基于MEMS光交叉连接的光学仿射变换新方法

Li Li, Li-Jie Peng, Shi Zhiyong, C. Jianjun
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引用次数: 0

摘要

传统的光学仿射变换是由鸽子棱镜、反射镜和变焦透镜实现的,存在实验调节困难、精度低、灵活性和稳定性差等缺点。通过对二维光仿射变换的研究,提出了一种基于光纤束与微机电系统(MEMS)光交叉连接的光仿射变换新方法,利用MEMS与光纤束结合的开关特性实现了任意光仿射变换。这种方法可以有效地克服传统方法的缺点。此外,光学仿射变换可以解决图像迭代函数系统实现速度的瓶颈问题。光学实验结果与仿真结果的比较证明了该方法的优越性。
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An novel method for optical affine transform based on MEMS optical cross-connect
Conventional optical affine transform is implemented by dove prisms, mirrors, and zoom lens,with the shortage of experimental adjustment difficulties, low accuracy, poor flexibility and stability. By studying the two-dimensional optical affine transform, a novel method for optical affine transform based on optical fiber bundle and MEMS (Micro- Electromechanical Systems) optical cross-connect is proposed, and an arbitrary optical affine transform is realized by making use of the switch property of MEMS combined with optical fiber bundle. The shortcomings of traditional methods can be overcome effectively by this way. Additionally, the optical affine transform can solve the bottleneck problem of speed in realizing image iterated function systems. Comparison of optical experiment results and simulation results proves the superiority of this method.
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