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    • 1. 发明申请
    • QUALITY OF SERVICE TREATEMENT FOR APPLICATIONS WITH MULTIPLE TRAFFIC CLASSES
    • 使用多种交通类的应用服务质量
    • US20130329550A1
    • 2013-12-12
    • US13491312
    • 2012-06-07
    • Lalit R. KotechaWilliam H. StoneChris S. Neisinger
    • Lalit R. KotechaWilliam H. StoneChris S. Neisinger
    • H04W24/00
    • H04L47/24H04L47/2425H04L47/245H04L47/2475H04L47/6275H04W4/08H04W28/0257H04W76/15
    • A system may receive a connection request, from a user device, that includes information identifying a particular application; identify that the particular application is associated with a group of classes of traffic; establish a group of bearer channels that are associated with the group of classes of traffic, the group of bearer channels being associated with a group of different levels of quality of service (“QoS”); process, via a first bearer channel and according to a first level of QoS, first traffic associated with the user device and the particular application; and process, via a second bearer channel of the group of bearer channels, according to a second level of QoS, second traffic associated with the user device and the particular application, the second bearer channel being different from the first bearer channel, and the second level of QoS being different from the first level of QoS.
    • 系统可以从用户设备接收包括识别特定应用的信息的连接请求; 识别特定应用程序与一组流量相关联; 建立与所述业务类别组相关联的一组承载信道,所述一组承载信道与一组不同等级的服务质量(“QoS”)相关联; 经由第一承载信道和根据QoS的第一级别处理与所述用户设备和所述特定应用相关联的第一流量; 并且经由所述承载信道组的第二承载信道,根据第二级别的QoS,与所述用户设备和所述特定应用相关联的第二业务,所述第二承载信道与所述第一承载信道不同,并且所述第二承载信道 QoS级别与第一级QoS不同。
    • 2. 发明授权
    • Quality of service treatement for applications with multiple traffic classes
    • 多种流量类应用程序的服务质量处理
    • US09007899B2
    • 2015-04-14
    • US13491312
    • 2012-06-07
    • Lalit R. KotechaWilliam H. StoneChris S. Neisinger
    • Lalit R. KotechaWilliam H. StoneChris S. Neisinger
    • H04L12/26H04L12/851
    • H04L47/24H04L47/2425H04L47/245H04L47/2475H04L47/6275H04W4/08H04W28/0257H04W76/15
    • A system may receive a connection request, from a user device, that includes information identifying a particular application; identify that the particular application is associated with a group of classes of traffic; establish a group of bearer channels that are associated with the group of classes of traffic, the group of bearer channels being associated with a group of different levels of quality of service (“QoS”); process, via a first bearer channel and according to a first level of QoS, first traffic associated with the user device and the particular application; and process, via a second bearer channel of the group of bearer channels, according to a second level of QoS, second traffic associated with the user device and the particular application, the second bearer channel being different from the first bearer channel, and the second level of QoS being different from the first level of QoS.
    • 系统可以从用户设备接收包括识别特定应用的信息的连接请求; 识别特定应用程序与一组流量相关联; 建立与所述业务类别组相关联的一组承载信道,所述一组承载信道与一组不同等级的服务质量(“QoS”)相关联; 经由第一承载信道和根据QoS的第一级别处理与所述用户设备和所述特定应用相关联的第一流量; 并且经由所述承载信道组的第二承载信道,根据第二级别的QoS,与所述用户设备和所述特定应用相关联的第二业务,所述第二承载信道与所述第一承载信道不同,并且所述第二承载信道 QoS级别与第一级QoS不同。
    • 4. 发明授权
    • Providing a location-based service using real-time radio access network (RAN) modeling
    • 使用实时无线电接入网(RAN)建模提供基于位置的服务
    • US08577391B2
    • 2013-11-05
    • US13077178
    • 2011-03-31
    • Benjamin J. ParkerChris S. Neisinger
    • Benjamin J. ParkerChris S. Neisinger
    • H04W24/00
    • H04W4/02H04W16/22H04W64/00
    • A system is configured to receive information associated with a flow being transported via a cell within a radio access network (RAN) associated with a service provider network; identify a user device, associated with the flow, based on the information; identify a location of the device based on a location of the cell; generate a group of codes based on the location, the codes corresponding to a group of code lengths and representing one or more quantities of error associated with the location, where a particular code is associated with a code length that corresponds to a quantity of error; and transmit the codes to a content provider, where the codes enable the content provider to obtain the quantity of error that corresponds to a geographical boundary in which the user device is located, and target content, associated with an advertiser within the boundary, to the user device.
    • 系统被配置为接收与正在通过与服务提供商网络相关联的无线接入网络(RAN)内的小区传输的流相关联的信息; 基于所述信息识别与所述流相关联的用户设备; 基于单元的位置识别设备的位置; 基于所述位置生成一组代码,所述代码对应于一组代码长度并且表示与所述位置相关联的一个或多个错误量,其中特定代码与对应于错误量的代码长度相关联; 并将代码发送到内容提供商,其中所述代码使得内容提供商能够获得与用户设备所在的地理边界对应的错误量以及与该边界内的广告商相关联的目标内容到 用户设备。
    • 8. 发明授权
    • Data usage monitoring per application
    • 每个应用程序的数据使用监控
    • US08484568B2
    • 2013-07-09
    • US12862862
    • 2010-08-25
    • Steven R. RadosChris S. Neisinger
    • Steven R. RadosChris S. Neisinger
    • G06F13/00G06F15/00
    • H04L43/0876H04L41/5032H04L41/5067H04L67/36
    • A user device associates a data session with a particular application, of the user device, that initiated the data session. The user device monitors network data usage for the data session and/or receives network data usage from a monitoring device associated with the network. The device stores and/or retrieves statistics for the network data usage associated with the particular application. The device further retrieves subscription plan information associated with the user device and presents, on a display, the statistics for the network data usage associated with the particular application and in relation to the subscription plan information associated with the user device.
    • 用户设备将数据会话与发起数据会话的用户设备的特定应用相关联。 用户设备监视数据会话的网络数据使用和/或从与网络相关联的监控设备接收网络数据使用。 设备存储和/或检索与特定应用相关联的网络数据使用的统计信息。 设备还检索与用户设备相关联的订阅计划信息,并且在显示器上呈现与特定应用相关联的网络数据使用的统计信息,并且相对于与用户设备相关联的订阅计划信息。
    • 9. 发明授权
    • Mobile station randomizing of message transmission timing to mitigate mass message event
    • 移动台随机化消息传输定时以减轻大容量消息事件
    • US07379705B1
    • 2008-05-27
    • US10935280
    • 2004-09-08
    • Steven R. RadosChris S. Neisinger
    • Steven R. RadosChris S. Neisinger
    • H04B17/00H04H9/00
    • H04M1/72547H04M2203/1041H04M2207/18
    • To mitigate the impact of a mass communication event, such as a mass voting event, on the resources of the mobile wireless communication network, each user's mobile station is adapted to appropriately adjust its timing of the transmission during the mass communication event. In a voting example, the mobile station delays sending the user's vote by a random time interval. When implemented in a substantial number of mobile stations, the mobile stations randomly delay their individual transmissions, effectively spreading the traffic over a larger time window, thereby reducing the instantaneous peak load on the wireless network. However, since the solution is implemented in the mobile stations, there is no added overhead traffic related to the event at or around the time of the event. Consequently, handling of the event requires less network capacity to account for this bursty traffic.
    • 为了减轻诸如大规模投票事件的大众通信事件对移动无线通信网络的资源的影响,每个用户的移动站适于在大众通信事件期间适当地调整其传输的定时。 在投票示例中,移动台延迟以随机时间间隔发送用户的投票。 当在大量移动站中实现时,移动站随机地延迟其各自的传输,在较大的时间窗口上有效地扩展业务,从而减少无线网络上的瞬时峰值负载。 然而,由于解决方案在移动台中实现,所以在事件或事件发生时不存在与事件相关的额外开销流量。 因此,事件的处理需要更少的网络容量来解决这个突发的流量。