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    • 83. 发明公开
    • AUTO-CONFIGURABLE TRANSPORT STACK
    • AUTOMATISCH KONFIGURIERBARER TRANSPORTSTAPEL
    • EP3043260A1
    • 2016-07-13
    • EP16150270.3
    • 2016-01-05
    • Palo Alto Research Center, Incorporated
    • SOLIS, IgnacioSCOTT, Glenn C.
    • G06F9/44G06F9/445H04L29/06
    • H04L69/326G06F8/20G06F8/36G06F9/44521H04L41/0893H04L67/1097H04L67/125H04L69/16H04L69/18
    • A transport-framework system facilitates instantiating a custom transport stack. During operation, the system can obtain a stack requirement for a custom stack. The stack requirement can specify component attributes and a policy for one or more components to instantiate in the custom stack. The system can select a stack component that satisfies the stack requirement for the custom stack, and can instantiate the stack component in the custom stack. For example, the system can select a stack component by analyzing the stack requirement to determine a component requirement for a component that needs to be instantiated in the custom stack. The system determines, from a component repository, a set of matching components that satisfies the component requirement. If multiple matching components exist, the system selects a matching component which is most compatible with other components in the custom stack.
    • 传输框架系统有助于实例化定制传输堆栈。 在运行期间,系统可以获得自定义堆栈的堆栈要求。 堆栈要求可以指定组件属性和一个或多个组件在自定义堆栈中实例化的策略。 系统可以选择满足自定义堆栈的堆栈要求的堆栈组件,并可以实例化自定义堆栈中的堆栈组件。 例如,系统可以通过分析堆栈需求来确定需要在自定义堆栈中实例化的组件的组件需求来选择堆栈组件。 系统从组件库确定满足组件要求的一组匹配组件。 如果存在多个匹配组件,则系统将选择与自定义堆栈中其他组件最相容的匹配组件。
    • 85. 发明公开
    • CONTROLLING METHOD, CONTROLLER, AND NODE IN TRANSPORT NETWORK
    • 运输网络中的控制方法,控制器和节点
    • EP2983317A1
    • 2016-02-10
    • EP13883411.4
    • 2013-04-28
    • Huawei Technologies Co., Ltd.
    • LIN, Yi
    • H04J14/00
    • H04L45/42H04L41/00H04L45/02H04L45/54H04L69/326
    • Embodiments of the present invention provide a transport network control method, a controller, and a node. The method includes: receiving, by a controller, a control request message of a path; determining, according to topology information of a transport network and an atomic behavior that is supported by each node in the transport network, at least one node that the path passes through in the transport network and at least one atomic behavior that the at least one node needs to execute; and sending a path configuration message that includes the atomic behavior to the at least one node correspondingly, so that each node configures a transport plane to execute the atomic behavior included in the message. In the embodiments of the present invention, a node that a path passes through is enabled to execute a corresponding atomic behavior, so that a new function is rapidly implemented and an upgrading risk is reduced.
    • 本发明实施例提供一种传输网络控制方法,控制器和节点。 该方法包括:控制器接收路径的控制请求消息; 根据传输网络的拓扑信息和传输网络中每个节点所支持的原子行为,确定路径在传输网络中经过的至少一个节点以及至少一个节点 需要执行; 并将包含所述原子行为的路径配置消息相应地发送给所述至少一个节点,以便每个节点配置传输平面执行所述消息中包含的原子行为。 在本发明实施例中,路径经过的节点能够执行相应的原子行为,从而快速实现新功能,降低升级风险。