算结果对比,得出近似Gauss-Legendre积分法进行积分离散化与矩阵表示法实现核函数相结合的方法在保证计算精度的同时,大大缩短了运算时间,是超磁致伸缩执行器的自由能磁滞模型的四种数值实现方法中的最优算法。

关 键 词:超磁致伸缩执行器  自由能磁滞模型  计算效率  计算精度
文章编号:1004-132X(2005)01-0024-04

Investigation of Optimal Method for Free Energy Hysteresis Model in Giant Magnetostrictive Actuators
Tian Chun Wang Hongzhen Shanghai Jiaotong University,Shanghai. Investigation of Optimal Method for Free Energy Hysteresis Model in Giant Magnetostrictive Actuators[J]. China Mechanical Engineering, 2005, 16(1): 24-27
Authors:Tian Chun Wang Hongzhen Shanghai Jiaotong University  Shanghai
Affiliation:Tian Chun Wang Hongzhen Shanghai Jiaotong University,Shanghai,200240
Abstract:A free energy hysteresis model for giant magnetostrictive actuators was briefly presented,and the free energy hysteresis model was analysed.Four different numerical calculation methods are advanced. Computational precision and computational efficiency of the results obtained by using the four different numerical calculation methods were compared. These results also were compared to the calculation data and the experimental data in the published papers. It states that the method in which the approximately Gauss-Legendre integral method is used to integral discretization and matrix representation is used to implement integral kernel function not only increases computational efficiency but also guarantee computational precision. It is the optimum method for a free energy hysteresis model in giant magnetostrictive actuators.
Keywords:giant magnetostrictive actuator  free energy hysteresis model  computational efficiency  computational precision
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