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    • 3. 发明授权
    • Multiple pathway session setup to support QoS services
    • 多路径会话设置来支持QoS服务
    • US08959245B2
    • 2015-02-17
    • US12323402
    • 2008-11-25
    • Jeyhan KaraoguzJames Bennett
    • Jeyhan KaraoguzJames Bennett
    • G06F15/16H04L12/701H04L12/707H04L12/725
    • H04L67/141H04L45/00H04L45/22H04L45/24H04L45/302H04L45/306H04L45/308
    • A request from a user device is received for a service by a network management server via a communication network. The network management server determines multiple routes for delivering content associated with the requested service based on a provisioning profile for the user device. Content associated with the requested service is then delivered via the determined multiple routes. The provisioning profile is updated and includes preferred service types, desired QoS for one or more services, client account information, and/or client credit verification information. The network management server manages the delivery of the content associated with the requested service via the determined multiple routes. The content includes packets that are the same, which are communicated or delivered simultaneously via the determined multiple routes. The network management server allocates one or more of the determined multiple routes for delivering the content based on priorities associated with the routes.
    • 通过网络管理服务器经由通信网络接收来自用户设备的请求以用于服务。 网络管理服务器基于用户设备的供应配置文件来确定用于递送与所请求的服务相关联的内容的多个路由。 与所请求的服务相关联的内容然后经由确定的多条路由被传递。 更新配置配置文件,并包括首选服务类型,一个或多个服务的所需QoS,客户帐户信息和/或客户端信用验证信息。 网络管理服务器通过确定的多个路由管理与所请求的服务相关联的内容的传送。 内容包括相同的分组,其经由确定的多个路由被同时传送或传送。 网络管理服务器基于与路由相关联的优先级分配用于传送内容的一个或多个所确定的多个路由。
    • 4. 发明授权
    • Wireless communication device capable of utilizing additional bandwidth
    • 能够利用附加带宽的无线通信装置
    • US08761193B2
    • 2014-06-24
    • US13422290
    • 2012-03-16
    • James BennettJeyhan Karaoguz
    • James BennettJeyhan Karaoguz
    • H04W16/14
    • H04W72/0486H04W16/14H04W72/0453
    • A wireless communication device is disclosed that is capable of utilizing bandwidth outside of its allocated bandwidth in order to maximize frequency coverage. The allocated band is separate from a neighboring band by a guard band. The device performs a scan of the neighboring band in order to determine an activity level within the neighboring band. Based on the determined activity level, the device expands its communication frequency range to include the guard band and/or the neighboring band. Once expanded, the device periodically rescans the neighboring band in order to determine whether the device must contract its frequency band out of the expanded area. The device can also receive activity level information of the neighboring band from a server via a common network infrastructure, and can coordinate expansion with other devices.
    • 公开了能够利用其分配的带宽以外的带宽的无线通信设备,以便最大化频率覆盖。 所分配的频带由保护频带与相邻频带分开。 该装置执行相邻频带的扫描,以便确定相邻频带内的活动水平。 基于所确定的活动水平,设备将其通信频率范围扩大以包括保护频带和/或相邻频带。 一旦扩展,设备周期性地重新扫描相邻频带,以便确定设备是否必须将其频带收缩到扩展区域之外。 设备还可以经由公共网络基础设施从服务器接收相邻频带的活动级别信息,并且可以与其他设备协调扩展。
    • 8. 发明申请
    • ADAPTABLE MEDIA PROCESSING ARCHITECTURES
    • 适应媒体处理结构
    • US20130083843A1
    • 2013-04-04
    • US13617361
    • 2012-09-14
    • James Bennett
    • James Bennett
    • H04N7/26
    • H04N19/42H04N19/12H04N19/127H04N19/156H04N19/157H04N19/187
    • Various methods and systems are provided for adaptable media processing architectures. In one example, among others, an adaptable coding architecture for servicing media streams includes media processing resources and a controller that supports a first media stream by placing media processing pipeline resources in a single stream configuration and that causes a transition from the single stream configuration to a multiple stream configuration of the media processing resources. For example, the transition may be made to simultaneously support encoding or decoding another media stream. In another example, a device includes media processing resources and a controller that causes an adaptive reconfiguration of media processing resources to support simultaneous coding related processing of both a new media stream and at least one ongoing media stream, which may cause a reallocation of at least a part of the media processing resources from an ongoing media stream to the new media stream.
    • 为适应媒体处理架构提供了各种方法和系统。 在一个示例中,除了其中之外,用于服务媒体流的适应性编码架构包括媒体处理资源和支持第一媒体流的控制器,其通过将媒体处理流水线资源放置在单个流配置中并且导致从单流配置到 媒体处理资源的多流配置。 例如,可以转换以同时支持编码或解码另一媒体流。 在另一示例中,设备包括媒体处理资源和控制器,其使得媒体处理资源的自适应重配置支持新媒体流和至少一个正在进行的媒体流的同时编码相关处理,这可能导致至少重新分配 媒体处理资源的一部分从正在进行的媒体流到新的媒体流。
    • 10. 发明授权
    • Combined satellite and broadband access antennas using common infrastructure
    • 使用通用基础设施的卫星和宽带接入天线组合
    • US08134513B2
    • 2012-03-13
    • US12796405
    • 2010-06-08
    • Jeyhan KaraoguzJames Bennett
    • Jeyhan KaraoguzJames Bennett
    • H01Q3/00
    • H01Q21/28H01Q1/1257H01Q3/08H01Q25/002Y10T29/49016
    • A method of installing multiple over-the-air antennas is disclosed. The method includes the steps of mounting a satellite antenna to a installation surface, such that the mounting allows the satellite antenna to be aimed at a satellite, attaching a broadband access antenna to one of the installation surface and a portion of the satellite antenna, such that the attaching allows the broadband access antenna to be aimed at a broadband access source, connecting first wiring from the broadband access antenna to a first downconverter and second wiring from the satellite antenna to a second downconverter, providing outputs of the first and second downconverters to a cable in communication with at least a satellite receiver and positioning, on at least a coarse scale, the satellite antenna and the broadband access antenna such that they are approximately pointed at the satellite and the broadband access source, respectively.
    • 公开了一种安装多个空中天线的方法。 该方法包括以下步骤:将卫星天线安装到安装表面,使得安装允许卫星天线瞄准卫星,将宽带接入天线连接到卫星天线的一个安装表面和一部分卫星天线 连接允许宽带接入天线瞄准宽带接入源,将第一布线从宽带接入天线连接到第一下变频器,第二布线从卫星天线连接到第二下变频器,提供第一和第二下变频器的输出 与至少卫星接收机通信的电缆,至少在粗略尺度上定位卫星天线和宽带接入天线,使得它们分别近似地指向卫星和宽带接入源。