摘要
介绍了一种平面线圈型电磁驱动的MEMS微驱动器,基于分段磁路的网络方程法,针对微电磁驱动器所采用的平面线圈的结构特点,比较了考虑磁动势的分布效应和传统的集总处理两种方法所建立的平面线圈微驱动器的非线性磁路模型.实验结果表明考虑线圈绕组半径不同而产生的分布效应可以为平面线圈型微驱动器建立可靠的模型,便于定量分析微驱动器结构物理参数对于磁通分布和电磁力的影响,从而为进一步优化设计该微电磁驱动器提供了理论分析依据.
A planar type MEMS electromagnetic actuator is described. Based on the network sloving method of magnetic circuits, considering the structural characteristic of planar coil, a comparison is made between two ways for nonlinear modeling of the device: distributed mechod and lumped method. The experimental results indicate that it is much more reliable to build a model considering the distributing effects caused by different radius of every coil turn. And this model helps to quantify the structure relying flux and magnetic force. Thus a theoretical method of further optimizing the device is provided.
出处
《传感技术学报》
CAS
CSCD
北大核心
2006年第05B期1920-1923,共4页
Chinese Journal of Sensors and Actuators
基金
国家自然科学基金项目资助(50405013)
上海市科委重点实验室基金项目资助(05dz22309)