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    • 1. 发明授权
    • Prohibiting unnecessary scheduling requests for uplink grants
    • 禁止上传许可的不必要的调度请求
    • US08582514B2
    • 2013-11-12
    • US12933807
    • 2009-03-19
    • Peter MobergMagnus LinstromEva EnglundHenrik Enbuske
    • Peter MobergMagnus LinstromEva EnglundHenrik Enbuske
    • H04W4/00
    • H04W72/1284H04W72/1242
    • Uplink transmission scheduling requests (SRs) may be prohibited for a lower priority data flow, logical channel group (e.g., VoIP configured with semi-persistent resource allocation), or other grouping but may still be triggered for higher priority traffic (e.g., data connected to a signaling radio bearer (SRB)). More efficient scheduling is also achieved by allowing an uplink transmission scheduler to distinguish between different priority flows or groups (e.g., LCGs) without a buffer status report (BSR), As a result, when a semi-persistent resource is scheduled for the lower priority data, there is less delay for high priority data while eliminating uplink and downlink control signaling, i.e., fewer scheduling requests (SRs) and uplink grants, for the lower priority data.
    • 对于较低优先级的数据流,逻辑信道组(例如,配置有半持久资源分配的VoIP)或其他分组,上行链路传输调度请求(SR)可能被禁止,但是对于较高优先级的业务(例如,数据连接 到信令无线电承载(SRB))。 通过允许上行链路传输调度器在不具有缓冲器状态报告(BSR)的情况下区分不同优先权流或组(例如,LCG)也可以实现更有效的调度。 因此,当为较低优先级数据调度半持久资源时,高优先级数据的延迟较少,同时消除了较低优先级的上行链路和下行链路控制信令,即更少的调度请求(SR)和上行链路授权 数据。
    • 2. 发明申请
    • PROHIBITING UNNECESSARY SCHEDULING REQUESTS FOR UPLINK GRANTS
    • 禁止上传授权的不必要的调度要求
    • US20120039263A1
    • 2012-02-16
    • US12933807
    • 2009-03-19
    • Peter MobergMagnus LinstromEva EnglundHenrik Enbuske
    • Peter MobergMagnus LinstromEva EnglundHenrik Enbuske
    • H04W72/04
    • H04W72/1284H04W72/1242
    • Uplink transmission scheduling requests (SRs) may be prohibited for a lower priority data flow, logical channel group (e.g., VoIP configured with semi-persistent resource allocation), or other grouping but may still be triggered for higher priority traffic (e.g., data connected to a signaling radio bearer (SRB)). More efficient scheduling is also achieved by allowing an uplink transmission scheduler to distinguish between different priority flows or groups (e.g., LCGs) without a buffer status report (BSR), As a result, when a semi-persistent resource is scheled for the lower priority data, there is less delay for high priority data while eliminating uplink and downlink control signaling, i.e., fewer scheduling requests (SRs) and uplink grants, for the lower priority data.
    • 对于较低优先级的数据流,逻辑信道组(例如,配置有半持久资源分配的VoIP)或其他分组,上行链路传输调度请求(SR)可能被禁止,但是对于较高优先级的业务(例如,数据连接 到信令无线电承载(SRB))。 通过允许上行链路传输调度器在不具有缓冲器状态报告(BSR)的情况下区分不同优先权流或组(例如,LCG)也可以实现更有效的调度。 结果是,当对于较低优先级数据进行半持久资源时,高优先级数据的延迟较少,同时消除了较低优先级的上行链路和下行链路控制信令,即更少的调度请求(SR)和上行链路授权 数据。
    • 5. 发明授权
    • Enhanced dedicated-channel signaling in a CELL—FACH state
    • 在CELL-FACH状态下增强的专用信道信令
    • US08989117B2
    • 2015-03-24
    • US13585944
    • 2012-08-15
    • Edgar RamosHenrik EnbuskeJose Luis PradasPaulson Angelo Vijay Silveris
    • Edgar RamosHenrik EnbuskeJose Luis PradasPaulson Angelo Vijay Silveris
    • H04W4/00H04W76/06H04W74/08
    • H04W76/36H04L5/0078H04W74/0833
    • A new set of random-access preamble signatures are introduced to differentiate new-release UEs from UEs compliant only with earlier releases. Additional new features of a random-access procedure are also disclosed, including an ability to deploy multiple transmission-time-intervals TTIs) in a given area. An example mobile terminal, according to some embodiments of the present invention, selects a TTI from two or more possible TTIs. The mobile terminal then selects a preamble signature from a group of one or more preamble signatures associated with enhanced-uplink resources and associated with the selected TTI, and transmits a random-access channel (RACH) preamble, using the selected preamble signature. In some embodiments, the mobile terminal selects between a 2-millisecond TTI and a 10-millisecond TTI.
    • 引入一组新的随机接入前导签名,以将新发布的UE与仅与早期版本兼容的UE区分开来。 还公开了随机接入过程的其他新特征,包括在给定区域中部署多个传输时间间隔(TTI)的能力。 根据本发明的一些实施例的示例性移动终端从两个或更多个可能的TTI中选择TTI。 然后,移动终端从与增强 - 上行链路资源相关联并与所选择的TTI相关联的一个或多个前导签名的组中选择前导码签名,并使用所选择的前导码签名来发送随机接入信道(RACH)前导码。 在一些实施例中,移动终端在2毫秒TTI和10毫秒TTI之间进行选择。
    • 8. 发明授权
    • SRB enhancement on HS-DSCH during cell change
    • 细胞变化时HS-DSCH上的SRB增强
    • US08711766B2
    • 2014-04-29
    • US11996343
    • 2006-07-10
    • Muhammad Ali KazmiHenrik Enbuske
    • Muhammad Ali KazmiHenrik Enbuske
    • H04W4/00
    • H04W72/10H04W48/08H04W88/12H04W92/12
    • The present invention relates to a radio network controller and a radio base station for prioritization of signalling radio bearers (SRB) with regard to their content to achieve an efficient resource usage. The radio network controller can retrieve knowledge about the resource status in a Node B serving a certain user equipment and request this Node B to prioritize signalling radio bearers (SRB) carrying signalling information with regard to radio resource control that is of particular importance and intended to be efficiently forwarded to said user equipment. The Node B then prioritizes such signalling radio bearers and schedules the prioritized signalling radio bearers with respect to their priorities using sufficient radio resources.
    • 无线电网络控制器和无线电基站技术领域本发明涉及无线电网络控制器和无线电基站,用于针对其内容来对信令无线电承载(SRB)进行优先级化以实现有效的资源使用。 无线电网络控制器可以检索关于服务于某个用户设备的节点B中的资源状态的知识,并请求该节点B对携带关于无线电资源控制的信令信息的信令无线电承载(SRB)进行优先级排序,该无线电资源控制特别重要并且意图 有效地转发到所述用户设备。 然后,节点B对这样的信令无线电承载进行优先级排序,并使用足够的无线电资源来调度优先级信令无线电承载关于它们的优先级。
    • 9. 发明授权
    • Managing uplink resources in a cellular radio communications system
    • 管理蜂窝无线电通信系统中的上行链路资源
    • US08218488B2
    • 2012-07-10
    • US12314247
    • 2008-12-05
    • Stefan WagerJohan BergmanHenrik EnbuskeJose Luis Pradas
    • Stefan WagerJohan BergmanHenrik EnbuskeJose Luis Pradas
    • H04W4/00
    • H04W72/0413H04W84/042
    • The technology in this application provides a method and apparatus for efficiently using common uplink radio resources, e.g. a common uplink enhanced-dedicated physical channel (E-DCH) resource. A UE releases a common E-DCH resource very quickly after a completed transmission. In addition or alternatively, a base station may release a common E-DCH resource configuration from the network side to free up common E-DCH resources for use by other UEs. A low overhead signaling scheme for quickly and effectively releasing of common E-DCH resources between a UE and a base station is also described. For example, existing signaling fields on protocol layer 2 (L2) or layer 1 (L1) may be used. In one preferred example embodiment, signaling fields already in use in a CELL_DCH service state are given a different meaning for UEs in a CELL_FACH service state so that common E-DCH resources are quickly and effectively released.
    • 该应用中的技术提供了一种用于有效地使用公共上行链路无线电资源的方法和装置, 公共上行增强专用物理信道(E-DCH)资源。 在完成传输之后,UE可以非常快速地释放公共E-DCH资源。 另外或替代地,基站可以从网络侧释放公共E-DCH资源配置以释放用于其他UE使用的公共E-DCH资源。 还描述了用于在UE和基站之间快速且有效地释放公共E-DCH资源的低开销信令方案。 例如,可以使用协议层2(L2)或层1(L1)上的现有信令字段。 在一个优选示例实施例中,CELL_DCH服务状态中已经使用的信令字段被给予具有CELL_FACH服务状态的UE不同的含义,使得公共E-DCH资源被快速有效地释放。
    • 10. 发明申请
    • Reporting of Non-Real-Time MDT Measurements
    • 非实时MDT测量报告
    • US20110201324A1
    • 2011-08-18
    • US13028387
    • 2011-02-16
    • Håkan PerssonHenrik EnbuskeJanne Peisa
    • Håkan PerssonHenrik EnbuskeJanne Peisa
    • H04W24/10
    • H04W24/10H04W24/08
    • Methods and apparatus for providing measurement reports to a wireless communication network from a mobile station are disclosed. A first mobile station performs measurements concerning one or more connectivity aspects for the first mobile station in relation to the wireless communication network and stores the measurements in an internal log, where the measurements are performed according to a reporting configuration for the first mobile station. A first network node of the network sends a request for a logged measurement report, which is received by the first mobile station. The first mobile station then sends a logged measurement report as a response to the, which report is then received by the first network node.
    • 公开了一种从移动台向无线通信网络提供测量报告的方法和装置。 第一移动台相对于无线通信网络执行关于第一移动台的一个或多个连接方面的测量,并且将测量值存储在内部日志中,其中根据第一移动站的报告配置执行测量。 网络的第一网络节点发送由第一移动台接收的记录测量报告的请求。 然后,第一移动台作为响应发送记录的测量报告,该报告然后由第一网络节点接收。