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    • 1. 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。
    • 3. 发明授权
    • Methods and nodes supporting cell change
    • 支持细胞变化的方法和节点
    • US08892103B2
    • 2014-11-18
    • US13643193
    • 2012-05-04
    • Joakim AxmonMuhammad Ali KazmiWalter Gerhard Alois Müller
    • Joakim AxmonMuhammad Ali KazmiWalter Gerhard Alois Müller
    • H04W36/00H04W4/00H04W36/32
    • H04W36/30H04W36/04H04W36/32
    • The invention relates to a method for supporting cell change between frequency layers. The method is performed in a UE and/or a RN node of a wireless communication network deploying two frequency layers. The RN node serves a UE in a cell of a first of the two frequency layers. The UE is configured to perform measurements on the first frequency layer, and to exclude measurements on a second of the two frequency layers. The method comprises receiving (610) measurement results from the UE, for measurements performed on a cell of the first frequency layer, determining (620) a location of the UE based on the measurement results, assessing (630) a coverage of a target cell of the second frequency layer based on the location and a coverage map for the two frequency layers, and determining (640) whether to change to the target cell based on the assessment.
    • 本发明涉及一种用于支持频率层之间的小区改变的方法。 该方法在部署两个频率层的无线通信网络的UE和/或RN节点中执行。 RN节点服务于两个频率层中的第一个的小区中的UE。 UE被配置为在第一频率层上执行测量,并且排除在两个频率层中的第二频率层上的测量。 该方法包括:接收(610)来自UE的测量结果,对于在第一频率层的小区执行的测量,基于测量结果确定(620)UE的位置,评估(630)目标小区的覆盖范围 基于所述位置和所述两个频率层的覆盖图,并且基于所述评估来确定(640)是否改变到所述目标小区。
    • 4. 发明授权
    • Composite reporting of wireless relay power capability
    • 无线中继功率能力综合报告
    • US08798525B2
    • 2014-08-05
    • US13384702
    • 2011-06-29
    • Muhammad Ali KazmiOlav Queseth
    • Muhammad Ali KazmiOlav Queseth
    • H04B3/36H04B7/14H04W52/36H04W52/46H04W52/34H04W52/14
    • H04W52/46H04W52/143H04W52/146H04W52/34H04W52/365H04W52/367
    • A relay node (800) reports its output power capability to a donor base station or other network node separately for the relay node's backhaul and access links, which may have different maximum output power. A corresponding network node (900), such as a donor base station, an Operations & Maintenance node, an Operational Support Systems node, a Self-Organizing Network node, is configured to request the relay node (800) to report its backhaul link and access link output power class capabilities or maximum output powers or rated output powers to the network node (900), and then to receive the reported capabilities in response. The report may specify a per-antenna transmit power capability; this may be specifically requested in some cases. The received relay node power-class capability information for the backhaul and access links is then used for one or several network management functions, such as radio resources management or network planning and dimensioning.
    • 中继节点(800)向中继节点的回程和接入链路单独地向施主基站或其他网络节点报告其输出功率能力,其可能具有不同的最大输出功率。 诸如施主基站,操作和维护节点,操作支持系统节点,自组织网络节点的相应网络节点(900)被配置为请求中继节点(800)报告其回程链路和 访问链路输出功率等级能力或最大输出功率或额定输出功率给网络节点(900),然后接收所报告的能力作为响应。 该报告可以指定每天线的发射功率能力; 在某些情况下可能会特别要求这一点。 然后,用于回程和接入链路的接收的中继节点功率级能力信息用于一个或多个网络管理功能,例如无线电资源管理或网络规划和尺寸标注。
    • 5. 发明授权
    • Method and arrangement for selecting an antenna mode in a mobile telecommunication network
    • 用于在移动电信网络中选择天线模式的方法和装置
    • US08611832B2
    • 2013-12-17
    • US12520204
    • 2006-12-20
    • Muhammad Ali KazmiJingyi Liao
    • Muhammad Ali KazmiJingyi Liao
    • H03C7/02
    • H04B7/0689H04B7/0617H04B7/0628H04B7/0871H04W28/18
    • The present invention relates to a method and an arrangement for a mobile telecommunication network for selecting an antenna mode to be used for communication between a radio network and a mobile terminal operating in discontinuous reception mode. The arrangement comprises a determiner configured to determine a mode list comprising antenna modes both supported by the radio network and the mobile terminal, associating means configured to associate each antenna mode in the mode list with a degree of a pre-defined performance measure, retrieving means configured to retrieve information indicating the pre-defined performance measure for the mobile terminal, and a selector configured to select an antenna mode from the mode list at least based on the retrieved information.
    • 本发明涉及一种移动电信网络的方法和装置,用于选择将用于无线电网络和以不连续接收模式操作的移动终端之间的通信的天线模式。 该装置包括:确定器,被配置为确定包括由无线电网络和移动终端支持的天线模式的模式列表;配置装置,被配置为将模式列表中的每个天线模式与预定义的性能测量的程度相关联;检索装置 被配置为检索指示所述移动终端的预定义性能测量的信息,以及选择器,其被配置为至少基于所检索的信息从所述模式列表中选择天线模式。
    • 6. 发明授权
    • Power control for home base station with GNSS receiver
    • 带GNSS接收机的家用基站的电源控制
    • US08526993B2
    • 2013-09-03
    • US12976870
    • 2010-12-22
    • Aurelian BriaFarshid GhasemzadehMuhammad Ali KazmiKai Yu
    • Aurelian BriaFarshid GhasemzadehMuhammad Ali KazmiKai Yu
    • H04M1/00
    • G01S19/11H04W52/143H04W52/367
    • Embodiments herein include a method and a network node in a wireless communications network for controlling a maximum output power of the network node. The network node comprises a Global Navigation Satellite System (GNSS) receiver. The GNSS receiver receives signals from the GNSS. The method comprises determining whether a GNSS signal transmitted from the GNSS is considered detectable. If the GNSS signal is considered detectable, the method includes determining whether the GNSS signal is received directly from the GNSS or via a GNSS repeater. The method further includes selecting a power control method for controlling the maximum output power of the network node, based on at least one of the determination of whether the GNSS signal is considered detectable, and the determination of whether the GNSS signal is received directly from the GNSS or via the GNSS repeater.
    • 本文的实施例包括用于控制网络节点的最大输出功率的无线通信网络中的方法和网络节点。 网络节点包括全球导航卫星系统(GNSS)接收机。 GNSS接收机接收来自GNSS的信号。 该方法包括确定从GNSS发射的GNSS信号是否被认为是可检测的。 如果GNSS信号被认为是可检测的,则该方法包括确定GNSS信号是直接从GNSS接收还是经由GNSS中继器接收。 该方法还包括:基于确定GNSS信号是否被检测到的至少一个来选择用于控制网络节点的最大输出功率的功率控制方法,以及是否直接从 GNSS或GNSS中继器。
    • 8. 发明授权
    • Downlink out of sync detection in continuous packet connectivity
    • 在连续分组连接中下行链路不同步检测
    • US08160075B2
    • 2012-04-17
    • US11865371
    • 2007-10-01
    • Muhammad Ali KazmiRong HuJohan Mikael Bergman
    • Muhammad Ali KazmiRong HuJohan Mikael Bergman
    • H04L12/28
    • H04W52/44H04W52/146H04W52/286
    • Although described herein in terms of UE out-of-sync detection, those of skill in the art will readily recognize that embodiments of the present invention improve in-sync detection for currently out-of-sync UEs 22. That is, if an out-of-sync UE 22 detects sufficiently good channel conditions, it may announce this fact to the network and re-acquire in-sync status. For example, if the UE 22 receives F-DPCH signal transmissions and determines that, e.g., the TPC command error rate is less than a threshold, which is preferably much lower than 30%, over a measurement interval of, e.g., 240 slots (or 160 ms), the UE 22 may conclude that it is in-sync and announce this fact to the network 10. The restrictions of only valid F-DPCH transmissions during the UL DTX gated period will obviously enhance the reliability of this determination, just as is the case in determining out-of-sync status. Furthermore, according to at least one embodiment, the UE 22 may disregard the DTX UL DPCCH state, and transmit a scheduling request during a UL DTX gated period to announce to the network 10 its in-sync status.
    • 在具有不连续UL DPCCH传输的连续分组连接模式中,通过要求从基站到用户设备的所有F-DPCH传输在用户设备的有效期间是有效的,UTRAN用户设备的不同步和同步检测和下行链路功率控制得到改善 UL DTX门控时段。 此外,用户设备在UL DTX门控周期期间接收并考虑所有F-DPCH传输,用于功率控制,不同步和同步检测。 如果用户设备检测到不同步状态,则可以立即发送调度请求以通知网络,暂时或永久地取消不连续的UL DPCCH传输。
    • 9. 发明申请
    • POSITIONING MEASUREMENTS AND CARRIER SWITCHING IN MULTI-CARRIER WIRELESS COMMUNICATION NETWORKS
    • 多载波无线通信网络中的定位测量和载波切换
    • US20120083278A1
    • 2012-04-05
    • US12897915
    • 2010-10-05
    • Muhammad Ali KazmiIana Siomina
    • Muhammad Ali KazmiIana Siomina
    • H04W36/32H04W24/00H04W72/04
    • H04W36/06H04W4/02H04W36/08H04W36/32H04W64/00
    • In a multi-carrier wireless communication network, positioning-aware switching of a primary carrier from a first carrier to a second carrier for a UE is constrained to enable one or more positioning measurements to be performed. Either the selection of the second carrier, the timing of switching from the first to the second carrier, or both, are constrained to enable and enhance the positioning performance. The constraints may be operative at a serving node of the network, at a UE, or both. Further constraints may be applied to the network to enhance positioning performance. Carrier switching may be across Radio Access Technology (RAT), and the positioning constraints may include configuring or re-configuring a device to perform positioning measurements in measurement gaps (e.g., on a secondary carrier in LTE systems when Positioning Reference Signals are not transmitted on the primary carrier).
    • 在多载波无线通信网络中,主载波从用于UE的第一载波到第二载波的定位感知交换被限制为能够执行一个或多个定位测量。 限制第二载波的选择,从第一载波的切换到第二载波的时序,或者两者,以实现和增强定位性能。 约束可以在网络的服务节点处,在UE处或两者都可操作。 可以将进一步的约束应用于网络以增强定位性能。 载波切换可以是跨无线电接入技术(RAT),并且定位约束可以包括配置或重新配置设备以在测量间隙中执行定位测量(例如,当在LTE系统中的辅载波上不定位定位参考信号时 主要载体)。
    • 10. 发明申请
    • Method and Apparatus for Muting Signaling in a Wireless Communication Network
    • 用于无线通信网络中的静音信令的方法和装置
    • US20110230144A1
    • 2011-09-22
    • US12858809
    • 2010-08-18
    • Iana SiominaMuhammad Ali Kazmi
    • Iana SiominaMuhammad Ali Kazmi
    • H04B7/00
    • H04L5/0048G01S1/042G01S1/20H04L5/0044H04W64/00H04W74/002
    • In one aspect, the present invention provides a simple method of signaling reference signal muting information to receiving radio equipment, such as items of user equipment (UEs). The reference signals may be positioning reference signals and/or cell-specific reference signals, for example. In one or more embodiments, the present invention proposes a general solution whereby the receiving radio equipment is informed not only on whether muting is used in general in a cell, but also the particular timing and formatting of such muting. Further, the contemplated method provides for the use of dynamic muting patterns, and thus avoids the need for statically defined muting patterns, and provides for coordinated muting control, across two or more network cells. In at least one embodiment, static or less dynamic aspects of the muting configuration is signaled via higher-layer signaling, while lower-layer signaling is used to signal more dynamic aspects of the muting configuration.
    • 一方面,本发明提供一种将参考信号静音信息发送到接收无线电设备(诸如用户设备(UE))的简单方法。 参考信号例如可以是定位参考信号和/或小区特定参考信号。 在一个或多个实施例中,本发明提出了一种通用解决方案,其中不仅通知接收无线电设备是否通常在小区中使用静音,而且还通知这种静音的特定定时和格式化。 此外,预期的方法提供使用动态静音模式,并且因此避免了对静态定义的静音模式的需要,并提供跨两个或多个网络小区的协调静音控制。 在至少一个实施例中,通过较高层信令来发信号通知静音配置的静态或较小动态的方面,而较低层的信令用于发出静音配置的更多动态方面。