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    • 1. 发明申请
    • BIOMETRIC FACIAL SURVEILLANCE SYSTEM
    • 生物特征监护系统
    • US20100157040A1
    • 2010-06-24
    • US12161006
    • 2007-01-14
    • Alon OFIR
    • Alon OFIR
    • H04N7/18
    • G06K9/00275G06K9/6292G06K9/6293
    • A biometric facial surveillance system comprise at least one independent, stand-alone biometric unit operative to acquire and process biometric parameters to provide a complete verification or identification of a person. In a preferred embodiment, each biometric unit includes a camera operative to provide a two dimensional (2D) video stream and a 3D pixel depth data stream, and at least one processing unit operative to process the 2D video stream and a 3D pixel depth data stream into biometric parameters that verify or identify the particular person. In alternative embodiments, a plurality of biometric units is connected to a biometric server and an applications server which provide management functions.
    • 生物识别面部监视系统包括至少一个独立的独立生物测定单元,其操作以获取和处理生物特征参数以提供人的完整验证或识别。 在优选实施例中,每个生物测定单元包括可操作以提供二维(2D)视频流和3D像素深度数据流的照相机,以及可操作以处理2D视频流和3D像素深度数据流的至少一个处理单元 成为生物特征参数,用于验证或识别特定人物。 在替代实施例中,多个生物测定单元连接到生物测定服务器和提供管理功能的应用服务器。
    • 2. 发明授权
    • Personal rifle-launched reconnaisance system
    • 个人步枪发射侦察系统
    • US07679037B2
    • 2010-03-16
    • US10539340
    • 2003-12-18
    • Benjamin Z. EdenRonen Ben-Horin
    • Benjamin Z. EdenRonen Ben-Horin
    • F42B12/36F42B12/00F42B15/00
    • F42B12/365
    • A reconnaissance system includes a projectile having an opening through which images of a target area are acquired, a portable launcher having a mechanism for affixing the launcher to a rifle for launching the projectile to fly along and above the target area, an image acquiring device within the projectile for acquiring images of the target area through the opening, a transmitter within the projectile for transmitting during its flight the acquired images to a remote station, a stabilizing mechanism for stabilizing at least one of the projectile and the image acquiring device while flying in a ballistic trajectory above the target area and a remote station. The remote station includes a receiver for receiving the images transmitted from the projectile and a monitor having a display for displaying the received images.
    • 侦察系统包括具有目标区域的图像的开口的射弹,具有用于将发射器固定到用于发射射弹以在目标区域上方飞行的步枪的机构的便携式发射器, 用于通过开口获取目标区域的图像的射弹,用于在飞行期间发射所获取的图像到远程站的射弹内的发射器,用于在飞行期间稳定至少一个射弹和图像获取装置的稳定机构 在目标区域上方的弹道轨迹和远程站。 远程站包括用于接收从射弹发射的图像的接收器和具有用于显示接收到的图像的显示器的监视器。
    • 4. 发明申请
    • Passive armor assembly including an armor member made of a brittle material
    • 被动装甲组件,包括由脆性材料制成的装甲构件
    • US20100011947A1
    • 2010-01-21
    • US11142672
    • 2005-06-02
    • Yehoshua YeshurunYechezkel AshuachZvi Rosenberg
    • Yehoshua YeshurunYechezkel AshuachZvi Rosenberg
    • F41H5/04F41H5/02
    • F41H5/04
    • Disclosed is a passive armor assembly for protecting a body disposed behind it from an impact of a long rod penetrator (hereinafter LRP). The armor assembly includes an armor surface that is capable of exerting asymmetric forces on the oncoming LRP and an armor member being disposed behind the armor surface. The armor member is made of a high compression strength, low density, brittle material, and its thickness along the direction of the impact exceeds the length of the LRP. Preferably, the thickness is at least 1.5 the length of the LRP. In a preferred embodiment the armor member is made of a material exhibiting the combination of fracture toughness smaller than 3 MPam1/2, density of less than 2 g/cc, and compression strength of from 102 to 103 MPa.
    • 公开了一种被动的装甲组件,用于保护设置在其后面的主体免受长杆穿透器(以下称为LRP)的冲击。 该装甲组件包括能够在即将到来的LRP上施加不对称力的装甲表面和设置在铠装表面之后的装甲构件。 该装甲构件由高压缩强度,低密度,脆性材料制成,其沿着冲击方向的厚度超过了LRP的长度。 优选地,厚度为LRP的长度至少为1.5。 在优选实施例中,铠装部件由表现出小于3MPam1 / 2,密度小于2g / cc,压缩强度为102至103MPa的断裂韧性的组合的材料制成。
    • 7. 发明申请
    • AIRBORNE RECONNAISSANCE SYSTEM
    • AIRBORNE重新建立系统
    • US20080211912A1
    • 2008-09-04
    • US11926862
    • 2007-10-29
    • Israel GreenfeldZvi YavinBernd Uhl
    • Israel GreenfeldZvi YavinBernd Uhl
    • H04N7/18G01C11/02G01C21/00
    • G01C11/02
    • An airborne reconnaissance system comprising: (1) Gimbals having at least two degrees of freedom; (2) At least one array of light sensors positioned on the gimbals, for being directed by the same within at least two degrees of freedom; (3) Map storage means for storing at least one Digital Elevation Map of an area of interest, divided into portions; (4) Inertial Navigation System for real-time providing to a gimbals control unit navigation and orientation data of the aircraft with respect to a predefined global axes system; (5) Portion selection unit for selecting, one at a time, another area portion from the area of interest; and (6) servo means for directing the gimbals. The system uses data from the inertial navigation system and from the digital elevation map for real-time calculating direction to selected area portions, and for maintaining the direction during integration of light from the terrain, and for producing corresponding images of area portions.
    • 一种机载侦察系统,包括:(1)具有至少两个自由度的万用表; (2)定位在万向面上的至少一组光传感器,由至少两个自由度引导; (3)地图存储装置,用于存储感兴趣区域的至少一个数字高程图,被分成多个部分; (4)惯性导航系统,用于相对于预定义的全局轴系统实时提供飞行器的万向节控制单元导航和定向数据; (5)部分选择单元,用于一次一个地选择来自感兴趣区域的另一区域部分; 和(6)用于引导万向架的伺服装置。 该系统使用来自惯性导航系统的数据和数字高程图的实时计算方向的数据,并且用于在来自地形的光的集成期间保持方向,并且用于产生区域部分的相应图像。
    • 8. 发明授权
    • Method and system for processing and analyzing Digital Terrain Data
    • 数字地形数据处理和分析方法与系统
    • US07403856B2
    • 2008-07-22
    • US10536937
    • 2003-12-19
    • Yigal MoscovitzSergey VichicMichal AttiaRami Ben-Ari
    • Yigal MoscovitzSergey VichicMichal AttiaRami Ben-Ari
    • F41G7/34
    • G01C21/005
    • A method for processing and analyzing digital terrain data utilizing Digital Terrain Elevation Data (DTED). The method comprises defining approach azimuth and visibility limitations angle which are used for defining directional fans by determining fan opening angle, fan azimuth, and maximal range for terrain analysis. At least one directional fan data set is constructed from at least one source point within the DTED, where the directional fan includes line of sight information between said source point and DTED points located within said directional fan. The method further comprises interrogating said data sets by one or more queries to obtain terrain information for given approach conditions.
    • 一种使用数字地形高程数据(DTED)处理和分析数字地形数据的方法。 该方法包括通过确定用于地形分析的风扇开度角,风扇方位角和最大范围来定义用于定义定向风扇的进近方位和可见度限制角。 至少一个定向风扇数据组由D D D内的至少一个源点构成,其中定向风扇包括位于所述定向风扇内的所述源点和DTED点之间的视线信息。 该方法还包括通过一个或多个查询询问所述数据集,以获得用于给定接近条件的地形信息。
    • 9. 发明申请
    • Helmet System for Information or Weapon Systems
    • 信息或武器系统头盔系统
    • US20080048931A1
    • 2008-02-28
    • US10596006
    • 2004-11-18
    • Tsafrir Ben-Ari
    • Tsafrir Ben-Ari
    • G09G5/00
    • G02B27/017A42B3/0433A61B3/113A61B5/11A61B5/6814A61B2562/0219F41G3/225G01C21/165G01S5/163G02B2027/0187G06F3/012G06F3/013G06F3/0304
    • A helmet position measuring system for use in a predefined environment. The system includes a helmet-mounted illumination system for directing electromagnetic radiation of one or more wavelength from the helmet in one or more range of angles, a set of three or more passive reflectors deployed at fixed positions in the predefined environment to reflect electromagnetic radiation from the illumination system, a helmet-mounted imaging system sensitive to the one or more wavelength for deriving images of part of the predefined environment including electromagnetic radiation reflected from the reflectors, and a processing system associated with the imaging system for processing the images to identify regions of the images corresponding to the reflectors and hence to determine information relating to a position of the helmet within the predefined environment.
    • 一种用于预定义环境的头盔位置测量系统。 该系统包括头盔安装的照明系统,用于以一个或多个角度范围从头盔引导一个或多个波长的电磁辐射,一组三个或更多个无源反射器,部署在预定环境中的固定位置,以反映来自 照明系统,对于一个或多个波长敏感的头盔安装的成像系统,用于导出预定环境的一部分的图像,包括从反射器反射的电磁辐射,以及与成像系统相关联的处理系统,用于处理图像以识别区域 并且因此确定与预定环境内的头盔的位置有关的信息。
    • 10. 发明授权
    • Parachuted radar decoy
    • 降落雷达诱饵
    • US07336216B2
    • 2008-02-26
    • US11406446
    • 2006-04-18
    • Gil Weisbrod
    • Gil Weisbrod
    • H01Q15/00H04K3/00G01S13/00
    • H01Q15/18G01S7/38H01Q15/20
    • A radar decoy having radar reflectors disposed in the interior of the inflated canopy of a descending parachute as a first set of four corner reflectors, and a second set of corner reflectors disposed on the exterior of the canopy integral with the first set of corner reflectors, to form an octahedron of eight corner reflectors. The radar decoy is pliable and folded with the parachute for stowage in the interior of a canister. When loaded on a vehicle flying in a trajectory, the canister may open at a point P on the trajectory, to release the parachute, and thereby deploy the radar decoy to become operative.
    • 雷达诱饵具有雷达反射器,其设置在下降降落伞的充气舱顶的内部,作为第一组四个角反射器,以及设置在与第一组角反射器集成的顶篷的外部上的第二组角反射器, 形成八角反射器的八面体。 雷达诱饵是柔韧的,并与降落伞折叠,用于装载在罐的内部。 当装载在以轨迹飞行的车辆上时,罐可以在轨迹上的点P处打开,以释放降落伞,从而部署雷达诱饵使其变得可操作。