首页> 外文会议>Conference on Multisensor, Multisource Information Fusion: Architectures, Algorithms, and Applications 2003 Apr 23-25, 2003 Orlando, Florida, USA >CB DETECTION AND EARLY WARNING ― FUSING DISPARATE SENSORS INTO THE DETECTION PROCESS PROGRAM OVERVIEW
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CB DETECTION AND EARLY WARNING ― FUSING DISPARATE SENSORS INTO THE DETECTION PROCESS PROGRAM OVERVIEW

机译:CB检测和早期警告―将离散传感器引入检测过程计划概述

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摘要

Improved situational awareness is a primary goal for the Objective Force. Knowing where the enemy is and what are the threats to his troops provides the commander with the information he needs to plan his mission and provide his forces with maximum protection from the variety of threats that are present on the battlefield. Sensors play an important role in providing critical information to enhance situational awareness. The sensors that are used on the battlefield include, among others, seismic, acoustic, and cameras in different spectral ranges of the electromagnetic spectrum. These sensors help track enemy movement and serve as part of an intrusion detection system. Characteristically these sensors are relatively cheap and easy to deploy. Chemical and biological agent detection is currently relegated to sensors that are specifically designed to detect these agents. Many of these sensors are collocated with the troops. By the time alarm is sounded the troops have already been exposed to the agent. In addition, battlefield contaminants frequently interfere with the performance of these sensors and result in false alarms. Since operating in a contaminated environment requires the troops to don protective garments that interfere with their performance we need to reduce false alarms to an absolute minimum. The Edgewood Chemical and Biological Center (ECBC) is currently conducting a study to examine the possibility of detecting chemical and biological weapons as soon as they are deployed. For that purpose we conducted a field test in which the acoustic, seismic and electro-magnetic signatures of conventional and simulated chemical / biological 155mm artillery shells were recorded by an array of corresponding sensors. Initial examination of the data shows a distinct differences in the signatures of these weapons. In this paper we will provide detailed descriptions of the test procedures. We will describe the various sensors used and describe the differences in the signatures generated by the conventional and the (simulated) chemical rounds. This paper will be followed by other papers that will provide more details information gained by the various sensors and describe how fusing the data enhance the reliability of the CB detection process.
机译:增强态势意识是目标部队的主要目标。知道敌人的位置以及对他的部队有什么威胁,将为指挥官提供计划任务所需的信息,并为他的部队提供最大程度的保护,使其免受战场上存在的各种威胁的侵害。传感器在提供关键信息以增强态势感知方面起着重要作用。战场上使用的传感器包括电磁频谱不同频谱范围内的地震,声学和摄像机。这些传感器有助于跟踪敌人的运动,并作为入侵检测系统的一部分。这些传感器的特点是相对便宜且易于部署。目前,化学和生物制剂检测仅限于专门设计用于检测这些制剂的传感器。这些传感器中有许多与部队并置。等到警报响起,部队已经与特工接触了。此外,战场上的污染物经常会干扰这些传感器的性能,并导致误报。由于在受污染的环境中操作需要部队穿上会干扰其性能的防护服,因此我们需要将误报率降至最低。埃奇伍德化学和生物中心(ECBC)目前正在进行一项研究,以检查一旦部署化学和生物武器便能发现的可能性。为此,我们进行了现场测试,其中通过一系列相应的传感器记录了常规和模拟的化学/生物155毫米炮弹的声学,地震和电磁特征。对数据的初步检查显示,这些武器的特征明显不同。在本文中,我们将提供有关测试程序的详细说明。我们将描述所使用的各种传感器,并描述由常规和(模拟)化学回合生成的特征码之间的差异。本文之后将是其他论文,这些论文将提供各种传感器获得的更多详细信息,并描述如何融合数据来增强CB检测过程的可靠性。

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