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    • 3. 发明授权
    • Autonomous weapon effects planning
    • 自主武器效应规划
    • US09372053B2
    • 2016-06-21
    • US14011543
    • 2013-08-27
    • Raytheon Company
    • Erwin M. De SaDavid K. BarnettJeffrey B. SaundersDavid E. Bossert
    • F41H13/00F42C99/00F41G7/00F41G9/00
    • F41H13/00F41G7/007F41G9/00F41G9/002F42C99/00
    • A method for autonomous weapon effects planning includes receiving the desired lethality and collateral effects information on a target and autonomously selecting at least one weapon and fuze setting from an inventory of weapons based on the received lethality and collateral effects information. The method further includes autonomously; determining which weapon with fuze setting and terminal elevation and heading angles satisfies the desired lethality and collateral effects; shaping weapon trajectory to satisfy weapon maneuverability, terrain clobber avoidance and guidance requirements and planning weapon launch conditions for the one or more autonomously selected weapons. The weapon launch conditions include at least a launch point or a launch corridor.
    • 一种用于自主武器效果规划的方法包括:在目标上接收所需的杀伤力和抵押效应信息,并根据所接收到的杀伤力和抵押效应信息自动从武器库存中选择至少一个武器和引信设置。 该方法还包括: 确定哪些武器具有引信设置和终点仰角和航向角度,以满足所需的杀伤力和附带效应; 塑造武器轨迹,以满足武器机动性,地形避雷和指导要求,并为一种或多种自主选择的武器规划武器发射条件。 武器发射条件至少包括发射点或发射走廊。
    • 4. 发明申请
    • Techniques Deployment System
    • 技术部署系统
    • US20150369569A1
    • 2015-12-24
    • US14313401
    • 2014-06-24
    • The Boeing Company
    • Seth L. JahneBlake Jeffrey HarndenEric R. Van AlstJames M. ChanJames M. KalaskyAndrew Paul Riha
    • F41H13/00G06F9/44
    • G06F9/44F41G3/04F41G9/00
    • A method and apparatus for generating an effect. The apparatus comprises a group of tactical controllers and a mission controller. The group of tactical controllers control heterogeneous types of hardware to generate an effect for at least one of electronic warfare operations or cyber mission operations. A selected tactical controller in the group of tactical controllers controls a particular type of hardware using a technique that is specific for controlling the particular type of hardware to generate the effect. The mission controller identifies the effect for the selected tactical controller and assigns a task to the selected tactical controller. The selected tactical controller performs the task to control a particular type of hardware using the technique to generate the effect for at least one of the electronic warfare operations or the cyber mission operations.
    • 一种用于产生效果的方法和装置。 该装置包括一组战术控制器和任务控制器。 该组战术控制器控制异构类型的硬件,以产生至少一种电子作战操作或网络任务操作的效果。 该组战术控制器中所选择的战术控制器使用特定于控制特定类型的硬件以产生效果的技术来控制特定类型的硬件。 任务控制器识别所选战术控制器的效果,并将任务分配给所选择的战术控制器。 所选择的战术控制器执行任务以使用该技术来产生对于至少一个电子作战操作或网络任务操作的效果的特定类型的硬件。
    • 5. 发明授权
    • Targeting display system and method
    • 瞄准显示系统和方法
    • US08939366B1
    • 2015-01-27
    • US13658681
    • 2012-10-23
    • John T. Kelly
    • John T. Kelly
    • G06F19/00
    • F41G9/00F41G3/04F41G3/14F41G3/165
    • Systems and methods for displaying information on a targeting display are provided. A method comprises positioning a targeted object proximate a center of a targeting display image and providing a reticle below the target object. The reticle is configured to identify the targeted object to a user of the targeting display. The method further comprises providing a first plurality of data elements positioned along a vertical axis upon which the targeted object and reticle are also positioned. The first plurality of data elements include a range to the target, an azimuth to the target, and one or more error estimates relating to at least one of the range to the target or the azimuth to the target. The method further comprises providing a second plurality of data elements within a plurality of areas positioned proximate to one or more borders of the targeting display image.
    • 提供了在目标显示器上显示信息的系统和方法。 一种方法包括将目标对象定位在目标显示图像的中心附近并在目标对象下方提供掩模版。 标线被配置为向目标显示的用户识别目标对象。 该方法还包括提供沿着垂直轴定位的第一多个数据元素,目标对象和标线也位于该垂直轴上。 所述第一多个数据元素包括到所述目标的范围,到所述目标的方位角以及与所述目标的所述范围或所述目标的方位角中的至少一个有关的一个或多个误差估计。 所述方法还包括在定位在所述目标显示图像的一个或多个边界附近的多个区域内提供第二多个数据元素。
    • 6. 发明申请
    • HARMONIC SHUTTERED SEEKER
    • US20140374533A1
    • 2014-12-25
    • US13923986
    • 2013-06-21
    • Rosemount Aerospace, Inc.
    • Todd EllRobert Rutkiewicz
    • F42B15/01F41G9/00
    • F42B15/01F41G7/226F41G7/2293F41G9/00
    • A dual-mode, semi-active, laser-based and passive image-based seeker for projectiles, missiles, and other ordnance that persecute targets by detecting and tracking energy scattered from targets. The disclosed embodiments use a single digital imager having a single focal plane array sensor to sense data in both the image-based and laser-based modes of operation. A shuttering technique allows the relatively low frame-rate of the digital imager to detect, decode and localize in the imager's field-of-view a known pulse repetition frequency (PRF) from a known designator in the presence of ambient light and other confusing target designators, each having a different PRF.
    • 一种双模,半主动,基于激光和被动的图像探测器,用于通过检测和跟踪从目标散射的能量来迫害目标的射弹,导弹和其他武器。 所公开的实施例使用具有单个焦平面阵列传感器的单个数字成像器来检测基于图像和基于激光的操作模式中的数据。 快门技术允许数字成像器的相对较低的帧速率在成像器的视野中检测,解码和定位已知的脉冲重复频率(PRF),该已知的脉冲重复频率(PRF)在存在环境光和其他混淆目标的情况下来自已知的指示符 指示符,每个都有不同的PRF。
    • 7. 发明授权
    • Method and device for programming a projectile
    • 用于编制弹丸的方法和装置
    • US08746119B2
    • 2014-06-10
    • US13563803
    • 2012-08-01
    • Henry Roger Frick
    • Henry Roger Frick
    • F42C11/06F41G9/00F42C17/04
    • F42C11/065F41A21/32F41G9/00F42C11/008F42C17/04G01P3/665
    • An inductive or capacitative programming of a projectile is disclosed. A waveguide is used for the programming, the electromagnetic field being concentrated in the waveguide. The used programming unit includes at least one waveguide which is preferable located and/or integrated in the region of the muzzle, for example in front of the muzzle brake. A transmission coupler for the transmission is fed by a signal generator. The information relating to the projectile is modulated to the carrier frequency in the modulator. A reception coupler integrated on/in the projectile is electrically interconnected to a store or processor in the projectile. The reception coupler receives the modulated signal and transmits it to the processor which is where the eventual programming takes place.
    • 公开了一种对弹丸的感性或电容性编程。 波导用于编程,电磁场集中在波导中。 所使用的编程单元包括至少一个波导,其优选位于和/或集成在枪口的区域中,例如在枪口制动器的前面。 用于传输的传输耦合器由信号发生器馈送。 与射弹相关的信息调制到调制器的载波频率。 集成在射弹上的接收耦合器与射弹中的存储或处理器电互连。 接收耦合器接收调制信号并将其发送到最终编程发生的处理器。
    • 8. 发明申请
    • WIDE AREA NEUTRALIZER
    • 宽边中线
    • US20140144311A1
    • 2014-05-29
    • US14232286
    • 2012-07-04
    • Nahum OrlevAlon Orlev
    • Nahum OrlevAlon Orlev
    • F41H11/00F41G9/00F42B23/16
    • F41H11/00F41G9/00F42B12/202F42B12/22F42B12/60F42B23/16
    • A weapon system includes a number of WAN components, each WAN component includes a warhead, a launch mechanism for launching the warhead, an aiming mechanism for aiming the launch mechanism to launch the warhead in a desired direction, and a controller that, upon receipt of a command to aim and launch the warhead, operates the aiming mechanism to aim the warhead in the desired direction and then operates the launch mechanism to launch the warhead. The weapon system also includes a WAN component deployment mechanism for deploying the plurality of WAN components in a defended area; and a command center for instructing the controller of one or more of the WAN components to aim and launch the warhead of the each WAN component at a target that has been detected in the defended area.
    • 武器系统包括多个WAN组件,每个WAN组件包括弹头,用于发射弹头的发射机构,用于瞄准发射机构以期望的方向发射弹头的瞄准机构,以及控制器,在接收到 瞄准和发射弹头的指挥,实施瞄准机制,将弹头瞄准所需方向,然后运行发射机制发射弹头。 武器系统还包括用于在防御区域中部署多个WAN组件的WAN组件部署机制; 以及命令中心,用于指示所述WAN组件中的一个或多个的控制器在所述被防御区域中检测到的目标上瞄准并发射所述每个WAN组件的所述弹头。
    • 9. 发明申请
    • EVALUATION TOOL FOR VEHICLE SURVIVABILITY PLANNING
    • 车辆生存计划评估工具
    • US20130297096A1
    • 2013-11-07
    • US13463695
    • 2012-05-03
    • Carl R. Herman
    • Carl R. Herman
    • G06F17/00
    • F41H3/00F41G9/00G05D1/0202
    • Systems and methods for improving vehicle survivability. In some embodiments, an evaluation model may be built based at least in part on mission information. The mission information may comprise vehicle information regarding at least one vehicle and threat information regarding a plurality of threats to the at least one vehicle. The evaluation model may be used to assign a numerical measure to each potential action of a plurality of potential actions for the at least one vehicle, where the numerical measure may be based on measures of signature exposure relating to multiple threats of the plurality of threats. A sequence of actions to be executed by the at least one vehicle may be selected based at least in part on the respective numerical measures assigned to the plurality of potential actions, to improve the at least one vehicle's survivability against the plurality of threats.
    • 提高车辆生存能力的系统和方法。 在一些实施例中,可以至少部分地基于任务信息构建评估模型。 任务信息可以包括关于至少一个车辆的车辆信息和关于对至少一个车辆的多个威胁的威胁信息。 所述评估模型可用于为所述至少一个车辆的多个潜在动作的每个潜在动作分配数字测量,其中所述数值测量可以基于与所述多个威胁中的多个威胁相关的签名曝光的测量。 可以至少部分地基于分配给多个潜在动作的相应数值测量来选择要由至少一个车辆执行的动作序列,以改善至少一个车辆对多个威胁的生存性。
    • 10. 发明申请
    • Extra-sensory perception sharing force capability and unknown terrain identification system
    • 超感知共享力能力和未知地形识别系统
    • US20130176192A1
    • 2013-07-11
    • US13385039
    • 2012-01-30
    • Kenneth VargaJohn Hiett
    • Kenneth VargaJohn Hiett
    • G09G3/04
    • G09G3/04F41G3/04F41G9/00G01S13/86G01S17/023G06T15/40G06T17/05G09B9/003
    • An occlusion or unknown space volume confidence determination, and planning system using databases, position, and shared real time data to determine unknown regions allowing planning and coordination of pathways through space to minimize risk. Data such as from cameras, or other sensor devices can be shared and routed between units of the system. Hidden surface determination, also known as hidden surface removal (HSR), occlusion culling (OC) or visible surface determination (VSD), can be achieved by identifying obstructions from multiple sensor measurements and incorporating relative position with depth between sensors to identify occlusion structures. Weapons ranges, and orientations are sensed, calculated, shared, and can be displayed in real time. Data confidence levels can be highlighted from time, and frequency of data. The real time data can be displayed stereographically for and highlighted on a display.
    • 闭塞或未知空间体积置信度确定,以及使用数据库,位置和共享实时数据的规划系统来确定未知区域,允许通过空间规划和协调路径以最小化风险。 诸如来自照相机或其他传感器设备的数据可以在系统的单元之间共享和路由。 通过识别来自多个传感器测量的障碍物并将相对位置与传感器之间的深度结合以识别遮挡结构,可以实现隐藏的表面测定(也称为隐藏表面去除(HSR)),遮挡剔除(OC)或可视表面测定(VSD)。 武器范围和方向被感测,计算,共享,并可以实时显示。 可以从时间和数据频率突出显示数据置信水平。 实时数据可以立体显示,并在显示屏上突出显示。