Design of a control system for interferometric fringe stabilization system with remote access

Javier Espitia-Gómez, Luciano Ángel-Toro, D. Velásquez
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Abstract

Stability in a fringe pattern is a necessary condition in interferometric processes, such as holography, and not always is enough the use of passive stabilization systems, like holographic tables, in particular, when perturbations are caused by thermal or acoustic variations. For these cases, active systems are required. In this work it is presented the implementation of a control system for interferometric fringes stabilization. The interferometric arrangement characteristics are also discussed, which permits to act independently over each of the interferometer's arms by means of two piezoelectric actuators that change the length of the optical path of light that goes through, in order to perturb the system and simultaneously compensate this perturbation in real time. It is also shown that the proposed system allows evaluating the control system's performance subjected to diverse perturbations, and it is shown how remote access was given to the implemented platform.
远程干涉条纹稳定系统控制系统的设计
条纹图案的稳定性是干涉测量过程(如全息)的必要条件,而被动稳定系统(如全息表)的使用并不总是足够的,特别是当扰动是由热或声变化引起的。对于这些情况,需要主动系统。本文介绍了干涉条纹稳定控制系统的实现。还讨论了干涉测量的排列特性,该特性允许通过两个压电致动器在干涉仪的每个臂上独立作用,这两个压电致动器改变通过的光路的长度,以扰动系统并同时实时补偿这种扰动。还表明,所提出的系统允许评估控制系统在各种扰动下的性能,并展示了如何远程访问所实现的平台。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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