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    • 2. 发明授权
    • Virtualized shared protection capacity
    • 虚拟化共享保护能力
    • US08456984B2
    • 2013-06-04
    • US12839200
    • 2010-07-19
    • Raghuraman RanganathanLoudon BlairMichael GazierSashisekaran Thiagarajan
    • Raghuraman RanganathanLoudon BlairMichael GazierSashisekaran Thiagarajan
    • G01R31/08
    • H04L49/70H04L49/354
    • The present disclosure relates a network, a network element, a system, and a method providing an efficient allocation of protection capacity for network connections and/or services. These may be for services within a given Virtual Private Network (VPN) or Virtual Machine (VM) instance flow. Network ingress/egress ports are designed to be VM instance aware while transit ports may or may not be depending on network element capability or configuration. A centralized policy management and a distributed control plane are used to discover and allocate resources to and among the VPNs or VM instances. Algorithms for efficient allocation and release of protection capacity may be coordinated between the centralized policy management and the distributed control plane. Additional coupling of attributes such as latency may provide more sophisticated path selection algorithms including efficient sharing of protection capacity.
    • 本公开涉及网络,网络元件,系统和为网络连接和/或服务提供有效保护容量分配的方法。 这些可能是给定的虚拟专用网(VPN)或虚拟机(VM)实例流中的服务。 网络入口/出口端口设计为VM实例感知,而传输端口可能或可能不依赖于网元功能或配置。 集中式策略管理和分布式控制平面用于发现和分配VPN或VM实例之间的资源。 有效分配和释放保护能力的算法可以在集中式策略管理和分布式控制平面之间进行协调。 诸如等待时间等属性的额外耦合可以提供更复杂的路径选择算法,包括保护容量的有效共享。
    • 4. 发明申请
    • VIRTUALIZED SHARED PROTECTION CAPACITY
    • 虚拟共享保护能力
    • US20120014284A1
    • 2012-01-19
    • US12839200
    • 2010-07-19
    • Raghuraman RANGANATHANLoudon BlairMichael GazierSashisekaran Thiagarajan
    • Raghuraman RANGANATHANLoudon BlairMichael GazierSashisekaran Thiagarajan
    • H04L12/56H04L12/28
    • H04L49/70H04L49/354
    • The present disclosure relates a network, a network element, a system, and a method providing an efficient allocation of protection capacity for network connections and/or services. These may be for services within a given Virtual Private Network (VPN) or Virtual Machine (VM) instance flow. Network ingress/egress ports are designed to be VM instance aware while transit ports may or may not be depending on network element capability or configuration. A centralized policy management and a distributed control plane are used to discover and allocate resources to and among the VPNs or VM instances. Algorithms for efficient allocation and release of protection capacity may be coordinated between the centralized policy management and the distributed control plane. Additional coupling of attributes such as latency may provide more sophisticated path selection algorithms including efficient sharing of protection capacity.
    • 本公开涉及网络,网络元件,系统和为网络连接和/或服务提供有效保护容量分配的方法。 这些可能是给定的虚拟专用网(VPN)或虚拟机(VM)实例流中的服务。 网络入口/出口端口设计为VM实例感知,而传输端口可能或可能不依赖于网元功能或配置。 集中式策略管理和分布式控制平面用于发现和分配VPN或VM实例之间的资源。 有效分配和释放保护能力的算法可以在集中式策略管理和分布式控制平面之间进行协调。 诸如等待时间等属性的额外耦合可以提供更复杂的路径选择算法,包括保护容量的有效共享。