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    • 28. 发明授权
    • Method and apparatus for congestion control in a wireless communication system
    • 无线通信系统中拥塞控制的方法和装置
    • US07428421B2
    • 2008-09-23
    • US11250001
    • 2005-10-12
    • Avinash JainJack M. Holtzman
    • Avinash JainJack M. Holtzman
    • H04B17/00H04B7/00
    • H04W28/12H04B7/264H04W4/24H04W28/22
    • Method and apparatus for congestion control in a wireless communication system. In one embodiment, the status of a congestion bit indicates the type of adjustment, such as increase or decrease, to be performed at an access terminal to determine the next data rate for transmissions on the reverse link. The status of the congestion bit is determined by comparing a congestion parameter to a predetermined threshold. One embodiment implements an outerloop threshold having a margin with respect to the desired congestion metric threshold. The outerloop threshold is adjusted in response to comparing a measured congestion metric to the desired threshold. The outerloop threshold adjustment maintains the congestion metric to within a predetermined probability of exceeding the desired threshold.
    • 无线通信系统中拥塞控制的方法和装置。 在一个实施例中,拥塞比特的状态指示要在接入终端执行的调整的类型,例如增加或减少,以确定反向链路上的传输的下一个数据速率。 通过将拥塞参数与预定阈值进行比较来确定拥塞位的状态。 一个实施例实现了具有相对于期望的拥塞度量阈值的余量的外环阈值。 响应于将测量的拥塞度量与期望阈值进行比较来调整外环阈值。 外环阈值调整将拥塞度量维持在超过期望阈值的预定概率内。
    • 29. 发明申请
    • Monitor for Multi-Protocol Label Switching (MPLS) Networks
    • 监控多协议标签交换(MPLS)网络
    • US20080225741A1
    • 2008-09-18
    • US11744837
    • 2007-05-05
    • Rajesh Tarakkad VenkateswaranAvinash JainLatha VasudevaraoAmit Goyal
    • Rajesh Tarakkad VenkateswaranAvinash JainLatha VasudevaraoAmit Goyal
    • G06F11/00
    • H04L45/50H04L43/16H04L43/50H04L45/00H04L47/10H04L49/00
    • In one embodiment, a method includes receiving label data that indicates all interface labels that belong to each path ID of multiple path IDs associated with corresponding multiple paths between provider edge nodes in a Multi-Protocol Label Switching (MPLS) network. Each interface label is associated with a network interface on a node in the MPLS network. Based on the label data, an untested list that holds data that indicates all unique interface labels is generated. A tested interface selected from the untested list is scheduled for testing. After scheduling, the interface label of the tested interface is removed from the untested list. It is determined whether the untested list still includes data for at least one interface label. If not, then a test of the MPLS network is completed without testing every path end to end, thus conserving network resources.
    • 在一个实施例中,一种方法包括接收标签数据,该标签数据指示属于多协议标签交换(MPLS)网络中的提供商边缘节点之间的相应多个路径的多个路径ID的每个路径ID的所有接口标签。 每个接口标签与MPLS网络中节点上的网络接口相关联。 基于标签数据,生成一个未经测试的列表,其中保存指示所有唯一接口标签的数据。 从未经测试的列表中选择的测试界面已安排进行测试。 调度完成后,测试界面的接口标签从未经测试的列表中删除。 确定未经测试的列表是否仍然包括用于至少一个接口标签的数据。 如果没有,那么完成MPLS网络的测试,而不是测试每个路径的端到端,从而节省了网络资源。