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    • 2. 发明授权
    • Method of activating a mechanism, and device implementing such a method
    • 激活机制的方法,以及实现这种方法的装置
    • US09336414B2
    • 2016-05-10
    • US13329602
    • 2011-12-21
    • Bruno Folscheid
    • Bruno Folscheid
    • G05B15/02G06F21/81
    • G06F21/81
    • A method of activating a function such as unlocking a mobile telephone keypad by an instruction sequence {xi, . . . , xn} of a length n given to a user, who validates the sequence to activate the function. The instruction sequence is determined randomly, and for each instruction xi, the method includes: sending an instruction xi to the user; receiving a response yi from the user; analysis for validation of instruction xi; instruction xi is said to be validated when yi is a valid response for xi and the time elapsed between the sending of xi and the receipt of yi is shorter than a set period Δi; if instruction xi is not validated then the function is not activated; sending the next instruction, if any, after validation of xi; activating the function when at least the last instruction sent is validated.
    • 一种激活功能的方法,例如通过指令序列(xi,...)来解锁移动电话小键盘。 。 。 ,xn}给予用户一个长度为n,该用户验证激活该功能的顺序。 指令序列被随机确定,对于每个指令xi,该方法包括:向用户发送指令xi; 从用户接收响应yi; 指令验证的分析xi; 说明xi是对于xi的有效响应,并且发送xi和yi的接收之间经过的时间短于设定的周期&Dgr; i; 如果指令xi未被验证,则该功能不被激活; 在验证xi后发送下一条指令(如果有的话); 当至少发送的最后一条指令被验证时激活该功能。
    • 7. 发明申请
    • THREE-DIMENSIONAL LOCATION OF TARGET LAND AREA BY MERGING IMAGES CAPTURED BY TWO SATELLITE-BASED SENSORS
    • 目标地区的三维位置由两个基于卫星的传感器收集的图像进行合并
    • US20120226470A1
    • 2012-09-06
    • US13496518
    • 2010-09-09
    • Michael Seymour
    • Michael Seymour
    • G06F15/00
    • G01C11/02G01S13/867G01S13/90
    • Target land area is three-dimensionally located using an optical sensor and a radar sensor in satellites. The positions of the satellites are measured and images are captured when the sensors point toward land areas. The aiming direction of the optical sensor for each area is measured. The distance between each area and the radar sensor pointing thereto is measured. Images of land areas captured by the sensors and covering common areas are matched. The distance between the target area selected from the common areas and the optical sensor is accurately determined on the basis of the positions of the sensors, the distance between the target area and the radar sensor, and the aiming direction of the optical sensor, which are associated with the images covering the target area.
    • 目标陆地区域使用光学传感器和卫星雷达传感器三维定位。 当传感器指向陆地区域时,测量卫星的位置并拍摄图像。 测量每个区域的光学传感器的瞄准方向。 测量每个区域与指向其的雷达传感器之间的距离。 传感器捕获的土地面积和覆盖公共区域的图像相匹配。 基于传感器的位置,目标区域和雷达传感器之间的距离以及光学传感器的瞄准方向,准确地确定从公共区域选择的目标区域与光学传感器之间的距离, 与覆盖目标区域的图像相关联。
    • 8. 发明授权
    • Securing system and method using a security device
    • 使用安全设备保护系统和方法
    • US08250649B2
    • 2012-08-21
    • US12143237
    • 2008-06-20
    • Xavier GonzalezYann FleutotCyril Moquereau
    • Xavier GonzalezYann FleutotCyril Moquereau
    • G06F7/04
    • G06F21/41G06F21/34
    • System (1) for securing a data processing application, the said system comprising: first means (2) for interfacing with a security device (3); second means (4) for interfacing with the user; third means (6) for interfacing with the application and adapted for intercepting any request to use the said security device originating from the said application destined for the said security device; authentication means (8) connected to the first and second interfacing means, adapted for authenticating the user as legitimate user of the security device by requesting at least one secret; means (10) for storing the result of the authentication; validation means connected to the storage means and to the first and third interfacing means, adapted for authorizing any request originating from the application, destined for the said security device if and only if, the user is authenticated.
    • 用于保护数据处理应用的系统(1),所述系统包括:用于与安全装置(3)对接的第一装置(2); 用于与用户接口的第二装置(4); 第三装置(6),用于与所述应用程序进行接口,并且适于拦截任何使用来自所述应用程序的所述安全设备的任何请求发往所述安全设备; 连接到第一和第二接口装置的认证装置(8),适于通过请求至少一个秘密来认证用户作为安全设备的合法用户; 用于存储认证结果的装置(10); 连接到存储装置和第一和第三接口装置的验证装置,适用于授权来自应用程序的任何来自目的地为所述安全设备的请求,并且仅当用户被认证时。
    • 10. 发明授权
    • Data packet transmission method
    • 数据包传输方式
    • US09344226B2
    • 2016-05-17
    • US14350280
    • 2012-10-05
    • CASSIDIAN SAS
    • Philippe MegeChristophe MolkoMarc MouffronChristophe Brutel
    • H03M13/00H04L1/18
    • H04L1/18H04L1/1819H04L1/1845
    • This transmission comprising a first transmission of a packet (52), comprising the steps consisting in: a first processing (54) of said packet (52) to obtain a first packet (56); and a coding (57, 59) of the first packet (56); wherein, when the first coded packet is received erroneous, the method comprises a second transmission of said packet, comprising: the steps implemented in the transmitter, consisting in: a second processing (84) of said packet (52) to obtain a second packet (86); and a coding (87, 89) of the second packet (86); and the steps implemented in the receiver, consisting in: a modification of the first and/or the second coded packets to obtain two packets in which the difference due to the first and second processings is compensated for: a combination (110) of both packets according to a HARQ procedure; and a decoding (112) of the combined packet.
    • 该传输包括分组(52)的第一传输,包括步骤包括:所述分组(52)的第一处理(54)以获得第一分组(56); 和第一分组(56)的编码(57,59); 其中,当所述第一编码分组被错误接收时,所述方法包括所述分组的第二传输,包括:在所述发射机中实现的步骤,包括:所述分组(52)的第二处理(84)以获得第二分组 (86); 和第二分组(86)的编码(87,89)。 以及在接收机中实现的步骤,包括:修改第一和/或第二编码分组,以获得其中由于第一和第二处理导致的差异被补偿的两个分组:两个分组的组合(110) 根据HARQ程序; 以及组合分组的解码(112)。