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    • 7. 发明授权
    • Service resiliency within on-premise products
    • 内部部件产品中的服务弹性
    • US08799446B2
    • 2014-08-05
    • US11506510
    • 2006-08-18
    • Eric B. WatsonLingan SatkunanathanBjorn B. Levidow
    • Eric B. WatsonLingan SatkunanathanBjorn B. Levidow
    • G06F15/173G06F15/16G06F11/00
    • H04L43/0817H04L41/0681H04L41/5009H04L41/5083
    • Described is a technology by which a remote network (or local) service is monitored for failure, e.g., by determining whether data corresponding to operation of the service achieves a threshold. When a threshold is achieved that indicates that the service has failed, the service is automatically deactivated for use with a local workload, and the workload switched to use a second service or system having functionality similar to that of the failed service. The second service may be monitored for failure, as may the failed service to determine when it is again operational. In this manner, a remote primary service may have another local or remote secondary service/system automatically substituted for it when it fails, and be restored for use when it returns to acceptable operation.
    • 描述了通过例如通过确定与服务的操作相对应的数据是否达到阈值来监视远程网络(或本地)服务以进行故障的技术。 当达到指示服务已经失败的阈值时,该服务被自动停用以与本地工作负载一起使用,并且工作负载被切换以使用具有与故障服务的功能相似的功能的第二服务或系统。 可能监视第二个服务的故障,失败的服务可能会确定何时再次运行。 以这种方式,远程主服务可能具有另一本地或远程辅助服务/系统在其失败时自动替代它,并且当其返回到可接受的操作时被恢复使用。
    • 8. 发明申请
    • Service resiliency within on-premise products
    • 内部部件产品中的服务弹性
    • US20080046552A1
    • 2008-02-21
    • US11506510
    • 2006-08-18
    • Eric B. WatsonLingan SatkunanathanBjorn B. Levidow
    • Eric B. WatsonLingan SatkunanathanBjorn B. Levidow
    • G06F15/173G06F15/177
    • H04L43/0817H04L41/0681H04L41/5009H04L41/5083
    • Described is a technology by which a remote network (or local) service is monitored for failure, e.g., by determining whether data corresponding to operation of the service achieves a threshold. When a threshold is achieved that indicates that the service has failed, the service is automatically deactivated for use with a local workload, and the workload switched to use a second service or system having functionality similar to that of the failed service. The second service may be monitored for failure, as may the failed service to determine when it is again operational. In this manner, a remote primary service may have another local or remote secondary service/system automatically substituted for it when it fails, and be restored for use when it returns to acceptable operation.
    • 描述了通过例如通过确定与服务的操作相对应的数据是否达到阈值来监视远程网络(或本地)服务以进行故障的技术。 当达到指示服务已经失败的阈值时,该服务被自动停用以与本地工作负载一起使用,并且工作负载被切换以使用具有与故障服务的功能相似的功能的第二服务或系统。 可能监视第二个服务的故障,失败的服务可能会确定何时再次运行。 以这种方式,远程主服务可能具有另一本地或远程辅助服务/系统在其失败时自动替代它,并且当其返回到可接受的操作时被恢复使用。
    • 10. 发明授权
    • Network security page
    • 网络安全页面
    • US08239943B2
    • 2012-08-07
    • US11506609
    • 2006-08-18
    • Lingan SatkunanathanKrishna SunkammuraliEric B. Watson
    • Lingan SatkunanathanKrishna SunkammuraliEric B. Watson
    • H04L29/06
    • H04L51/12H04L63/1433H04L63/20
    • Described is a technology by which a user interface page outputs security status information obtained from network-wide and/or network client security components. This allows for simultaneous evaluation of the state of various network-wide and client security components, such as antimalware state, anti-spam state, firewall state, client program update state, and state data from a remote security service. Network security page logic couples to network-wide security components and client security components to obtain security state data for each. A user interface associated with the network security page logic lists the security components and the current security status for each, such as via an icon that changes its appearance to reflect the current state. Interactive mechanisms for launching system-wide security tasks and/or context-sensitive security tasks related to a selected security component may be provided on the user interface page, as may an interactive mechanism for resolving a security-related issue.
    • 描述了用户界面页面输出从网络范围和/或网络客户端安全组件获得的安全状态信息的技术。 这允许同时评估诸如反恶意软件状态,反垃圾邮件状态,防火墙状态,客户端程序更新状态和来自远程安全服务的状态数据的各种网络范围和客户端安全组件的状态。 网络安全页面逻辑耦合到全网安全组件和客户端安全组件,以获取每个安全组件的安全状态数据。 与网络安全页面逻辑相关联的用户界面列出了每个的安全组件和当前安全状态,例如通过改变其外观以反映当前状态的图标。 可以在用户界面页面上提供用于启动与所选择的安全组件相关的系统范围的安全任务和/或与上下文相关的安全性任务的交互式机制,以及用于解决与安全相关的问题的交互式机制。