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    • 43. 发明授权
    • Dynamic resource assignment and exit information for emergency responders
    • 紧急应急人员的动态资源分配和退出信息
    • US07855639B2
    • 2010-12-21
    • US11767610
    • 2007-06-25
    • Hemang F. PatelAnthony R. Metke
    • Hemang F. PatelAnthony R. Metke
    • G08B1/08
    • A62B3/00A62B99/00A62C99/0081G01S5/02G08B7/066
    • A method of providing situational awareness at an incident scene. Sensor data can be received from at least one sensor (104, 106, 108) located at the incident scene and position data can be received for at least one resource (306, 308, 310, 312). Based on the received data, at least one optimal exit route (318) at the incident scene can be calculated. The present invention also relates to a system (118) that provides situational awareness at an incident scene. The system can include a communications adapter (204) that receives sensor data from at least one sensor located at the incident scene and position data for at least one resource located at the incident scene, and a processor (202) that calculates at least one optimal exit route for the resource to exit a location at the incident scene based on the received sensor data and position data.
    • 在事件现场提供情境意识的方法。 可以从位于入射场景的至少一个传感器(104,106,108)接收传感器数据,并且可以为至少一个资源(306,308,310,312)接收位置数据。 基于接收的数据,可以计算入射场景下的至少一个最优退出路线(318)。 本发明还涉及一种在事件现场提供情境感知的系统(118)。 该系统可以包括:通信适配器(204),其从位于事件场景处的至少一个传感器接收传感器数据,并且位于位于事件场景处的至少一个资源的位置数据;以及处理器(202),其计算至少一个最优 基于所接收的传感器数据和位置数据,资源的出口路线离开事件场景的位置。
    • 49. 发明申请
    • AD-HOC NETWORK KEY MANAGEMENT
    • AD-HOC网络关键管理
    • US20080046732A1
    • 2008-02-21
    • US11464744
    • 2006-08-15
    • Zhi FuDonald E. EastlakeAnthony R. Metke
    • Zhi FuDonald E. EastlakeAnthony R. Metke
    • H04L9/32H04L9/00G06K9/00G06F17/30G06F15/16G06F7/04G06F7/58G06K19/00
    • H04L9/0891G06Q20/3674H04L9/083H04L9/0838H04L2209/80H04W12/04H04W84/18
    • An ad hoc network includes a first node, a second node, and a third node. The first node and second node share a first shared secret key, and the first node and third node share a second shared secret key. The second node and third node share a temporal key. The first node generates a unique key, encrypts the unique key with a first shared secret key to generate a first encrypted unique key and transmits the first encrypted unique key to the second node. The first node encrypts the unique key with a second shared secret key to generate a second encrypted unique key and transmits the second encrypted unique key to the third node. To establish the temporal key, the second node decrypts the first encrypted unique key and the third node decrypts the second encrypted unique key thereby each generating the unique key.
    • 自组织网络包括第一节点,第二节点和第三节点。 第一节点和第二节点共享第一共享秘密密钥,并且第一节点和第三节点共享第二共享秘密密钥。 第二节点和第三节点共享一个临时密钥。 第一节点生成唯一密钥,用第一共享秘密密钥加密唯一密钥以生成第一加密唯一密钥,并将第一加密唯一密钥发送到第二节点。 第一节点用第二个共享秘密密钥加密唯一密钥,以生成第二加密唯一密钥,并将第二加密唯一密钥发送到第三个节点。 为了建立时间密钥,第二节点解密第一加密唯一密钥,第三节点解密第二加密唯一密钥,从而每个生成唯一密钥。