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    • 8. 发明授权
    • System and method for controlling a data transfer over a network
    • 用于控制网络上的数据传输的系统和方法
    • US08130643B2
    • 2012-03-06
    • US12419992
    • 2009-04-07
    • Siddhartha DattaguptaAllen J. Huotari
    • Siddhartha DattaguptaAllen J. Huotari
    • G01R31/08
    • H04L47/741H04L41/0896H04L43/0882H04L47/70H04L47/743H04L47/801
    • A method is provided in one example and includes querying for a total capacity for data transmissions for a local network segment, and identifying an available capacity for the local network segment by subtracting a sum of current aggregate consumption of the local network segment from the total capacity. The method also includes comparing the available capacity to a requested capacity that is generated by a network element for a specific communication session. If the requested capacity is equal to or greater than the available capacity, the request is withheld and not transmitted. In more specific embodiments, if the requested capacity is less than the available capacity, the request is transmitted. The query can be communicated to a gateway. In still other embodiments, the query includes a specific query as to a capacity allocated for video data and the network element is a set-top box.
    • 在一个示例中提供了一种方法,并且包括查询本地网段的数据传输的总容量,以及通过从总容量中减去本地网段的当前总消耗量的总和来识别本地网段的可用容量 。 该方法还包括将可用容量与由特定通信会话的网络元件生成的所请求容量进行比较。 如果所请求的容量等于或大于可用容量,则请求被拒绝并且不被发送。 在更具体的实施例中,如果所请求的容量小于可用容量,则发送该请求。 该查询可以传送到网关。 在其他实施例中,查询包括关于为视频数据分配的容量的特定查询,并且网络元件是机顶盒。
    • 9. 发明授权
    • Methods and systems for controlling utilization of resources of contention
    • 控制竞争资源利用的方法和系统
    • US08010672B2
    • 2011-08-30
    • US11193522
    • 2005-07-29
    • Cary Y. Yoshikawa
    • Cary Y. Yoshikawa
    • G06F15/173H04W72/00
    • H04L47/24H04L12/40143H04L12/403H04L47/12H04L47/14H04L47/15H04L47/70H04L47/743H04L47/805H04L47/822H04L47/824H04W72/00H04W74/006H04W74/0833H04W74/0858
    • Methods and systems for controlling utilization of resources(s) of contention by a plurality of devices of a single or multiple priority classes. A utilization scaling factor is determined for each class for the resource(s) and compared with a threshold value. An apersistence property pattern is then created for each class that includes apersistence property entries corresponding to apersistence update cycles of an apersistence pattern window. Where the scaling factor is in a first range corresponding to low resource loading, the class pattern includes unimpeded entries allowing the devices in a class to attempt to utilize the resource. Otherwise, the class pattern is created with at least one blocking entry that prevents all devices in a class from attempting utilization of the resource during the corresponding apersistence update cycle. An apersistence property pattern entry is then provided from the pattern to the devices in each apersistence update cycle of the apersistence pattern window.
    • 用于控制由单个或多个优先级类别的多个设备争用的资源的利用的方法和系统。 为资源的每个类确定利用率缩放因子,并与阈值进行比较。 然后,为每个类创建一个apersistence属性模式,其中包括对应于apersistence模式窗口的更新周期的apersistence属性条目。 在缩放因子处于对应于低资源负载的第一范围内的情况下,类模式包括允许类中的设备试图利用资源的无阻碍条目。 否则,将使用至少一个阻止条目创建类模式,以防止类中的所有设备在相应的存在更新周期期间尝试利用资源。 然后,在存在模式窗口的每个存在更新周期中,从模式向设备提供一个存在属性模式条目。