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Intelligent Radiation Sensor System (IRSS) Advanced Technology Demonstration (ATD)

机译:智能辐射传感器系统(IRSS)先进技术演示(ATD)

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In response to the Domestic Nuclear Detection Office's (DNDO) BAA 09–102 Passport Systems, Inc. of Billerica, MA has carried out a system-level trade space study and started development of a networked system of Intelligent Personal Radiation Locators (IRPLs) and Human Portable Radiation Detection Systems (HPRDSs) designed to improve the detection, localization, and identification of potential radiological threats. A system of this nature is targeted to situations where it is not feasible to direct traffic through portal radiation detection systems, e.g. large events, search team objectives, etc. The capability to intelligently network individual portable detectors using advanced algorithms and COTS hardware has been shown within this program to significantly increase the effectiveness of an assortment of portable radiation detectors, including those devices currently available to first responders and search teams, in a variety of NORM (naturally occurring radioactive material) backgrounds. An overview of current work will be provided in two parts: 1) Results of our system analysis will highlight important drivers in the trade space of network protocols, detection efficiencies, computational requirements, and human interfaces; and 2) Development status of both the prototype hardware and the advanced suite of detection, localization, and identification algorithms will be shown. Conclusions are derived from a combination of simulation and actual data collection efforts.
机译:为了响应美国比勒里卡国家核能检测局(DNDO)的BAA 09-102 Passport Systems,Inc.,马萨诸塞州进行了系统级贸易空间研究,并开始开发智能个人辐射定位器(IRPL)和便携式辐射检测系统(HPRDS),旨在改善对潜在放射威胁的检测,定位和识别。这种性质的系统针对无法通过门口辐射探测系统直接引导交通的情况,例如:该程序中显示了使用高级算法和COTS硬件智能地将单个便携式探测器联网的功能,可以显着提高各种便携式辐射探测器的有效性,包括当前急救人员可用的那些设备。和搜寻小组,在各种NORM(天然放射性物质)背景下工作。当前工作的概述将分为两个部分:1)我们的系统分析结果将重点介绍网络协议,检测效率,计算要求和人机界面交易空间中的重要驱动因素; 2)将显示原型硬件和先进的检测,定位和识别算法套件的开发状态。结论来自模拟和实际数据收集工作的结合。

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