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Concepts for Scalable, CDMA-Networked, M/LWIR Semiconductor Laser Standoff Chemical Detection System

机译:可扩展,CDMA网络,M / LWIR半导体激光宿舍化学检测系统的概念

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Mid-wave/Long-wave IR (3-14 um) semiconductor lasers such as QC and Sb can be used for standoff chemical agent sensing in a network architecture that is different from conventional absorption lidars. Compact, potentially inexpensive semiconductor lasers may allow using them in a large number that form a cooperative network in which, the integrated sensing information is much more than the sum of its parts. This paper presents a study of system architecture based on CDMA, similarly to a CDMA optical wireless network, which allows a system of many distributed units to plug-and-play and cooperate with each other for N~2 information scaling, rather than interfering with each other in non-networked architecture. This paper describes experimental studies with this system architecture, conducted with M/LWIR lasers, near-IR lasers, using wavelength-division-multiplexing (WDM) technique for high spectral fidelity, optical scanner for multi-spectral imaging, and simulated spatially distributed transmitters and receivers for sensor network. Specifically, the use of advanced lasers capable of broad and continuous wavelength tuning and modulation for WMS imaging is described. The experimental results suggest that M/LWIR spectral imaging with WDM multi-spectral transmitters is highly promising for chemical agent detection and visualization.
机译:中波/长波IR(3-14微米)的半导体激光器,例如QC和Sb可以用于在一个网络架构是从传统的吸收激光雷达不同支座的化学剂的感测。紧凑,廉价的潜在的半导体激光器可以允许在大量形成合作网络,其中,所述集成的感测信息是远远超过它的部分的总和使用它们。本文呈现系统体系结构的基于CDMA的一项研究中,类似于一个CDMA无线光网络,它允许许多分布的单元的一个系统,以插头和播放并且彼此为N〜2信息缩放协作,而不是与干扰彼此非联网架构。本文描述了与本系统的体系结构,具有M / LWIR激光器,近红外激光器进行实验性研究中,使用波分多路复用(WDM)技术对高的频谱保真度,对于多光谱成像光学扫描器,并模拟在空间上分布的发射机和用于传感器网络的接收器。具体而言,描述了使用能够广阔的先进激光器和连续波长调谐和调制。WMS成像。实验结果表明,M / LWIR光谱与WDM多光谱成像发射机是高度希望用于化学试剂检测和可视化。

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