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    • 34. 发明授权
    • Method and apparatus for location fingerprinting
    • 位置指纹识别方法和装置
    • US08423043B2
    • 2013-04-16
    • US12558931
    • 2009-09-14
    • Muhammad Ali Kazmi
    • Muhammad Ali Kazmi
    • H04W24/00
    • G01S5/0252
    • Methods and apparatus herein facilitate accurate estimation of a mobile terminal's location via location fingerprinting. Specifically, the methods and apparatus obtain a radio fingerprint of the mobile terminal's location based on signal measurements (e.g., signal strength, signal quality, or path loss) performed at a radio frequency distinct from that used to obtain the reference radio fingerprints. The methods and apparatus transform the radio fingerprint, or the reference radio fingerprints, or both, based on that distinction, such as by offsetting signal measurements of the radio fingerprint by an amount determined based on theoretical or experimental models of the dependency of the signal measurements on the radio frequency at which they are performed. The radio fingerprint of the mobile terminal's location may then be compared to the reference radio fingerprints, to accurately estimate the mobile terminal's location despite the radio fingerprint and the reference radio fingerprints having been obtained using different frequencies.
    • 这里的方法和装置有助于通过位置指纹识别来准确估计移动终端的位置。 具体地,所述方法和装置基于在与用于获得参考无线电指纹的频率不同的射频上执行的信号测量(例如,信号强度,信号质量或路径损耗)来获得移动终端的位置的无线电指纹。 方法和装置基于该区别来变换无线电指纹或参考无线电指纹或两者,诸如通过基于信号测量的依赖性的理论或实验模型确定的量来确定无线电指纹的信号测量值 在它们被执行的射频上。 然后可以将移动终端的位置的无线电指纹与参考无线电指纹进行比较,以尽可能地使用不同频率获得无线电指纹和参考无线电指纹,来精确地估计移动终端的位置。
    • 35. 发明授权
    • Method and arrangement in communication networks
    • 通信网络中的方法和布置
    • US08422384B2
    • 2013-04-16
    • US12597667
    • 2008-04-28
    • Muhammad Ali Kazmi
    • Muhammad Ali Kazmi
    • H04L12/26
    • H04B7/082H04B7/0848H04B7/0871H04B7/0874
    • The present invention relates to apparatus and methods for communicating on two or more services or transport channels by a multi-branch receiver and for dynamically reconfiguring the multi-branch receiver. The dynamic reconfiguration of the multi-branch receiver may be based on at least one of the measured radio conditions, measured quality of the services, and network-controlled quality of service targets. For each of the services or transport channels, a measured quality target is derived from the network-controlled quality of service targets. Based on the largest of the measured quality targets, one or more of the branches of the receiver is dynamically switched on or off.
    • 本发明涉及用于在多分支接收机上在两个或多个服务或传输信道上通信并用于动态重新配置多分支接收机的装置和方法。 多分支接收机的动态重新配置可以基于测量的无线电条件,测量的服务质量和网络控制的服务质量目标中的至少一个。 对于每个服务或运输渠道,测量的质量目标来自网络控制的服务质量目标。 基于最大的测量质量目标,接收机的一个或多个分支被动态地打开或关闭。
    • 37. 发明申请
    • COMPOSITE REPORTING OF WIRELESS RELAY POWER CAPABILITY
    • 无线中继功率复合报告
    • US20120196528A1
    • 2012-08-02
    • US13384702
    • 2011-06-29
    • Muhammad Ali KazmiOlav Queseth
    • Muhammad Ali KazmiOlav Queseth
    • H04W24/10H04W88/04
    • 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,自组织网络节点的对应网络节点(900)被配置为请求中继节点(800)报告其回程链路,并且 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。
    • 38. 发明申请
    • Enhanced Measurement Gap Configuration Support for Positioning Related Applications
    • 增强的测量间隙配置支持定位相关应用
    • US20120184290A1
    • 2012-07-19
    • US13143520
    • 2011-07-01
    • Muhammad Ali KazmiIana Siomina
    • Muhammad Ali KazmiIana Siomina
    • H04W24/00
    • H04W64/00G01S5/0242G01S5/10
    • A base station is configured to serve a wireless device in a serving cell on a serving frequency. The base station obtains information that indicates one or more non-serving frequencies on which the device is to perform one or more positioning measurements. These positioning measurements are to be used for determining the device's geographic position. For at least one non-serving frequency indicated by the information, the base station configures a measurement gap during which the device is to perform a corresponding positioning measurement. Specifically, the base station configures such measurement gap to occur during a period of time in which a neighboring cell transmits a positioning reference signal over that non-serving frequency. A positioning reference signal is specifically designed to be a signal on which a device performs positioning measurements. Thus, by aligning the measurement gap with a positioning reference signal, the positioning measurements will prove more reliable and accurate.
    • 基站被配置为在服务频率上的服务小区中服务无线设备。 基站获得指示设备将要执行一个或多个定位测量的一个或多个非服务频率的信息。 这些定位测量将用于确定设备的地理位置。 对于由信息指示的至少一个非服务频率,基站配置设备将要进行相应定位测量的测量间隙。 具体地,基站将这样的测量间隙配置为在相邻小区在该非服务频率上发送定位参考信号的时间段内发生。 定位参考信号被专门设计为设备执行定位测量的信号。 因此,通过将测量间隙与定位参考信号对准,定位测量将证明更可靠和准确。
    • 39. 发明申请
    • Power Control for Home Base Station with GNSS Receiver
    • 带GNSS接收机的家用基站功率控制
    • US20110205106A1
    • 2011-08-25
    • US12976870
    • 2010-12-22
    • Aurelian BriaFarshid GhasemzadehMuhammad Ali KazmiKai Yu
    • Aurelian BriaFarshid GhasemzadehMuhammad Ali KazmiKai Yu
    • H04B7/185
    • 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。
    • 40. 发明申请
    • Method and Arrangement for Processing of Neighbor Cell Information
    • 相邻小区信息处理方法与装置
    • US20110201332A1
    • 2011-08-18
    • US12949415
    • 2010-11-18
    • Iana SiominaMuhammad Ali Kazmi
    • Iana SiominaMuhammad Ali Kazmi
    • H04W4/00
    • H04W64/00G01S5/10
    • Methods and arrangements for improving the selection of neighbor cells, on which to perform measurements in different situations. The method in a first node involves obtaining information identifying a first and a second set of neighboring cells for a respective first and second measurement category. A third set of neighboring cells is then determined based on at least parts of the obtained information related to the first and second set. Measurements are then performed in a third measurement category on at least part of the cells in the third set of neighboring cells. The methods and arrangements enable combination of information on neighbor cells, obtained in different ways for different measurement categories into a combined set of neighbor cells, which is more suitable for measurements in a certain measurement category than a set of cells previously obtained for performing measurements in said measurement category.
    • 改善在不同情况下进行测量的相邻小区的选择的方法和布置。 第一节点中的方法涉及获得识别相应第一和第二测量类别的相邻小区的第一组和第二组的信息。 然后基于获得的与第一和第二组相关的信息的至少一部分来确定第三组相邻小区。 然后在第三组相邻小区中的小区的至少部分的第三测量类别中执行测量。 这些方法和布置使得可以将不同测量类别以不同方式获得的相邻小区上的信息组合成相邻小区的组合,其更适合于某一测量类别中的测量,而不是先前为执行测量而获得的一组单元 说测量类别。