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    • 12. 发明授权
    • Mobile device management proxy system
    • 移动设备管理代理系统
    • US07987471B2
    • 2011-07-26
    • US11698639
    • 2007-01-26
    • Shai HerzogMarie HagmanBogdan M. TepordeiMichael E. Deem
    • Shai HerzogMarie HagmanBogdan M. TepordeiMichael E. Deem
    • G06F9/44G06F15/16G06F9/46
    • H04L67/1095H04L67/125H04L67/28H04L67/2838H04L67/2847H04L67/325
    • A general-purpose proxy mobile device management architecture. The architecture serves as a proxy for a mobile client seeking services from backend systems. A virtual client image of state information associated with the mobile client is stored such that when the mobile client interacts with the proxy, the virtual image updates to the latest client state. Based on the changes to the state, the proxy system asynchronously accesses one or more arbitrary services of the backend systems on behalf of the mobile client. When the mobile client connects to the proxy, the proxy will have the latest services associated with the states of the virtual image, and updates the state of the mobile client. Updating and accessing occurs asynchronously on the frontend between the proxy and mobile devices and on the backend between the proxy and the backend systems.
    • 通用代理移动设备管理架构。 该架构作为从后端系统寻求服务的移动客户端的代理。 存储与移动客户端相关联的状态信息的虚拟客户端映像,使得当移动客户端与代理交互时,虚拟映像更新到最新的客户端状态。 基于状态的变化,代理系统代表移动客户端异步访问后端系统的一个或多个任意服务。 当移动客户端连接到代理时,代理将具有与虚拟映像的状态相关联的最新服务,并更新移动客户端的状态。 在代理和移动设备之间的前端以及代理服务器和后端系统之间的后台,异步地进行更新和访问。
    • 15. 发明申请
    • STATISTICAL SECURITY FOR ANONYMOUS MESH-UP ORIENTED ONLINE SERVICES
    • 不间断的网上服务的统一安全
    • US20110214174A1
    • 2011-09-01
    • US12713431
    • 2010-02-26
    • Shai HerzogGil Shklarski
    • Shai HerzogGil Shklarski
    • H04L9/32
    • H04L63/20H04L63/08H04L63/0807H04L63/0884H04L63/105H04L63/1408H04L63/1416
    • Web pages and applications commonly consume functionality provided by services to provide users with a rich experience. For example, a backend mapping service may provide access to these services. However, the users and application consuming the services may be anonymous and unverified. Accordingly, a two ticket validation technique is provided to validate service execution requests from anonymous applications. In particular, a user is provided with a client ticket comprising a reputation. The reputation may be adjusted over time based upon how the user consumes services. An application may request access to a service by providing the client ticket and an application ticket for validation. The reputation of the user may be used to determine an access level at which the application may access the service. Users with a high reputation may receive high quality access to the service, while users with a low reputation may receive lower quality access.
    • 网页和应用程序通常消耗服务提供的功能,为用户提供丰富的体验。 例如,后端映射服务可以提供对这些服务的访问。 然而,消费服务的用户和应用程序可能是匿名的和未验证的。 因此,提供了两票验证技术来验证来自匿名应用的服务执行请求。 特别地,向用户提供包括声誉的客户机票。 可以根据用户如何消费服务来随时间调整声誉。 应用程序可以通过提供客户端票证和用于验证的应用票证来请求访问服务。 可以使用用户的信誉来确定应用可以访问该服务的访问级别。 具有较高信誉的用户可能会获得高质量的访问服务,而信誉低的用户可能会获得较低质量的访问。
    • 19. 发明授权
    • Cost reduction of NAT connection state keep-alive
    • NAT连接状态的降低成本保持活跃
    • US08553701B2
    • 2013-10-08
    • US13196337
    • 2011-08-02
    • Shai Herzog
    • Shai Herzog
    • H04L12/28
    • H04W52/0229H04L61/2553H04L61/256H04L69/28H04W28/06H04W48/08H04W76/25H04W92/02Y02D70/00Y02D70/1224Y02D70/142Y02D70/144
    • Keep-alive processing for NAT devices and reducing power consumption in wireless clients. A server driven keep-alive mechanism facilitates keep-alive messages to a NAT device currently providing a connection to a mobile client to refresh the NAT state, thereby reducing or eliminating power consumption in a wireless device to respond to the connection with keep-alive packets. In one instance, keep-alive packets are sent to the NAT device to reset the NAT timeout timer, and then to the mobile client. The client responds only when expected keep-alive packets are not received at the client. In another instance, keep-alive packets reset the NAT timer to maintain the connection but are dropped or self-destruct before reaching the mobile client thereby providing the optimum power conservation in the mobile device. Thus, the client is not forced into extra client activity to send or receive wireless data, thereby draining the battery.
    • NAT设备的持续处理和无线客户端的功耗降低。 服务器驱动的保持活动机制便于向当前提供到移动客户端的连接的NAT设备的保持活动消息来刷新NAT状态,从而减少或消除无线设备中的功率消耗以响应与保持活动分组的连接 。 在一种情况下,将活动数据包发送到NAT设备以重置NAT超时定时器,然后再发送到移动客户端。 只有当客户端没有收到预期的保持活动数据包时,客户端才会响应。 在另一种情况下,保持活动分组重置NAT定时器以维持连接,但是在到达移动客户端之前丢弃或自毁,从而在移动设备中提供最佳的功率节省。 因此,客户端不被迫进行额外的客户端活动来发送或接收无线数据,从而排出电池。