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    • 1. 发明授权
    • Dynamic throughput allocation in a converged voice/data services network interface
    • 融合语音/数据业务网络接口中的动态吞吐量分配
    • US06744732B1
    • 2004-06-01
    • US09515488
    • 2000-02-29
    • Jorg-Thomas PfenningJameel Hyder
    • Jorg-Thomas PfenningJameel Hyder
    • H04L1226
    • H04L65/80H04L29/06027H04L47/15H04L47/70H04L47/762H04L47/783H04L47/805H04L47/822
    • A dynamic throughput allocation method and framework are disclosed. The method includes initially providing an interface having a finite throughput. The data calls are allocated varying portions of the connection's available throughput. A throughput allocation server assigns portions of the finite throughput supported by the interface to connections between ones of a set of internal nodes and ones of a set of external nodes connected to ones of the set of internal nodes. The throughput allocation server includes a table describing the portions of the finite throughput assigned to each one of the connections. A throughput allocation controller monitors the available throughput. When under heavy usage, the throughput allocation controller determines that available throughput is less than a minimum desired value, and in response de-allocates a portion, but not all, of the throughput previously allocated to at least one data call.
    • 公开了一种动态吞吐量分配方法和框架。 该方法包括初始提供具有有限吞吐量的接口。 数据呼叫分配连接可用吞吐量的不同部分。 吞吐量分配服务器将接口支持的有限吞吐量的一部分分配给一组内部节点中的一个和连接到该组内部节点中的一组的一组外部节点中的一个的连接。 吞吐量分配服务器包括描述分配给每个连接的有限吞吐量的部分的表。 吞吐量分配控制器监视可用吞吐量。 在大量使用情况下,吞吐量分配控制器确定可用吞吐量小于最小期望值,并且响应地将先前分配给至少一个数据呼叫的吞吐量的一部分(但不是全部)去分配。
    • 2. 发明授权
    • Synchronization peer participant model
    • 同步对等参与者模型
    • US07756825B2
    • 2010-07-13
    • US11354677
    • 2006-02-15
    • Moe KhosravyJorg-Thomas PfenningLev NovikMarc LevyMichael S. BeckermanMyron C. ThomasVladimir Sadovsky
    • Moe KhosravyJorg-Thomas PfenningLev NovikMarc LevyMichael S. BeckermanMyron C. ThomasVladimir Sadovsky
    • G06F17/30
    • G06F17/30581
    • Various technologies and techniques are disclosed that improve synchronization of data between varying types of devices and/or services. A full participant receives a request from another participant to perform a synchronization operation. The synchronization engine determines whether the device or service is a full, partial, or simple participant. The device or service is a simple participant if it has a data store for synchronized data and no knowledge store. The device or service is a partial participant if it has a data store for synchronized data and a knowledge store, but does not understand the knowledge. The device or service is a full participant type if it has a data store for synchronized data and a knowledge store and understands the knowledge. The synchronization engine performs the synchronization operation with the device or service using a set of logic that is appropriate for the type of device or service.
    • 公开了改进各种设备和/或服务之间的数据同步的各种技术和技术。 完整的参与者接收来自另一参与者的请求以执行同步操作。 同步引擎确定设备或服务是完整的,部分的还是简单的参与者。 如果设备或服务具有用于同步数据的数据存储并且没有知识存储,则该设备或服务是简单的参与者。 如果设备或服务具有用于同步数据的数据存储和知识存储,但不了解知识,那么设备或服务是部分参与者。 如果设备或服务具有用于同步数据的数据存储和知识存储并且了解知识,则该设备或服务是完整的参与者类型。 同步引擎使用适合于设备或服务类型的一组逻辑来执行与设备或服务的同步操作。
    • 4. 发明申请
    • Synchronization peer participant model
    • 同步对等参与者模型
    • US20060215569A1
    • 2006-09-28
    • US11354677
    • 2006-02-15
    • Moe KhosravyJorg-Thomas PfenningLev NovikMarc LevyMichael BeckermanMyron ThomasVladimir Sadovsky
    • Moe KhosravyJorg-Thomas PfenningLev NovikMarc LevyMichael BeckermanMyron ThomasVladimir Sadovsky
    • H04L12/26H04J1/16
    • G06F17/30581
    • Various technologies and techniques are disclosed that improve synchronization of data between varying types of devices and/or services. A full participant receives a request from another participant to perform a synchronization operation. The synchronization engine determines whether the device or service is a full, partial, or simple participant. The device or service is a simple participant if it has a data store for synchronized data and no knowledge store. The device or service is a partial participant if it has a data store for synchronized data and a knowledge store, but does not understand the knowledge. The device or service is a full participant type if it has a data store for synchronized data and a knowledge store and understands the knowledge. The synchronization engine performs the synchronization operation with the device or service using a set of logic that is appropriate for the type of device or service.
    • 公开了改进各种设备和/或服务之间的数据同步的各种技术和技术。 完整的参与者接收来自另一参与者的请求以执行同步操作。 同步引擎确定设备或服务是完整的,部分的还是简单的参与者。 如果设备或服务具有用于同步数据的数据存储并且没有知识存储,则该设备或服务是简单的参与者。 如果设备或服务具有用于同步数据的数据存储和知识存储,但不了解知识,那么设备或服务是部分参与者。 如果设备或服务具有用于同步数据的数据存储和知识存储并且了解知识,则该设备或服务是完整的参与者类型。 同步引擎使用适合于设备或服务类型的一组逻辑来执行与设备或服务的同步操作。
    • 8. 发明授权
    • Dispatching notification to a device based on the current context of a user with the device
    • 基于用户的设备的当前上下文向设备发送通知
    • US07287056B2
    • 2007-10-23
    • US09966685
    • 2001-09-28
    • Shawn Dominic LovelandJorg-Thomas Pfenning
    • Shawn Dominic LovelandJorg-Thomas Pfenning
    • G06F15/16G06F7/00H04M15/00
    • H04L67/22H04L67/26H04L69/329H04Q3/0062Y10S707/99943
    • After detecting that an event occurs for which notification is desired, a notification service determines an appropriate way to notify the user given the user's current circumstances. The notification service determines the appropriate notification method by accessing context information for the user (e.g., whether the user's telephone is on, busy, in hands-free mode, in meeting mode, or the like). The notification service then accesses a set of rules from which the appropriate notification method may be determined based on the current circumstances of the user. These rules may be, for example, default rules or may be set of the user. The notification service then causes the notification to be sent to the user using the appropriate notification method. The notification methods include voice notifications in which the notification is read to the user.
    • 在检测到需要通知的事件之后,通知服务确定给定用户当前情况的适当方式通知用户。 通知服务通过访问用户的上下文信息(例如,用户的电话是否处于开启,忙碌,免提模式,会议模式等)来确定适当的通知方法。 然后,通知服务访问一组规则,根据用户的当前情况,可以根据该规则来确定适当的通知方法。 这些规则可以是例如默认规则或者可以是用户的设置。 通知服务然后使用适当的通知方法将通知发送给用户。 通知方法包括向用户读取通知的语音通知。
    • 9. 发明授权
    • Back-end decoupled management model and management system utilizing same
    • 后端解耦管理模式和管理系统利用它
    • US06871346B1
    • 2005-03-22
    • US09502689
    • 2000-02-11
    • Vishwajith KumbalimuttJorg-Thomas PfenningQuentin S. MillerMichel GuittetTodd L. Paul
    • Vishwajith KumbalimuttJorg-Thomas PfenningQuentin S. MillerMichel GuittetTodd L. Paul
    • G06F7/00G06F9/44G06F9/46H04L29/08
    • H04L67/125G06F9/454
    • Presented is a web-based enterprise management compliant management framework whose back end components are decoupled from the various user interfaces available for accessing the management system. In the Windows environment, the management system of the instant invention is also compliant with the Windows management instrumentation (WMI) requirements. This management system includes WMI providers which implement standard interfaces which decouple all semantic and syntactic checks from the user interface and which provide common error strings, help, etc. to a user regardless of the user interface being used. The providers of the management system of the instant invention store and access data in the active directory. As such, these providers present a customizable user interface which may be based on a user's expertise level and which may be dynamically localized to the user's preferred language. Transaction support is also provided which prevents multiple users from changing the same attributes at the same time through different user interfaces.
    • 提出了一种基于Web的企业管理兼容管理框架,其后端组件与可用于访问管理系统的各种用户界面脱钩。 在Windows环境中,本发明的管理系统也符合Windows管理工具(WMI)要求。 该管理系统包括实现标准接口的WMI提供者,它们将用户界面中的所有语义和句法检查分离出来,并且无论使用用户界面如何,都向用户提供常见的错误字符串,帮助等。 本发明的管理系统的提供者在活动目录中存储和访问数据。 因此,这些提供者提供可定制的用户界面,其可以基于用户的专业知识水平,并且其可以被动态地定位到用户的首选语言。 还提供事务支持,防止多个用户通过不同的用户界面同时更改相同的属性。