Kim Kwanghyun, Moon Seunghwan, Kim Jinhwan, Park Yangkyu, Lee Jong-Hyun
School of Mechanical Engineering, Gwangju Institute of Science and Technology, Gwangju 61005, Korea.
WeMEMS Co., Gwangju 61005, Korea.
Micromachines (Basel). 2019 Mar 27;10(4):217. doi: 10.3390/mi10040217.
This paper describes an input shaping method based on an experimental transfer function to effectively obtain a desired scan output for an electrostatic microscanner driven in a quasistatic mode. This method features possible driving extended to a higher frequency, whereas the conventional control needs dynamic modeling and is still ineffective in mitigating harmonics, sub-resonances, and/or higher modes. The performance of the input shaping was experimentally evaluated in terms of the usable scan range (USR), and its application limits were examined with respect to the optical scan angle and frequency. The experimental results showed that the usable scan range is as wide as 96% for a total optical scan angle (total OSA) of up to 9° when the criterion for scan line error is 1.5%. The usable scan ranges were degraded for larger total optical scan angles because of the nonlinear electrostatic torque with respect to the driving voltage. The usable scan range was 90% or higher for most frequencies up to 160 Hz and was drastically decreased for the higher driving frequency because fewer harmonics are included in the input shaping process. Conclusively, the proposed method was experimentally confirmed to show good performance in view of its simplicity and its operable range, quantitatively compared with that of the conventional control.
本文描述了一种基于实验传递函数的输入整形方法,以有效地为在准静态模式下驱动的静电微扫描仪获得所需的扫描输出。该方法的特点是可能将驱动扩展到更高频率,而传统控制需要动态建模,并且在减轻谐波、亚共振和/或更高模式方面仍然无效。通过可用扫描范围(USR)对输入整形的性能进行了实验评估,并针对光学扫描角度和频率检查了其应用限制。实验结果表明,当扫描线误差标准为1.5%时,对于高达9°的总光学扫描角度(总OSA),可用扫描范围宽达96%。由于相对于驱动电压的非线性静电力矩,对于更大的总光学扫描角度,可用扫描范围会降低。对于高达160 Hz的大多数频率,可用扫描范围为90%或更高,而对于更高的驱动频率,可用扫描范围急剧下降,因为输入整形过程中包含的谐波较少。总之,与传统控制相比,从其简单性和可操作范围来看,所提出的方法经实验证实具有良好的性能。