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使用模块化光学元件的广域全向光学探测器阵列。

Wide-area and omnidirectional optical detector arrays using modular optical elements.

作者信息

Kaadan Asaad, Refai Hazem, LoPresti Peter

出版信息

Appl Opt. 2016 Jun 20;55(18):4791-800. doi: 10.1364/AO.55.004791.

Abstract

This paper presents novel, modular optical detector arrays of various shapes and configurations. Recently developed Modular Optical Wireless Elements (MOWE) architecture serves as the basis for large and complex optical detector arrays that can be constructed as geometric shells and provide wide-area even omnidirectional field-of-view (FoV). Programmable optical modules synchronously sample the environment, and then route measurements to the user through a dedicated electrical backbone. The arrays are inexpensive, easy to construct, and can be made with homogeneous/inhomogeneous optical properties. Applications include remote sensing, motion detection, optical navigation, and medical imaging, among others. We present the MOWE detector array concept with a detailed optical analysis and a suggested design methodology, as well as a number of various demonstrations. We also utilize wavelength-diversity of MOWE arrays to demodulate two overlapping signals, showing that many diversity-based algorithms can be conveniently prototyped and implemented.

摘要

本文介绍了各种形状和配置的新型模块化光学探测器阵列。最近开发的模块化光学无线元件(MOWE)架构是大型复杂光学探测器阵列的基础,这些阵列可以构建为几何外壳,并提供广域均匀全向视场(FoV)。可编程光学模块对环境进行同步采样,然后通过专用电气主干将测量结果路由给用户。这些阵列成本低廉、易于构建,并且可以具有均匀/非均匀光学特性。其应用包括遥感、运动检测、光学导航和医学成像等。我们通过详细的光学分析和建议的设计方法,以及一些不同的演示,展示了MOWE探测器阵列的概念。我们还利用MOWE阵列的波长分集来解调两个重叠信号,表明许多基于分集的算法可以方便地进行原型设计和实现。

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