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Autonomous Chemical and Biological Miniature Wireless-Sensor

机译:自主化学和生物微型无线传感器

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摘要

The presentation discusses a new concept and a paradigm shift in biological, chemical and explosive sensor system design and deployment. From large, heavy, centralized and expensive systems to distributed wireless sensor networks utilizing miniature platforms (nodes) that are lightweight, low cost and wirelessly connected. These new systems are possible due to the emergence and convergence of new innovative radio, imaging, networking and sensor technologies. Miniature integrated radio-sensor networks, is a technology whose time has come. These network systems are based on large numbers of distributed low cost and short-range wireless platforms that sense and process their environment and communicate data thru a network to a command center. The recent emergence of chemical and explosive sensor technology based on silicon nanostructures, coupled with the fast evolution of low-cost CMOS imagers, low power DSP engines and integrated radio chips, has created an opportunity to realize the vision of autonomous wireless networks. These threat detection networks will perform sophisticated analysis at the sensor node and convey alarm information up the command chain. Sensor networks of this type are expected to revolutionize the ability to detect and locate biological, chemical, or explosive threats. The ability to distribute large numbers of low-cost sensors over large areas enables these devices to be close to the targeted threats and therefore improve detection efficiencies and enable rapid counter responses. These sensor networks will be used for homeland security, shipping container monitoring, and other applications such as laboratory medical analysis, drug discovery, automotive, environmental and/or in-vivo monitoring. Avaak's system concept is to image a chromatic biological, chemical and/or explosive sensor utilizing a digital imager, analyze the images and distribute alarm or image data wirelessly through the network. All the imaging, processing and communications would take place within the miniature, low cost distributed sensor platforms. This concept however presents a significant challenge due to a combination and convergence of required new technologies, as mentioned above. Passive biological and chemical sensors with very high sensitivity and which require no assaying are in development using a technique to optically and chemically encode silicon wafers with tailored nanostructures. The silicon wafer is patterned with nano-structures designed to change colors ad patterns when exposed to the target analytes (TICs, TIMs, VOC).
机译:该演讲讨论了生物,化学和爆炸传感器系统设计和部署中的新概念和范式转变。从大型,沉重,集中式和昂贵的系统到利用轻便,低成本和无线连接的微型平台(节点)的分布式无线传感器网络。由于新的创新性无线电,成像,网络和传感器技术的出现和融合,这些新系统成为可能。微型集成无线电传感器网络是一种时代已经到来的技术。这些网络系统基于大量分布式低成本和短距离无线平台,这些平台可以感知和处理其环境,并通过网络将数据传送到命令中心。最近出现的基于硅纳米结构的化学和爆炸传感器技术,再加上低成本CMOS成像器,低功耗DSP引擎和集成无线电芯片的快速发展,为实现自主无线网络的愿景创造了机会。这些威胁检测网络将在传感器节点上执行复杂的分析,并在命令链中传达警报信息。预计这种类型的传感器网络将彻底改变检测和定位生物,化学或爆炸性威胁的能力。在大面积上分布大量低成本传感器的能力使这些设备能够接近目标威胁,从而提高检测效率并实现快速的对策。这些传感器网络将用于国土安全,集装箱监测以及其他应用,例如实验室医学分析,药物发现,汽车,环境和/或体内监测。 Avaak的系统概念是利用数字成像仪对彩色生物,化学和/或爆炸物传感器成像,分析图像并通过网络无线分发警报或图像数据。所有的成像,处理和通信都将在微型,低成本的分布式传感器平台内进行。但是,如上所述,由于所需新技术的结合和融合,该概念提出了重大挑战。具有高灵敏度且无需测定的无源生物和化学传感器正在开发中,该技术使用了一种光学和化学编码具有定制纳米结构的硅晶片的技术。硅晶片上的纳米结构被图案化,当暴露于目标分析物(TIC,TIM,VOC)时,纳米结构可以改变颜色和图案。

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