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    • 1. 发明申请
    • HIGH PERFORMANCE STRADDLE CARRIER CBRNE RADIATION VERIFICATION SYSTEM
    • 高性能梯形载波CBRNE辐射验证系统
    • WO2010006295A3
    • 2010-05-14
    • PCT/US2009050299
    • 2009-07-10
    • INNOVATIVE AMERICAN TECHNOLOGYFRANK DAVID L
    • FRANK DAVID L
    • G01V5/00G01T1/167G01T7/00
    • G01V5/0075G01T1/167G01V5/0083
    • A hazardous materials detection and identification system includes a set of distributed sensors across one or more sides of a self propelled frame structure such as a straddle carrier or similar cargo equipment device. The system non- invasively analyzes vehicles, one or more containers in a stack, a container during lift and movement, a package, cargo, or other objects, that are located in an analysis position relative to the self propelled frame structure for detection and identification of hazardous materials such as chemicals, biological materials, radiological materials, fissile materials, and explosives (CBRNE). The system includes one or more detector arrays that can be configured for various applications such as: shipping container inspection, seaport security, cargo terminal security, airport vehicle inspection, airport cargo inspection, airport baggage inspection, vehicle inspection, truck stop cargo inspection, border protection inspecting vehicles, cargo, persons, railway inspections, railcar inspection, and subway security.
    • 危险材料检测和识别系统包括跨越诸如跨乘架或类似的货物设备装置的自推进框架结构的一侧或多侧的一组分布式传感器。 该系统非侵入性地分析车辆,堆叠中的一个或多个容器,提升和移动期间的容器,包装,货物或其他物体,其位于相对于自推进框架结构的分析位置,用于检测和识别 危险材料,如化学品,生物材料,放射性材料,易裂变材料和爆炸物(CBRNE)。 该系统包括一个或多个可配置用于各种应用的探测器阵列,例如:集装箱检验,海港安全,货物终端安全,机场车辆检查,机场货物检查,机场行李检查,车辆检查,卡车停止货物检验,边界 保护检查车辆,货物,人员,铁路检查,轨道车辆检查和地铁安全。
    • 6. 发明申请
    • MULTI-STAGE SYSTEM FOR VERIFICATION OF CONTAINER CONTENTS
    • 用于验证集装箱内容的多级系统
    • WO2008118219A2
    • 2008-10-02
    • PCT/US2007085578
    • 2007-11-27
    • INNOVATIVE AMERICAN TECHNOLOGYFRANK DAVID L
    • FRANK DAVID L
    • G06Q10/00G06Q50/00
    • G01V5/0075G01J3/28G01T1/167G01V5/0083G06K9/0053G06Q10/08G06Q50/30
    • A multi-stage process detects and identifies radiation, explosives, and special materials within a shipping container. The process utilizes radiation sensors configured as nodes on a distributed network. The process collects radiation data from the nodes. The radiation data is associated with the container and its contents. The collected radiation data is dynamically adjusted according to dynamically changing background radiation data, such as relating to water, land, air, ground, and other structures. The process compares collected and adjusted radiation data to spectral images representing isotopes to identify one or more isotopes present. Identified isotopes are corresponded to possible materials that they represent. The possible materials are compared with the manifest of the container to confirm the identity of materials contained in the container or to detect and/or identify unauthorized materials in the container. A neutron pulse device could be used to identify shielded materials, explosives, and other types of materials.
    • 多级过程检测并识别运输集装箱内的辐射,爆炸物和特殊材料。 该过程利用配置为分布式网络上的节点的辐射传感器。 该过程从节点收集辐射数据。 辐射数据与容器及其内容相关联。 收集的辐射数据根据动态变化的背景辐射数据动态调整,如与水,陆地,空气,地面和其他结构有关的数据。 该过程将收集和调整的辐射数据与表示同位素的光谱图相比较,以鉴定存在的一种或多种同位素。 识别的同位素对应于它们所代表的可能材料。 将可能的材料与容器的容器进行比较,以确认容器中包含的材料的身份,或者检测和/或识别容器中的未经授权的材料。 中子脉冲装置可用于识别屏蔽材料,爆炸物和其他类型的材料。
    • 8. 发明申请
    • METHOD OF OBJECT IDENTIFICATION
    • 对象识别方法
    • WO2005098477A1
    • 2005-10-20
    • PCT/BY2004/000011
    • 2004-04-12
    • ANTANOUSKI, Aliaksandr, Alexeevich
    • ANTANOUSKI, Aliaksandr, Alexeevich
    • G01V5/00
    • G01V5/0083G01T1/40
    • The invention belongs to the field of remote object identification by its passive and/or active radiation, namely, the systems allowing to identify objects including the concealed ones. The goal of the invention under consideration is to develop a mobile and yet highly-efficient object detection and identification system by gamma, X-ray and neutron radiation. Besides, the other objective of the proposed invention is to make it possible to create a distributed multilevel system for a departmental use as well as an open system for common use. The problem put by is solved as follows: the expert system is designed to be multilevel. At a low level, the capacity of the portable computer sensor of the expert system is used; at a higher level - functioning of the local network of the expert system through communication links is realized; and the next level represents the global specialized expert system performance in real time. The transference from a lower level to a higher level takes place in the case of an object identification vagueness. There are other differences from the prototype. Thus, usage of all the features allows to solve the set problem - to develop a mobile yet highly efficient object registration and identification system.
    • 本发明通过其被动和/或主动辐射属于远程物体识别领域,即允许识别包括隐藏物体的物体的系统。 正在考虑的发明的目标是通过伽马射线,X射线和中子辐射开发移动而又高效的物体检测和识别系统。 此外,所提出的发明的另一个目的是使得可以创建用于部门使用的分布式多级系统以及用于常用的开放系统。 问题解决如下:专家系统设计为多层次。 在较低的水平,使用专家系统的便携式计算机传感器的容量; 通过通信链路实现了专家系统本地网的功能, 而下一层次代表了全球专家专家系统的实时绩效。 在对象识别模糊的情况下,从较低级别到较高级别的转移发生。 原型还有其他不同之处。 因此,所有功能的使用允许解决设定的问题 - 开发移动但高效的对象注册和识别系统。
    • 10. 发明申请
    • X-RAY INSPECTION SYSTEM
    • X射线检测系统
    • WO02082125A9
    • 2003-10-16
    • PCT/US0210229
    • 2002-04-03
    • L 3 COMM SECURITY & DETECTION
    • ELLENBOGEN MICHAEL P
    • G01V5/00
    • G01V5/0025G01V5/0041G01V5/0083
    • An X-Ray inspection system and methodology is disclosed. The system comprises a conveyor, an X-ray source that exposes an item under inspection to X-ray radiation and at least one X-ray detector that detects X-ray radiation modified by the item. The X-ray source and X-ray detector may be movable in any of first and second dimensions. The X-ray source may also be moved in a third dimension to zoom in and out on regions of interest in the item order inspection. The system further comprises a controller that controls movement of the X-ray source and X-ray detector, independently of each other, in any of collinear and different directions, to provide a plurality of X-ray views of the item at varying examination angles of the X-ray radiation. A processor coupled to the controller may be configured to receive and process detection information from the X-ray detector and to provide processed information to an operator interface. The operator interface may also receive instructions from an operator input and provide the instructions to the controller.
    • 披露了X射线检查系统和方法。 该系统包括输送机,将检查中的物品暴露于X射线辐射的X射线源和至少一个检测由该物品修改的X射线辐射的X射线检测器。 X射线源和X射线检测器可以在第一和第二维度中的任何一个中移动。 X射线源还可以在第三维度中移动以在物品订单检查中放大和缩小感兴趣的区域。 该系统还包括控制器,其控制X射线源和X射线检测器彼此独立的任何共线和不同方向的移动,以在变化的检查角度提供物品的多个X射线视图 的X射线辐射。 耦合到控制器的处理器可以被配置为从X射线检测器接收和处理检测信息,并将处理的信息提供给操作者界面。 操作员接口还可以从操作者输入接收指令,并向控制器提供指令。