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Aerosol hazard characterization and early warning network

机译:气溶胶危害特征描述和预警网络

摘要

An aerosol hazard classification and early warning network is composed of a large number of detector and analysis units, called “detector stations,” which are deployed throughout a region to be warned of a potentially hazardous aerosol intrusion. Such aerosol threats may originate from fires, volcanic eruptions, or overt releases of biological and chemical agents dispersed in aerosol form. Among the former are the characteristic toxic aerosols released during refinery fires or explosions. The latter biological agents include bacterial spores, lyophilized bacterial cells, and virus preparations, whereas chemical agents might include various forms of nerve gasses and other anti-personnel gasses such as mustard, all commonly deployed in aerosol form. Each detector station contains an aerosol handling unit that samples and transfers ambient aerosol particles one-at-a-time through a light scattering chamber where each such particle is constrained to pass through a fine laser beam producing, thereby, an outgoing scattered light wave. The scattering chamber contains a plurality of scattered light detectors arranged to accept light scattered into different angular locations. The signals detected at each detector position are processed by a corresponding digital signal processing chip with the resulting set of digitized signals being transferred to an on-board central processing unit. The CPU analyzes the set of light scattering signals and identifies or otherwise characterizes each particle. The classification/identification data are then stored and, on preprogrammed command, telemetered to a remote “central station” by means of an on-board telemetry unit. The central station analyzes the sets of data received from all the detector stations and then instructs, as necessary, selected detector stations via telemetric means to change their sampling and telemetry rates. As soon as sufficient data are available, the central determines the presence, threat, extent, and progress of the aerosol cloud. These factors are then telemetrically transmitted by means of alarms and warnings sent to potentially threatened regions.
机译:气溶胶危害分类和预警网络由大量的检测器和分析单元组成,称为“检测站”。会在整个区域部署这些设备,以警告可能存在危险的气溶胶入侵。此类气溶胶威胁可能源自火灾,火山喷发或以气溶胶形式散布的生物和化学制剂的明显释放。前者是在炼厂火灾或爆炸期间释放的特征性有毒气溶胶。后者的生物制剂包括细菌孢子,冻干的细菌细胞和病毒制剂,而化学制剂可能包括各种形式的神经毒气和其他杀伤人员毒气(例如芥子气),它们通常以气溶胶形式部署。每个检测站都包含一个气溶胶处理单元,该单元一次采样并通过光散射室传输周围的气溶胶颗粒,在光散射室中,每个这样的颗粒都被约束通过细激光束,从而产生散射光波。散射室包含多个散射光检测器,这些散射光检测器布置成接收散射到不同角度位置的光。在每个检测器位置上检测到的信号由相应的数字信号处理芯片进行处理,并将最终的数字化信号集传输到车载中央处理单元。 CPU分析光散射信号集并识别或表征每个粒子。然后存储分类/标识数据,并在预编程命令下遥测到远程“中央站”。通过车载遥测单元。中心站分析从所有检测器站接收到的数据集,然后根据需要通过遥测手段指示选定的检测器站以更改其采样率和遥测率。一旦有足够的数据可用,中央便确定气雾云的存在,威胁,程度和进展。然后,通过将警报和警告发送到潜在威胁区域,遥测传输这些因素。

著录项

  • 公开/公告号US6490530B1

    专利类型

  • 公开/公告日2002-12-03

    原文格式PDF

  • 申请/专利权人 WYATT TECHNOLOGY CORPORATION;

    申请/专利号US20000577108

  • 发明设计人 PHILIP J. WYATT;

    申请日2000-05-23

  • 分类号G01H310/00;

  • 国家 US

  • 入库时间 2022-08-22 00:04:47

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