采用主动控制方法增强倾斜角度的二维微镜

H. Imam, R. Adamson, J. Brown, Yuan Ma
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引用次数: 5

摘要

利用微机电系统(MEMS)技术制造的静电驱动扭转微镜是许多光网络应用的基本组成部分,例如光波长选择开关、可配置光加丢复用器和光交叉连接。具有灵活的二次倾斜功能的二维(2D)微镜为网络设计者提供了巨大的价值。通常,静电MEMS微镜的设计是在镜板周围有一个框架,下面有四个方形电极。这种设计的主要缺点是X-Y倾斜是广泛耦合的,这使得控制系统的设计变得困难。在这项工作中,设计和控制了一个静电驱动的二维MEMS微镜。采用三角形电极实现相对解耦,并设计了多环比例、积分和导数(PID)控制器。仿真结果表明,该控制器实现了小倾角的解耦,可以实现比拉入角更大的可控倾角,从而显著提高了器件的性能和功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Two-dimensional (2D) micromirror with enhanced tilting angle using active control methods
Electrostatically actuated torsional micromirror fabricated using MicroElectroMechanical Systems (MEMS) technology is a fundamental building block for many optical network applications, such as optical wavelength-selective switch, configurable optical add-drop multiplexers and optical cross-connects. A two-dimensional (2D) micro-mirror functioning with a flexible secondary tilting offers tremendous value for the network designers. Commonly, electrostatic MEMS micromirrors have been designed with a gimbal surrounding the mirror plate and four square electrodes underneath. The main disadvantage of this type of design is the X-Y tilts are extensively coupled, which makes design of a control system difficult. In this work, design and control of an electrostatically actuated 2D MEMS micromirror has been reported. Triangular shaped electrodes have been used to achieve relative decoupling and a multi-loop proportional, integral and derivative (PID) controller is designed. The simulation results show that decoupling for small tilting angles has been achieved and that the controller can achieve a larger controllable tilting angle than the pull-in angle resulting in significantly enhanced device performance and functionality.
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