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    • 12. 发明申请
    • DEVICE AND METHOD FOR ASSESSING A POTENTIAL TARGET
    • 用于评估潜在目标的装置和方法
    • US20130050010A1
    • 2013-02-28
    • US13634503
    • 2011-03-17
    • Per-Åke Nordlander
    • Per-Åke Nordlander
    • G01S13/78G01S17/74
    • G01S17/74G01S13/78
    • The invention relates to a method for assessing, from a firing unit (101), a potential target (102) for said firing unit, comprising the steps of:—visually observing said potential target (102) through direction means;—initiating measuring of a range from said firing unit (101) to the potential target (102) by means of delivering an identifiable signal (S1);—at said potential target, receiving and analysing said signal (S1), said analysis comprising establishing that at least one of the parameters power, frequency, and durability configuration of said signal (S1)—comparing said at least one parameter with parameter indications stored in advance;—on correspondence, establishing that the firing unit belongs to own troop; and—delivering a visual signal (S2) from the potential target (102). The invention also relates to a computer program product comprising a program code (P) for a computer (200; 210) for implementing a method according to the invention. The invention also relates to a system and a firing unit being equipped with the device.
    • 本发明涉及一种用于从点火单元(101)估计用于所述点火单元的潜在目标(102)的方法,包括以下步骤: - 通过方向装置观察所述潜在目标(102); - 测量 通过传递可识别信号(S1)从所述点火单元(101)到潜在目标(102)的范围; - 在所述潜在目标处,接收和分析所述信号(S1),所述分析包括建立至少一个 所述信号(S1)的参数功率,频率和耐久性配置(将预先存储的参数指示与所述至少一个参数进行比较); - 确定所述点火单元属于自己的部队; 以及从所述潜在目标(102)传递视觉信号(S2)。 本发明还涉及包括用于实现根据本发明的方法的计算机(200; 210)的程序代码(P)的计算机程序产品。 本发明还涉及一种配备有该装置的系统和点火单元。
    • 14. 发明申请
    • FIREARM SENSOR SYSTEM
    • FIREARM传感器系统
    • US20120297654A1
    • 2012-11-29
    • US13481242
    • 2012-05-25
    • Nicholas WilliamsJames R. Brooker
    • Nicholas WilliamsJames R. Brooker
    • F41A99/00
    • F41A19/01F41A17/063G01S13/78
    • A firearm sensor system includes one or more sensor groups and a data storage device. Each of the sensor groups is configured for attachment to a firearm. One of the sensor groups includes a sensor for measuring a position of a firearm bolt relative to a start position of the bolt, and a wireless transmission component for wirelessly transmitting the sensor data. The data storage device includes a computer-readable medium having an executable application stored on the computer-readable medium. The application, when executed on a computing device, receives data from the sensor group via a wireless communication system and presents the data in a user interface displayed on a monitor. In one embodiment, the sensor includes a spring force sensor coupled to a bolt return spring on the firearm.
    • 火器传感器系统包括一个或多个传感器组和数据存储装置。 每个传感器组被配置为附接到枪支。 传感器组中的一个包括用于测量枪支螺栓相对于螺栓的起始位置的位置的传感器,以及用于无线传输传感器数据的无线传输部件。 数据存储设备包括具有存储在计算机可读介质上的可执行应用的计算机可读介质。 应用程序在计算设备上执行时,经由无线通信系统从传感器组接收数据,并将数据呈现在监视器上显示的用户界面中。 在一个实施例中,传感器包括联接到枪支上的螺栓复位弹簧的弹簧力传感器。
    • 15. 发明授权
    • RFID-based person location device
    • 基于RFID的人员定位设备
    • US08253570B1
    • 2012-08-28
    • US12080431
    • 2008-04-01
    • William B. McBride
    • William B. McBride
    • G08B13/14
    • G01S5/0284G01S5/12G01S13/74G01S13/78G08B21/0269G08B21/0275
    • A device that allows soldiers to find lost or captured comrades uses standard RFID technology wherein the missing soldier has an RFID tag on his person. The searcher uses a reader that uses a directional antenna in order to increase system range. The reader also has a digital compass thereon so that once the reader determines the direction to the missing soldier, the compass outputs the direction. An RFID radar on the reader determines the distance between the reader and the tag. A GPS chip on the reader gives the GPS coordinates of the reader while appropriate circuitry calculates the GPS coordinates for the tag based on the GPS coordinates for the reader, and the direction and distance to the tag. The reader and the tag communicate using spread spectrum technology in order to prevent system corruption.
    • 允许士兵找到丢失或被俘的同志的装置使用标准的RFID技术,其中丢失的士兵在他身上有RFID标签。 搜索者使用使用定向天线的读取器来增加系统范围。 读者还有一个数字指南针,以便一旦读者确定了对失踪的士兵的方向,罗盘就会输出方向。 阅读器上的RFID雷达决定了读卡器与标签之间的距离。 读卡器上的GPS芯片给出读卡器的GPS坐标,同时适当的电路根据读取器的GPS坐标以及与标签的方向和距离,计算标签的GPS坐标。 读者和标签使用扩频技术进行通信,以防止系统损坏。
    • 18. 发明申请
    • METHOD AND APPARATUS FOR ADS-B VALIDATION, ACTIVE AND PASSIVE MULTILATERATION, AND ELLIPTICAL SURVEILLANCE
    • 用于ADS-B验证,主动和被动多路复用和ELLIPTICAL监视的方法和装置
    • US20100149019A1
    • 2010-06-17
    • US12471384
    • 2009-06-06
    • Alexander E. SmithRussell HulstromCarl A. EversThomas J. Breen
    • Alexander E. SmithRussell HulstromCarl A. EversThomas J. Breen
    • G01S13/93G01S1/24G01S3/02G01S19/14G01S5/02
    • G01S11/02G01S5/0027G01S13/78G01S13/878G01S13/91G01S13/93
    • A system and method are disclosed to track aircraft or other vehicles using techniques including multilateration and elliptical surveillance. Unlike conventional approaches that use time difference of arrival for multilateration at a fixed set of reception points, this technique allows targets to be tracked from a number of dynamic or moving reception points. This allows for triangulation/multilateration and elliptical surveillance of targets from combinations of fixed, fixed and moving or only moving ground-based receivers, sea-based receivers, airborne receivers and space-based receivers. Additionally this technique allows for ADS-B validation through data derived from only two receivers to assess the validity and integrity of the aircraft self-reported position by comparing the time of arrival of the emitted message at the second receiver to the predicted time of message arrival at the second receiver based on the self-reported position of the aircraft and the time of arrival at the first receiver. The benefits of using less than three receivers for validation include greater validation coverage areas using a smaller set of ground stations at a lower infrastructure cost.
    • 公开了一种使用包括多点和椭圆监视的技术跟踪飞行器或其他车辆的系统和方法。 与在固定的接收点集合使用多点的到达时间差的常规方法不同,该技术允许从多个动态或移动的接收点跟踪目标。 这允许从固定,固定和移动或仅移动的地面接收机,海基接收机,机载接收机和基于天基的接收机的组合中对目标进行三角测量/多边测量和椭圆监视。 此外,该技术允许通过仅从两个接收机导出的数据进行ADS-B验证,以通过比较第二接收机处的发射消息的到达时间与消息到达的预计时间来评估飞行器自报位置的有效性和完整性 在第二接收机上,基于飞行器的自我报告位置和到达第一接收机的时间。 使用少于三个接收机进行验证的好处包括使用较小的基站成本的较小的地面站集更多的验证覆盖区域。
    • 19. 发明授权
    • Position detection system, position detection method therefor, position detection communication device, and communication device
    • 位置检测系统,位置检测方法,位置检测通信装置和通信装置
    • US07301467B2
    • 2007-11-27
    • US11254028
    • 2005-10-18
    • Shizuka IshimuraAkira Iketani
    • Shizuka IshimuraAkira Iketani
    • G08B21/00
    • B60R25/24G01S13/08G01S13/751G01S13/78G01S13/84G07C9/00309G07C2009/00555G07C2009/00793
    • In a position detection system, a plurality of first communication devices each comprise a transmitter for transmitting a distance-calculation signal for calculating distance to the second communication device; a detector for detecting, by receiving from the second communication device a signal corresponding to the distance-calculation signal, phase difference between the distance-calculation signal when transmitted and the signal corresponding to the distance-calculation signal when received; and a calculator for calculating the distance to the second communication device, based on the phase difference. A second communication device comprises a transmitter for transmitting the signal corresponding to the distance-calculation signal. The position detection system comprises a determining unit for determining whether the multiple distances are below a predetermined distance; and a position detector for detecting the position of a relay device corresponding to the multiple distances when the determining unit has determined that the multiple distances are at or above the predetermined distance.
    • 在位置检测系统中,多个第一通信装置各自包括用于发送用于计算到第二通信装置的距离的距离计算信号的发射机; 检测器,用于通过从所述第二通信设备接收与所述距离计算信号相对应的信号,当接收到所述距离计算信号时的距离计算信号与所述距离计算信号相对应的信号之间的相位差; 以及用于基于相位差计算到第二通信设备的距离的计算器。 第二通信设备包括用于发送对应于距离计算信号的信号的发射机。 位置检测系统包括用于确定多个距离是否低于预定距离的确定单元; 以及位置检测器,用于当所述确定单元确定所述多个距离处于或高于所述预定距离时,检测对应于所述多个距离的中继装置的位置。
    • 20. 发明授权
    • Detecting small, time domain impulsive communications signals
    • 检测小时域脉冲通信信号
    • US07298312B2
    • 2007-11-20
    • US11166207
    • 2005-06-27
    • Donald P. McLemore
    • Donald P. McLemore
    • G01S13/78H04B1/00
    • G01S13/78
    • A method and system are disclosed for generating and detecting secure UWB or relatively small time domain impulsive communications signals. A transmitter generates a sequence of at least three pulses having a predetermined template, and the pulses are generated in a predetermined sequence anywhere within a series of predetermined time intervals. A receiver detects the sequence of pulses within the predetermined intervals by convolving the predetermined template with the received signal. The information represented by the detected pulses is preferably used for secure communications.
    • 公开了用于产生和检测安全UWB或相对小的时域脉冲通信信号的方法和系统。 发射机产生具有预定模板的至少三个脉冲的序列,并且脉冲以预定的顺序在一系列预定时间间隔内的任何地方产生。 接收机通过将预定模板与所接收的信号进行卷积来检测预定间隔内的脉冲序列。 由检测到的脉冲表示的信息优选地用于安全通信。