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    • 65. 发明授权
    • Adaptive edge-implemented traffic policy in a data processing network
    • 数据处理网络中的自适应边缘实现流量策略
    • US08284780B2
    • 2012-10-09
    • US12013995
    • 2008-01-14
    • Marc SullivanJames PrattSteven Belz
    • Marc SullivanJames PrattSteven Belz
    • H04L12/56
    • H04L47/10H04L47/20H04L47/2441H04L47/28H04L47/32
    • In one aspect, a disclosed method of processing a network packet received by an edge device from a client in a data processing network includes determining a priority category of the network packet when the priority category is indicative of a priority associated with the packet. The method further includes determining a value of a traffic state parameter. The traffic state parameter indicates a level of traffic activity in a backbone network to which the edge device is connected. A traffic policy is then determined that is applicable to the level of traffic activity and the priority category of the network packet. The network packet is then blocked from traversing or permitted to traverse the network packet edge device based on the determined traffic policy. Determining the priority category may include determining a transport protocol port number of the network packet.
    • 在一个方面,一种公开的处理由边缘设备从数据处理网络中的客户端接收的网络分组的方法包括当优先级类别指示与分组相关联的优先级时确定网络分组的优先级类别。 该方法还包括确定业务状态参数的值。 流量状态参数表示边缘设备连接到的骨干网络中的流量活动级别。 然后确定适用于网络分组的流量活动级别和优先级类别的流量策略。 然后基于所确定的流量策略,阻止网络分组穿越或允许网络分组边缘设备穿越网络分组边缘设备。 确定优先级类别可以包括确定网络分组的传输协议端口号。
    • 66. 发明授权
    • Method and system of modifying configuration settings of a device based on an estimated change in transmission traffic
    • 基于估计的传输业务变化来修改设备的配置设置的方法和系统
    • US07949305B2
    • 2011-05-24
    • US12211465
    • 2008-09-16
    • Marc SullivanJames PrattSteven Belz
    • Marc SullivanJames PrattSteven Belz
    • H04B17/00
    • H04W52/287H04J11/0069
    • A method of modifying a configuration setting of a portable communication device based on an estimated change in transmission traffic. The method includes monitoring radio frequency (RF) signals at a first portable communication device. The RF signals include signals communicated by one or more other communication devices. The method further includes measuring a first number of transmissions communicated by the RF signals during a first time window and measuring a second number of transmissions communicated by the RF signals during a second time window. The first number of transmissions is compared to the second number of transmissions to estimate a change in transmission traffic. A configuration setting of the first portable communication device is modified from a first setting to a second setting based on the estimated change in transmission traffic.
    • 一种基于估计的传输业务变化来修改便携式通信设备的配置设置的方法。 该方法包括在第一便携式通信设备处监视射频(RF)信号。 RF信号包括由一个或多个其他通信设备传送的信号。 该方法还包括测量在第一时间窗口期间由RF信号传送的第一数量的传输,并且在第二时间窗口期间测量由RF信号传送的第二数量的传输。 将第一数量的传输与第二数量的传输进行比较以估计传输业务的变化。 基于估计的传输业务的变化,将第一便携式通信设备的配置设置从第一设置修改为第二设置。
    • 70. 发明申请
    • SYSTEM AND METHOD FOR SHARING LOCATION DATA IN A WIRELESS COMMUNICATION NETWORK
    • 用于在无线通信网络中共享位置数据的系统和方法
    • US20100144368A1
    • 2010-06-10
    • US12328571
    • 2008-12-04
    • Marc SullivanJames PrattSteven M. Belz
    • Marc SullivanJames PrattSteven M. Belz
    • H04W24/00
    • H04L67/325H04L67/04H04L67/18H04W4/02H04W12/06
    • A system and method for sharing location data amongst wireless communication devices uses a token system to grant permission to share location data. The tokens may be created automatically as the result of user activation of a different function. Location data may be exchanged when two wireless communication devices, authorized to exchange location data, are within a predetermined distance from each other. Location data may also be automatically exchanged upon the occurrence of a scheduled calendar event within a wireless communication device. Location data may be exchanged a single time or can be exchanged on a continuous or periodic basis so long as the token still exists. The token may be destroyed manually by some user activity or may be terminated automatically.
    • 用于在无线通信设备之间共享位置数据的系统和方法使用令牌系统来授予共享位置数据的权限。 令牌可以由用户激活不同功能而自动创建。 当授权交换位置数据的两个无线通信设备在彼此之间的预定距离内时,可以交换位置数据。 在无线通信设备内发生调度的日历事件时,位置数据也可以自动交换。 只要令牌仍然存在,位置数据可以单独交换或者可以在连续或周期性的基础上进行交换。 令牌可能会被某些用户活动手动销毁,或者可能会被自动终止。