Zhang Hao, Xu Dacheng, Zhang Xiaoyang, Chen Qiao, Xie Huikai, Li Suiqiong
School of Electronic and Information Engineering, Soochow University, Suzhou 215006, China.
Wuxi WiO Technology Co. Ltd, Wuxi 214000, China.
Sensors (Basel). 2015 Dec 10;15(12):30991-1004. doi: 10.3390/s151229840.
In this paper, the actuation behavior of a two-axis electrothermal MEMS (Microelectromechanical Systems) mirror typically used in miniature optical scanning probes and optical switches is investigated. The MEMS mirror consists of four thermal bimorph actuators symmetrically located at the four sides of a central mirror plate. Experiments show that an actuation characteristics difference of as much as 4.0% exists among the four actuators due to process variations, which leads to an average angular scan error of 0.03°. A mathematical model between the actuator input voltage and the mirror-plate position has been developed to predict the actuation behavior of the mirror. It is a four-input, four-output model that takes into account the thermal-mechanical coupling and the differences among the four actuators; the vertical positions of the ends of the four actuators are also monitored. Based on this model, an open-loop control method is established to achieve accurate angular scanning. This model-based open loop control has been experimentally verified and is useful for the accurate control of the mirror. With this control method, the precise actuation of the mirror solely depends on the model prediction and does not need the real-time mirror position monitoring and feedback, greatly simplifying the MEMS control system.
本文研究了一种常用于微型光学扫描探头和光开关的两轴电热微机电系统(MEMS)镜的驱动行为。该MEMS镜由四个热双压电晶片致动器组成,它们对称地位于中央镜板的四边。实验表明,由于工艺变化,四个致动器之间存在高达4.0%的驱动特性差异,这导致平均角扫描误差为0.03°。已建立了致动器输入电压与镜板位置之间的数学模型,以预测镜子的驱动行为。它是一个四输入、四输出模型,考虑了热-机械耦合以及四个致动器之间的差异;还监测了四个致动器端部的垂直位置。基于该模型,建立了一种开环控制方法以实现精确的角扫描。这种基于模型的开环控制已通过实验验证,对镜子的精确控制很有用。采用这种控制方法,镜子的精确驱动仅取决于模型预测,不需要实时监测镜子位置和反馈,大大简化了MEMS控制系统。