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    • 3. 发明授权
    • Method and system for automated transportation use tracking and billing
    • 自动化运输的方法和系统使用跟踪和计费
    • US08660867B2
    • 2014-02-25
    • US13352129
    • 2012-01-17
    • Eugene KrivopaltsevAjay TripathiAlexander S. Ran
    • Eugene KrivopaltsevAjay TripathiAlexander S. Ran
    • G06Q10/00
    • G06Q50/30
    • A user registers with an automated transportation use and billing system. The user's geographical location/position is monitored and periodically compared with the geographical location/position of one or more public transportation systems. When a determination is made that the user's geographical location/position is the same as the geographical location/position of a public transportation system, an assumption is made that the user is making use of the public transportation system and once the user's geographical location/position data differs from the public transportation system's geographical location/position data, it is further assumed that the user is no longer making use of the public transportation system. Data indicating the users assumed use of the public transportation system, calculated as described above, is then recorded and credited to the user's account.
    • 用户注册自动运输使用和计费系统。 对用户的地理位置/位置进行监测,并定期与一个或多个公共交通系统的地理位置/位置进行比较。 当确定用户的地理位置/位置与公共交通系统的地理位置/位置相同时,假设用户正在利用公共交通系统,并且一旦用户的地理位置/位置 数据与公共交通系统的地理位置/位置数据不同,进一步假定用户不再使用公共交通系统。 然后记录表示用户假定使用如上所述计算的公共交通系统的数据并记入用户的账户。
    • 5. 发明申请
    • METHOD AND SYSTEM FOR AUTOMATED TRANSPORTATION USE TRACKING AND BILLING
    • 自动运输方法和系统使用跟踪和计费
    • US20130185123A1
    • 2013-07-18
    • US13352129
    • 2012-01-17
    • Eugene KrivopaltsevAjay TripathiAlexander S. Ran
    • Eugene KrivopaltsevAjay TripathiAlexander S. Ran
    • G06Q50/30
    • G06Q50/30
    • A user registers with an automated transportation use and billing system. The user's geographical location/position is monitored and periodically compared with the geographical location/position of one or more public transportation systems. When a determination is made that the user's geographical location/position is the same as the geographical location/position of a public transportation system, an assumption is made that the user is making use of the public transportation system and once the user's geographical location/position data differs from the public transportation system's geographical location/position data, it is further assumed that the user is no longer making use of the public transportation system. Data indicating the users assumed use of the public transportation system, calculated as described above, is then recorded and credited to the user's account.
    • 用户注册自动运输使用和计费系统。 对用户的地理位置/位置进行监测,并定期与一个或多个公共交通系统的地理位置/位置进行比较。 当确定用户的地理位置/位置与公共交通系统的地理位置/位置相同时,假设用户正在利用公共交通系统,并且一旦用户的地理位置/位置 数据与公共交通系统的地理位置/位置数据不同,进一步假定用户不再使用公共交通系统。 然后记录表示用户假定使用如上所述计算的公共交通系统的数据并记入用户的账户。
    • 8. 发明授权
    • Workflow-based user interface system for mobile devices management
    • 基于工作流的用户界面系统,用于移动设备管理
    • US08863107B2
    • 2014-10-14
    • US12188977
    • 2008-08-08
    • Eugene Krivopaltsev
    • Eugene Krivopaltsev
    • G06F9/44H04L29/06
    • H04L29/06H04L41/0233H04L41/0806H04L41/20
    • Embodiments of a workflow-based user interface for defining and managing functions implemented on mobile devices are described. A method under an embodiment utilizes a workflow-based mobile device management user interface. The method utilizes a pluggable workflow framework to achieve mobile device management externalization. The mobile device management platform is required to implement a set of basic action blocks that are used as primitives for further management policy composition. The method provides a development environment integrated with a mobile device management platform that allows assembling management (monitoring) primitives into meaningful management policies without changes to a core management platform infrastructure. The method claims addition of new primitives deployed as add-on products to enable new and advanced management policies, best integration practices with a carrier operational support system. The method enables debugging and tracing mobile device management policies in real time to minimize development and testing efforts.
    • 描述了用于定义和管理在移动设备上实现的功能的基于工作流的用户界面的实施例。 根据实施例的方法利用基于工作流的移动设备管理用户界面。 该方法利用可插拔的工作流框架来实现移动设备管理外部化。 移动设备管理平台需要实现一组用作进一步管理策略组合的原语的基本操作块。 该方法提供了与移动设备管理平台集成的开发环境,允许将管理(监视)原语组合成有意义的管理策略,而不改变核心管理平台基础架构。 该方法要求添加部署为附加产品的新原语,以实现新的和先进的管理策略,与运营商运营支持系统的最佳集成实践。 该方法能够实时调试和跟踪移动设备管理策略,以最大限度地减少开发和测试工作。
    • 9. 发明申请
    • Intelligent Mobile Device Management Client
    • 智能移动设备管理客户端
    • US20100037088A1
    • 2010-02-11
    • US12203828
    • 2008-09-03
    • Eugene KrivopaltsevGregory D. BuzzardManuel RomanShahid ShoaibMichael Diener
    • Eugene KrivopaltsevGregory D. BuzzardManuel RomanShahid ShoaibMichael Diener
    • G06F15/173G06F11/07
    • H04L41/0681H04L41/0206H04L41/0213H04L41/0233H04L41/0806H04L41/0856H04L41/0893H04L67/125H04L67/34H04W4/50
    • Embodiments of an intelligent agent for an OMA DM enabled mobile client device are described. The intelligent agent includes modules for storing management property values in one or more nodes of an OMA DM management tree of the mobile client device. At least some of the management values are analyzed and set in a server computer coupled to the mobile client device over a wireless network. The intelligent mobile client is configured to manage itself based on initial instructions and policies provided by a server that are transferred to the client by the OMA DM protocol. For example, a client might notice that the battery is nearly empty and so it automatically decreases its own backlight illumination level. The intelligent agent defines a set of management properties to include a status property representing a node severity value, and a property group consisting of a rule, an action property representing an action that is executed if the rule is satisfied, and a threshold value that represents a minimum value that is used as a rule parameter.
    • 描述了支持OMA DM的移动客户端设备的智能代理的实施例。 智能代理包括用于在移动客户端设备的OMA DM管理树的一个或多个节点中存储管理属性值的模块。 在通过无线网络耦合到移动客户端设备的服务器计算机中分析和设置至少一些管理值。 智能移动客户端被配置为基于由OMA DM协议传送到客户端的服务器提供的初始指令和策略来管理自身。 例如,客户端可能会注意到电池几乎是空的,因此它会自动降低自己的背光照明级别。 智能代理定义一组管理属性以包括表示节点严重性值的状态属性,以及由规则组成的属性组,表示在满足规则时执行的动作的动作属性,以及表示 用作规则参数的最小值。
    • 10. 发明授权
    • Installation and management of mobile device [{S]} configuration
    • 安装和管理移动设备[{S]}配置
    • US08139509B2
    • 2012-03-20
    • US12189017
    • 2008-08-08
    • Eugene Krivopaltsev
    • Eugene Krivopaltsev
    • H04L12/28
    • H04L41/0213H04L41/028H04L41/0806H04L41/082H04L41/0856H04L67/125H04L67/26H04L67/303H04L67/34H04W4/06H04W4/50
    • Embodiments of a method and system for managing configurations on mobile devices are described. A method under an embodiment utilizes one or more advanced commands defined by the OMA DM protocol. One such command is the “Get” command, which can be used recursively to traverse a management tree to access the necessary nodes. A variation of this command is the “Get[Struct Data]” command, which traverses a tree or subtree in a single execution instance. The “Get” command is used to get a snapshot from a management tree starting from a specified URI. For this embodiment, it is presumed that a “golden” copy of device exists. The golden copy can be initially configured either manually or by using a mobile device management platform. The method uses a golden device to make a configuration snapshot to be used later for a distribution to multiple targets.
    • 描述了用于管理移动设备上的配置的方法和系统的实施例。 根据实施例的方法利用由OMA DM协议定义的一个或多个高级命令。 一个这样的命令是“Get”命令,它可以递归地使用遍历管理树来访问所需的节点。 该命令的一个变体是“Get [Struct Data]”命令,它遍历单个执行实例中的树或子树。 “Get”命令用于从指定的URI开始从管理树获取快照。 对于该实施例,假设存在设备的“黄金”副本。 可以手动或通过使用移动设备管理平台最初配置黄金副本。 该方法使用黄金设备使配置快照稍后用于分发到多个目标。