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    • 2. 发明授权
    • Methods and systems for maintaining quality of service (QoS) levels for data transmissions
    • 维护数据传输服务质量(QoS)水平的方法和系统
    • US08705350B2
    • 2014-04-22
    • US12766326
    • 2010-04-23
    • Bhumip KhasnabishNabeel Cocker
    • Bhumip KhasnabishNabeel Cocker
    • G01R31/08H04L12/28H04L12/66
    • H04L47/10H04L45/00H04L45/125H04L45/22H04L45/24H04L45/3065H04L45/586H04L47/11H04L47/122H04L49/351
    • A system is provided for maintaining Quality of Service (“QoS”) parameters of data transmissions. A packet-switched network framework is provided. The network framework includes at least one router for routing the data transmissions over the network framework. The network framework also includes multiple links, including a first link and a second link. The first link forms at least part of a first path over the network framework, and the second link forms at least part of an alternate, second path over the network framework. A link utilization monitor is configured to monitor a link utilization rate of the first link and to determine whether the rate has exceeded a predetermined maximum utilization threshold. The router is configured to reroute data transmissions over the second link when the rate is determined to have exceeded the predetermined maximum utilization threshold.
    • 提供了一种用于维持数据传输的服务质量(“QoS”)参数的系统。 提供了分组交换网络框架。 网络框架包括至少一个用于通过网络框架路由数据传输的路由器。 网络框架还包括多个链路,包括第一链路和第二链路。 第一链路在网络框架上形成第一路径的至少一部分,并且第二链路在网络框架上形成备选的第二路径的至少一部分。 链路利用监视器被配置为监视第一链路的链路利用率并确定该速率是否超过预定的最大利用阈值。 路由器被配置为当速率被确定为已经超过预定的最大利用阈值时通过第二链路重新路由数据传输。
    • 7. 发明申请
    • PACKET-SWITCHED NETWORK-TO-NETWORK INTERCONNECTION INTERFACE
    • 分组交换网络到网络互连接口
    • US20100281171A1
    • 2010-11-04
    • US12837305
    • 2010-07-15
    • Bhumip Khasnabish
    • Bhumip Khasnabish
    • G06F15/16
    • H04L65/1066H04L63/164H04L65/104
    • An exemplary method includes network elements associated with distinct network domains exchanging signaling and media border processing information by way of a secure packet-switched connection between the network elements, exchanging service policy information by way of the secure packet-switched connection, peering a session associated with a first service type between the distinct network domains by way of a packet-switched network-to-network interconnection interface (“NNII”) in accordance with the exchanged signaling and media border processing information, peering another session associated with a second service type between the distinct network domains by way of the packet-switched NNII in accordance with the exchanged signaling and media border processing information, enforcing a first performance threshold specified by the service policy information for peering the session associated with the first service type, and enforcing a second performance threshold specified by the service policy information for peering the other session associated with the second service type.
    • 示例性方法包括与不同网络域相关联的网络元件,通过网元之间的安全分组交换连接交换信令和媒体边界处理信息,通过安全分组交换连接交换服务策略信息,对等会话相关联 通过根据所交换的信令和媒体边界处理信息的分组交换网络到网络互连接口(“NNII”)在不同网络域之间具有第一服务类型,对等与第二服务类型相关联的另一个会话 通过根据交换的信令和媒体边界处理信息的分组交换NNII在不同的网络域之间,实施由服务策略信息指定的用于对等与第一服务类型相关联的会话的第一性能阈值,以及执行 第二个性能阈值由 用于对等与第二服务类型相关联的其他会话的服务策略信息。
    • 8. 发明授权
    • Packet-switched network-to-network interconnection interface
    • 分组交换网络到网络互连接口
    • US07761579B2
    • 2010-07-20
    • US11945564
    • 2007-11-27
    • Bhumip Khasnabish
    • Bhumip Khasnabish
    • G06F15/16H04J1/00
    • H04L65/1066H04L63/164H04L65/104
    • In one of many possible embodiments, an exemplary method includes establishing a secure packet-switched connection for exchanging predefined signaling messages between network elements associated with distinct network domains, determining and implementing at least one media exchange technology for transporting media between the network domains, exchanging signaling and media border processing information between the network domains, exchanging access device information between the network domains, determining and implementing at least one service policy associated with the network domains, and providing a packet-switched network-to-network interconnection interface configured for peering at least one session between the network domains based on the predefined signaling messages, media exchange technology, signaling media border processing information, access device information, and service policy.
    • 在许多可能的实施例之一中,示例性方法包括建立安全分组交换连接,用于在与不同网络域相关联的网络元件之间交换预定义的信令消息,确定和实现用于在网络域之间传送媒体的至少一种媒体交换技术,交换 网络域之间的信令和媒体边界处理信息,在网络域之间交换接入设备信息,确定和实现与网络域相关联的至少一个服务策略,以及提供配置为对等的分组交换网络到网络互连接口 基于预定义的信令消息,媒体交换技术,信令媒体边界处理信息,接入设备信息和服务策略,网络域之间的至少一个会话。
    • 9. 发明授权
    • Methods and systems for maintaining quality of service (QOS) levels for data transmissions
    • 维护数据传输服务质量(QOS)水平的方法和系统
    • US07715312B2
    • 2010-05-11
    • US11114645
    • 2005-04-25
    • Bhumip KhasnabishNabeel Cocker
    • Bhumip KhasnabishNabeel Cocker
    • G01R31/08H04L12/28H04L12/66
    • H04L47/10H04L45/00H04L45/125H04L45/22H04L45/24H04L45/3065H04L45/586H04L47/11H04L47/122H04L49/351
    • A system is provided for maintaining Quality of Service (“QoS”) parameters of data transmissions. A packet-switched network framework is provided. The network framework includes at least one router for routing the data transmissions over the network framework. The network framework also includes multiple links, including a first link and a second link. The first link forms at least part of a first path over the network framework, and the second link forms at least part of an alternate, second path over the network framework. A link utilization monitor is configured to monitor a link utilization rate of the first link and to determine whether the rate has exceeded a predetermined maximum utilization threshold. The router is configured to reroute data transmissions over the second link when the rate is determined to have exceeded the predetermined maximum utilization threshold.
    • 提供了一种用于维持数据传输的服务质量(“QoS”)参数的系统。 提供了分组交换网络框架。 网络框架包括至少一个用于通过网络框架路由数据传输的路由器。 网络框架还包括多个链路,包括第一链路和第二链路。 第一链路在网络框架上形成第一路径的至少一部分,并且第二链路在网络框架上形成备选的第二路径的至少一部分。 链路利用率监视器被配置为监视第一链路的链路利用率并确定该速率是否超过预定的最大利用阈值。 路由器被配置为当速率被确定为已经超过预定的最大利用阈值时通过第二链路重新路由数据传输。