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    • 5. 发明授权
    • Dynamic user identification and policy enforcement in cloud-based secure web gateways
    • 基于云的安全网关的动态用户识别和策略实施
    • US09065800B2
    • 2015-06-23
    • US13728631
    • 2012-12-27
    • Srikanth DevarajanSridhar NarasimhanAmit SinhaManoj Apte
    • Srikanth DevarajanSridhar NarasimhanAmit SinhaManoj Apte
    • H04L29/06G06F21/51G06F21/56
    • H04L63/0227G06F21/51G06F21/56H04L63/168
    • A cloud-based secure Web gateway, a cloud-based secure Web method, and a network deliver a secure Web gateway (SWG) as a cloud-based service to organizations and provide dynamic user identification and policy enforcement therein. As a cloud-based service, the SWG systems and methods provide scalability and capability of accommodating multiple organizations therein with proper isolation therebetween. There are two basic requirements for the cloud-based SWG: (i) Having some means of forwarding traffic from the organization or its users to the SWG nodes, and (ii) Being able to authenticate the organization and users for policy enforcement and access logging. The SWG systems and methods dynamically associate traffic to users regardless of the source (device, location, encryption, application type, etc.), and once traffic is tagged to a user/organization, various polices can be enforced and audit logs of user access can be maintained.
    • 基于云的安全Web网关,基于云的安全Web方法和网络向组织提供作为基于云的服务的安全Web网关(SWG),并在其中提供动态用户标识和策略实施。 作为基于云的服务,SWG系统和方法提供了可扩展性和容纳多个组织的能力,其间具有适当的隔离。 基于云的SWG有两个基本要求:(i)具有将流量从组织或其用户转发到SWG节点的方法,以及(ii)能够对组织和用户进行身份验证以进行策略执行和访问日志记录 。 无论源(设备,位置,加密,应用程序类型等),SWG系统和方法都会将流量动态地关联到用户,一旦流量被标记给用户/组织,就可以执行各种策略并审核用户访问日志 可以维护。
    • 6. 发明申请
    • DYNAMIC USER IDENTIFICATION AND POLICY ENFORCEMENT IN CLOUD-BASED SECURE WEB GATEWAYS
    • 基于云安全网关的动态用户识别和政策执行
    • US20140026179A1
    • 2014-01-23
    • US13728631
    • 2012-12-27
    • Srikanth DevarajanSridhar NarasimhanAmit SinhaManoj Apte
    • Srikanth DevarajanSridhar NarasimhanAmit SinhaManoj Apte
    • H04L29/06
    • H04L63/0227G06F21/51G06F21/56H04L63/168
    • A cloud-based secure Web gateway, a cloud-based secure Web method, and a network deliver a secure Web gateway (SWG) as a cloud-based service to organizations and provide dynamic user identification and policy enforcement therein. As a cloud-based service, the SWG systems and methods provide scalability and capability of accommodating multiple organizations therein with proper isolation therebetween. There are two basic requirements for the cloud-based SWG: (i) Having some means of forwarding traffic from the organization or its users to the SWG nodes, and (ii) Being able to authenticate the organization and users for policy enforcement and access logging. The SWG systems and methods dynamically associate traffic to users regardless of the source (device, location, encryption, application type, etc.), and once traffic is tagged to a user/organization, various polices can be enforced and audit logs of user access can be maintained.
    • 基于云的安全Web网关,基于云的安全Web方法和网络向组织提供作为基于云的服务的安全Web网关(SWG),并在其中提供动态用户标识和策略实施。 作为基于云的服务,SWG系统和方法提供了可扩展性和容纳多个组织的能力,其间具有适当的隔离。 基于云的SWG有两个基本要求:(i)具有将流量从组织或其用户转发到SWG节点的方法,以及(ii)能够对组织和用户进行身份验证以进行策略执行和访问日志记录 。 无论源(设备,位置,加密,应用程序类型等),SWG系统和方法都会将流量动态地关联到用户,一旦流量被标记给用户/组织,就可以执行各种策略并审核用户访问日志 可以维护。
    • 10. 发明申请
    • NON-STOP FORWARDING IN A MULTI-CHASSIS ROUTER
    • 在多重路由器路由器中不停止转发
    • US20110013508A1
    • 2011-01-20
    • US12889209
    • 2010-09-23
    • Raj TuplurBharani ChadalavadaManoj ApteRajagopalan SivaramakrishnanSriram RaghunathanUmesh Krishnaswamy
    • Raj TuplurBharani ChadalavadaManoj ApteRajagopalan SivaramakrishnanSriram RaghunathanUmesh Krishnaswamy
    • H04L12/26
    • H04L45/00H04L45/58H04L45/60
    • State information is synchronized between a plurality of routing engines in a multi-chassis router according to a synchronization gradient. An example multi-chassis router is described that includes a primary routing engine and a standby routing engine in each chassis. According to the synchronization gradient, the primary routing engine of a control node updates state information on the standby routing engine of the control node prior to updating the primary routing engines of the other chassis. The primary routing engines of the other chassis update state information in respective standby routing engines prior to updating state information in consumers. If a primary routing engine fails, the corresponding standby routing engine assumes control of the primary routing engine's duties. Upon assuming control, a standby routing engine resumes updating state information without having to resend state information or interrupt packet forwarding.
    • 根据同步梯度,状态信息在多机架路由器中的多个路由引擎之间同步。 描述了一种示例性多机架路由器,其包括每个机架中的主路由引擎和备用路由引擎。 根据同步梯度,控制节点的主路由引擎在更新另一机箱的主路由引擎之前更新控制节点的备用路由引擎上的状态信息。 另一个机箱的主要路由引擎在更新消费者中的状态信息之前,在相应的备用路由引擎中更新状态信息。 如果主路由引擎发生故障,则相应的备用路由引擎将控制主路由引擎的任务。 在进行控制时,备用路由引擎恢复更新状态信息,而不必重新发送状态信息或中断分组转发。