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MOEMS translatory actuator characterisation, position encoding and closed-loop control

机译:MOEMS平移执行器特性描述,位置编码和闭环控制

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Recent developments in optical micro-electro-mechanical systems (MEMS) have produced rapidly oscillating translatory micro-mirrors with out-of-plane mirror displacements exceeding ±100 μm, which have a great potential for various applications requiring high-speed optical path difference modulation. A key factor affecting their practical applicability is a reliable operation control of the MEMS element. Presented here is a pro-active solution combining a laser reference interferometer with a novel position detection scheme and a dedicated control circuitry. By demodulating and processing the laser reference signal, the zero-crossing point of the moving MEMS device can be detected with an accuracy of one interference fringe only. This allows generating a highly accurate mirror control signal in real-time, enabling the implementation of a unique closed-loop control of such MEMS devices and thus ensuring optimally stable MEMS operation and maximal mechanical amplitudes even under varying environmental conditions. The presented solution so provides a vital step forward in the real-world deployment of optical systems using translatory micro-devices.
机译:光学微机电系统(MEMS)的最新发展已产生面外镜面位移超过±100μm的快速振荡平移微镜,对于需要高速光程差调制的各种应用具有巨大潜力。影响其实际适用性的关键因素是MEMS元件的可靠操作控制。这里介绍的是一种主动解决方案,它将激光参考干涉仪与新颖的位置检测方案和专用控制电路相结合。通过对激光参考信号进行解调和处理,可以仅以一个干涉条纹的精度检测运动的MEMS器件的零交叉点。这允许实时生成高度精确的镜像控制信号,从而能够实现此类MEMS器件的独特闭环控制,从而即使在变化的环境条件下也能确保最佳稳定的MEMS操作和最大机械振幅。因此,提出的解决方案为使用平移微设备的光学系统的实际部署提供了重要的一步。

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