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    • 63. 发明授权
    • Hand-held see-through-the-wall imaging and unexploded ordnance (UXO) detection system
    • 手持式透视墙成像和未爆炸弹药(UXO)检测系统
    • US08593329B2
    • 2013-11-26
    • US12983229
    • 2010-12-31
    • Farrokh MohamadiDavid Sharbaugh
    • Farrokh MohamadiDavid Sharbaugh
    • G01S13/00H01Q19/10H01Q3/12H01Q1/42H02B1/00
    • G01S13/888G01S13/0209G01S13/06
    • The housing of a portable radar unit includes features for providing positioning of auxiliary handles between a first position and a second position, in which: the first position places the auxiliary handles in a position to act as handgrips in conjunction with integral handles and the second position places the auxiliary handles at an angle to the integral handles, so that the radar unit can be held with one hand and supported by a forearm of the same hand. Rotation of each auxiliary handle about a pivot moves the auxiliary handle between the first position and the second position; and a friction mechanism resists the rotation so that the auxiliary handle tends to stay in position until purposefully moved. The housing also includes internal space for housing a radar antenna, a reflector, and a mechanism for adjusting distance between the reflector and the antenna for tuning performance of the antenna. The housing provides external access without intrusion into the housing for operating the adjusting mechanism.
    • 便携式雷达单元的壳体包括用于在第一位置和第二位置之间提供辅助手柄的定位的特征,其中:第一位置将辅助手柄放置在与整体手柄一起作为手柄的位置,并且第二位置 将辅助手柄放置在与整体手柄成一定角度的位置,使得雷达单元可以用一只手握住并由同一只手的前臂支撑。 每个辅助手柄围绕枢轴的旋转使辅助手柄在第一位置和第二位置之间移动; 并且摩擦机构抵抗旋转,使得辅助手柄倾向于保持就位直到有目的地移动。 壳体还包括用于容纳雷达天线的内部空间,反射器和用于调整反射器和天线之间的距离的机构,用于调谐天线的性能。 壳体提供外部访问,而不会侵入壳体以操作调节机构。
    • 65. 发明授权
    • Moving-entity detection
    • 移动实体检测
    • US08362942B2
    • 2013-01-29
    • US12391940
    • 2009-02-24
    • James McNeillTodd MacKeyTim Dyson
    • James McNeillTodd MacKeyTim Dyson
    • G01S13/52G01S13/524
    • G01S7/35A61B5/0507A61B5/1113G01S3/48G01S7/038G01S7/4004G01S13/38G01S13/42G01S13/584G01S13/888G01S13/90
    • A system and method for detecting entities based on movement can involve transmission circuitry configured to enable transmission of a stepped-frequency radar signal, an antenna, and receiving circuitry configured to generate data including information associated with frequency and phase shifts between the transmitted signal and the reflections of the transmitted signal. The system also can involve a processor configured to analyze the generated data to determine information associated with a moving object located at a side of a wall different than a side of the wall of which the system is located. The analyzing can involve compensating for the effect of motion of the system on the phase shifts between the transmitted signal and the reflections of the transmitted signal.
    • 用于基于运动来检测实体的系统和方法可以涉及被配置为能够传送阶梯式频率雷达信号,天线和接收电路的传输电路,该天线和接收电路经配置以产​​生包括与发射信号和 发射信号的反射。 该系统还可以涉及一种处理器,其被配置为分析生成的数据以确定与位于不同于系统所在的壁的一侧的壁的一侧的移动物体相关联的信息。 该分析可以涉及补偿系统运动对发射信号与发射信号的反射之间的相移的影响。
    • 66. 发明申请
    • FAST RAY TRACE TO IDENTIFY RADAR MULTIPATHS
    • 快速追踪识别雷达多媒体
    • US20130009804A1
    • 2013-01-10
    • US13178204
    • 2011-07-07
    • Mark L. Valentine
    • Mark L. Valentine
    • G01S13/42G01S13/06
    • G01S13/66G01S13/888
    • A method of detecting a target in a room using a radar system having a transmitter for irradiating the object, a sensor for receiving reflected radiation, and circuitry for analyzing the reflected radiation to determine at least one characteristic thereof, the method including determining at least one parameter for each wall of a plurality of walls of a room containing the target; determining possible signal paths between the target and the sensor for paths including up to N reflections based on the at least one parameter of each wall and the location of the sensor; calculating target image locations based on the possible signal paths; and processing the received radiation to determine a target location based on target image locations.
    • 一种使用具有用于照射物体的发射器的雷达系统,用于接收反射辐射的传感器和用于分析反射辐射的电路以确定其至少一个特征的雷达系统来检测目标的方法,所述方法包括确定至少一个 参数为包含目标的房间的多个墙壁的每个墙壁; 基于所述每个壁的所述至少一个参数和所述传感器的位置,确定所述目标和所述传感器之间用于包括多达N个反射的路径的可能的信号路径; 基于可能的信号路径计算目标图像位置; 以及处理所接收的辐射以基于目标图像位置来确定目标位置。
    • 68. 发明申请
    • SYSTEM AND METHOD FOR MOVING TARGET DETECTION
    • 用于移动目标检测的系统和方法
    • US20120182173A1
    • 2012-07-19
    • US13008549
    • 2011-01-18
    • Anthony F. MartoneKenneth I. Ranney
    • Anthony F. MartoneKenneth I. Ranney
    • G01S13/00
    • G01S13/888G01S7/2923G01S13/0209G01S13/538G01S13/723G01S13/90
    • A system and method of detecting moving targets comprises transmitting electromagnetic waves rays from a plurality of transmitters at sequential; receiving reflected waves into a plurality of receivers after each transmission; the compilation of the reflected waves from the plurality of receivers for each transmission representing a data frame; forming a signal that monitors changes between the two sets of frames; at least one processor operating to process and compare frames; forming a difference image using a back-projection algorithm; scanning the difference image using a constant false alarm rate (CFAR) window; the CFAR window scanning the entire difference image and identifying a list of points of interest and eliminating the sidelobe artifacts present in the difference image thereby creating CFAR images; processing the CFAR images using morphological processing to create a morphological image; determining the number of clusters present in the morphological image; using K-means clustering to indicate the centroid of each cluster; and tracking using a Kalman filter. The system comprises a plurality of M transmitters, a plurality of receivers, and at least one memory, the transmitters operating in sequence to transmit electromagnetic waves rays sequentially; the receivers receiving reflected waves after each transmission; the compilation of the reflected waves from the plurality of receivers for each transmission representing a data frame; at least one processor operating to perform the method.
    • 检测移动目标的系统和方法包括:顺序地从多个发射机发射电磁波射线; 在每次发送之后将反射波接收到多个接收机中; 针对代表数据帧的每个传输从多个接收机编译反射波; 形成监测两组帧之间的变化的信号; 用于处理和比较帧的至少一个处理器; 使用反投影算法形成差分图像; 使用恒定的误报率(CFAR)窗口扫描差分图像; CFAR窗口扫描整个差异图像并识别感兴趣的点的列表,并消除存在于差异图像中的旁瓣伪影,从而创建CFAR图像; 使用形态学处理处理CFAR图像以创建形态图像; 确定存在于形态图像中的簇的数量; 使用K均值聚类来表示每个聚类的质心; 并使用卡尔曼滤波器进行跟踪。 该系统包括多个M个发射机,多个接收机和至少一个存储器,所述发射机按顺序操作以顺序传送电磁波射线; 接收机在每次传输后接收反射波; 针对代表数据帧的每个传输从多个接收机编译反射波; 操作以执行该方法的至少一个处理器。
    • 69. 发明申请
    • REMOTE INTERROGATION FOR DETECTION OF ACTIVITY OR LIVING ORGANISMS INSIDE ELECTRONICALLY CONDUCTIVE CONTAINERS
    • 用于检测电子导电容器内的活动或生命有机体的远程监测
    • US20120119935A1
    • 2012-05-17
    • US13298209
    • 2011-11-16
    • Farrokh MohamadiMikko OijalaPaul Strauch
    • Farrokh MohamadiMikko OijalaPaul Strauch
    • G01S13/00A61B6/00
    • G01S13/0209G01S7/003G01S13/56G01S13/888
    • A system includes: a radar scanner disposed to scan the interior of a container; an interrogator in communication with the scanner; and a processing system in communication with the interrogator, in which the processing system displays information about the interior of the container. A method includes: mounting a radar scanner antenna to a container so as to scan the interior of the container; connecting a coupler to the scanner so that the scanner communicates scanning data via the coupler to the exterior of the container. Another method includes: coupling an interrogator and radar processing system to a scanner mounted on a container; and processing radar scan data from the interior of the container. Another method includes: linking a radar processing system via a communications link to an interrogator that is coupled to a scanner mounted on a container; and processing radar scan data from the interior of the container.
    • 一种系统包括:设置成扫描容器内部的雷达扫描仪; 与扫描仪通信的询问器; 以及与询问器通信的处理系统,其中处理系统显示关于容器内部的信息。 一种方法包括:将雷达扫描器天线安装到容器上以扫描容器的内部; 将耦合器连接到扫描仪,使得扫描器通过耦合器将扫描数据传送到容器的外部。 另一种方法包括:将询问器和雷达处理系统耦合到安装在容器上的扫描仪; 并从容器的内部处理雷达扫描数据。 另一种方法包括:通过通信链路将雷达处理系统连接到耦合到安装在容器上的扫描仪的询问器; 并从容器的内部处理雷达扫描数据。