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    • 2. 发明申请
    • VEHICLE-BORNE INSPECTION SYSTEM
    • 车辆检测系统
    • WO2016034101A2
    • 2016-03-10
    • PCT/CN2015088732
    • 2015-09-01
    • UNIV TSINGHUANUCTECH CO LTD
    • KANG KEJUNGU JINGYUCHEN ZHIQIANGLI JIANMINLI YUANJINGLI YULANWANG DONGYU
    • G01N23/04
    • G01V5/0066G01V5/0016
    • Disclosed in the present invention is a vehicle-borne inspection system, said system comprising: a chassis (1011), a rotatable mechanism (105) disposed upon the chassis (1011), a first radiation-emitting device connected to the rotatable mechanism (105) and used for emitting radiation, a first probe device connected to the rotatable mechanism (105) and used for receiving radiation emitted by the first radiation-emitting device, and a second radiation-emitting device connected to the rotatable mechanism (105) and used for emitting radiation. The rotatable mechanism (105) is able substantially to cause the first radiation-emitting device, the first probe device and the second radiation-emitting device to rotate around a vertical axis from a rest position to a working position. By means of the installation on a transport vehicle (101) of a plurality of imaging devices, a multi-point perspective image of an object can thus be obtained from a single scan.
    • 本发明公开了一种车载检查系统,所述系统包括:底盘(1011),设置在底盘(1011)上的可旋转机构(105),连接到可旋转机构(105)的第一发光装置 )并用于发射辐射的第一探测器装置,连接到可旋转机构(105)并用于接收由第一发射辐射装置发射的辐射的第一探测器装置,以及连接到可旋转机构(105)并被使用的第二发射辐射装置 用于发射辐射。 可旋转机构(105)能够基本上使得第一发光装置,第一探测装置和第二发光装置围绕垂直轴线从静止位置旋转到工作位置。 借助于在多个成像装置的运输车辆(101)上的安装,因此可以从单次扫描获得物体的多点透视图像。
    • 4. 发明公开
    • ARTICLES DETECTION DEVICE AND DETECTION METHOD THEREOF
    • ARTIKELDETEKTIONSVORRICHTUNG UND DETEKTIONSVERFAHRENDAFÜR
    • EP2589954A4
    • 2013-11-20
    • EP10854001
    • 2010-12-28
    • UNIV TSINGHUANUCTECH CO LTD
    • YANG YIGANGLI TIEZHUZHANG QINJIANZHANG YIJIN YINGKANGCHEN QINGHAOLI YUANJINGLIU YINONG
    • G01V5/00G01N23/04
    • G01V5/0016G01N23/046G01N23/05G01N2223/419G01V5/0025
    • The present invention discloses an article inspection device, comprising: a x-ray machine, a collimation unit (4), a transmission detector array (10) and a scattering detector array (12). The scattering detector array comprising a plurality of same scattering detector modules arranged in a matrix of i-rows and j-columns. A transmission cross section (8) of the article (7) transmitted by the x-rays is divided into a plurality of same sub-regions arranged in a matrix of i-rows and j-columns. The plurality of scattering detector modules arranged in i-rows and j-columns correspond to the plurality of sub-regions arranged in i-rows and j-columns one by one for detecting pair production effect annihilation photons and Compton-effect scattering photons from the respective sub-regions. Obtaining atomic numbers of the respective sub-regions based on a ratio of the pair production effect annihilation photon count to the Compton-effect scattering photon count, so as to form a three-dimensional image of the article. In addition, the present invention further discloses an article inspection method.
    • 本发明公开了一种物品检测装置,包括:X射线机,准直单元(4),透射检测器阵列(10)和散射检测器阵列(12)。 散射检测器阵列包括以i行和j列的矩阵排列的多个相同的散射检测器模块。 通过X射线透射的物品(7)的透射横截面(8)被划分为布置成i行和j列的矩阵的多个相同的子区域。 排列成i行j列的多个散射检测器模块一个接一个对应于排列在i行j列中的多个子区域,用于检测成对生产效应湮没光子和康普顿效应散射光子, 各个子区域。 基于成对效应湮没光子计数与康普顿效应散射光子计数的比率来获得各个子区域的原子数,从而形成物品的三维图像。 另外,本发明还公开了一种物品检查方法。