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    • 8. 发明申请
    • Managing web tier session state objects in a content delivery network (CDN)
    • 管理内容传送网络(CDN)中的Web层会话状态对象
    • US20070271385A1
    • 2007-11-22
    • US11834042
    • 2007-08-06
    • Andrew DavisJay ParikhSrikanth ThirumalaiWilliam WeihlMark Tsimelzon
    • Andrew DavisJay ParikhSrikanth ThirumalaiWilliam WeihlMark Tsimelzon
    • G06F15/16
    • H04L67/1095G06F11/203G06F11/2097H04L67/14H04L67/142H04L67/148
    • Business applications running on a content delivery network (CDN) having a distributed application framework can create, access and modify state for each client. Over time, a single client may desire to access a given application on different CDN edge servers within the same region and even across different regions. Each time, the application may need to access the latest “state” of the client even if the state was last modified by an application on a different server. A difficulty arises when a process or a machine that last modified the state dies or is temporarily or permanently unavailable. The present invention provides techniques for migrating session state data across CDN servers in a manner transparent to the user. A distributed application thus can access a latest “state” of a client even if the state was last modified by an application instance executing on a different CDN server, including a nearby (in-region) or a remote (out-of-region) server.
    • 在具有分布式应用程序框架的内容传送网络(CDN)上运行的业务应用程序可以为每个客户端创建,访问和修改状态。 随着时间的推移,单个客户端可能希望访问同一区域内甚至跨不同区域的不同CDN边缘服务器上的给定应用。 每次应用程序可能需要访问客户端的最新“状态”,即使该状态最后被不同服务器上的应用程序修改。 当最后修改状态的过程或机器死亡或临时或永久不可用时,会出现困难。 本发明提供了以对用户透明的方式跨CDN服务器迁移会话状态数据的技术。 因此,分布式应用程序可以访问客户端的最新“状态”,即使状态最后由在不同的CDN服务器上执行的应用程序实例进行修改,包括附近(区域内)或远程(区域外) 服务器。
    • 9. 发明申请
    • Deployment of containers and container extensions in a modular code runtime platform through a runtime platform extension point
    • 通过运行时平台扩展点在模块化代码运行时平台中部署容器和容器扩展
    • US20060277537A1
    • 2006-12-07
    • US11142647
    • 2005-06-01
    • Sheldon ChanAndrew DavisKeith KimballMelaquias Martinez
    • Sheldon ChanAndrew DavisKeith KimballMelaquias Martinez
    • G06F9/44
    • G06F9/44526G06F8/65G06F9/44505
    • Embodiments of the present invention address deficiencies of the art in respect to deploying components in a modular code runtime environment and provide a method, system and computer program product for deploying containers and container extensions in a modular code runtime environment, such as the Eclipse integrated development environment. In one embodiment, a container extension deployment system can include a container, a registry of container extensions slated for deployment in the container, and a deployment plug-in to a modular code runtime environment coupled to the registry. The deployment plug-in can include an extension point configured for use by other plug-ins. The extension point, in turn, can include container extensions slated for deployment in the container. Finally, the container extensions can include services that implement an interface for starting and stopping the services and libraries in an archive.
    • 本发明的实施例解决了在模块化代码运行时环境中部署组件方面的技术缺陷,并提供了用于在模块化代码运行时环境中部署容器和容器扩展的方法,系统和计算机程序产品,例如Eclipse集成开发 环境。 在一个实施例中,容器扩展部署系统可以包括容器,用于部署在容器中的容器扩展的注册表,以及与注册表耦合的模块化代码运行时环境的部署插件。 部署插件可以包括一个配置供其他插件使用的扩展点。 扩展点又可以包括预定在容器中部署的容器扩展。 最后,容器扩展可以包括实现用于启动和停止归档中的服务和库的接口的服务。
    • 10. 发明申请
    • Fluid-gauging systems
    • 流体计量系统
    • US20060220890A1
    • 2006-10-05
    • US11392608
    • 2006-03-30
    • Andrew Davis
    • Andrew Davis
    • G08B21/00
    • B64D37/00G01F23/0069G01F25/0084
    • An aircraft fuel-gauging system has multiple gauging sensors in each tank divided into two groups. Each group of sensors connects with a respective processor. The processors are linked to provide a display in the cockpit to give an indication of fuel quantity derived from all the sensors. The two processors also provide separate, nominally-identical display indications of fuel quantity on a refuel panel on the exterior of the aircraft. The refueller can compare these two separate quantity indications with the flow meter in the fuel dispenser to confirm that the correct quantity has been dispensed.
    • 飞机燃油计量系统在每个储罐中分为两组,多个测量传感器。 每组传感器与相应的处理器相连。 处理器被链接以在驾驶舱中提供显示,以给出从所有传感器得到的燃料量的指示。 两个处理器还在飞机外部的加油面板上提供单独的,名义上相同的燃料量显示指示。 燃油机可以将这两个分开的数量指示与燃油分配器中的流量计进行比较,以确认正确的数量已经分配。