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    • 1. 发明申请
    • Adjusting Receive-Transmit Timing to Compensate for Switching Errors in a Communication System
    • 调整接收发送定时以补偿通信系统中的切换错误
    • US20150215887A1
    • 2015-07-30
    • US14414203
    • 2012-07-20
    • Alireza NejatianMuhammad Kazmi
    • Alireza NejatianMuhammad Kazmi
    • H04W56/00H04B7/06
    • H04W56/0045H04B7/0671H04W56/0055
    • Techniques for compensating for the time misalignment of receive-transmit switching in a multi-antenna radio network node are disclosed. An example method begins with the detection (1020) of signal transmission timing for each of two or more antennas associated with the radio network node, for at least a first transmission period. Next, the radio network node determines (1030) that transmit timing for at least one of the antennas is misaligned by at least a first threshold time interval, based on the detected signal transmission timings. The example method continues with the adjustment (1040) of transmit timing for at least one of the antennas for one or more subsequent transmission periods, responsive to determining that the transmission timing for at least one of the antennas is misaligned.
    • 公开了用于补偿多天线无线电网络节点中的接收发射切换的时间偏移的技术。 至少在第一传输周期中,示例性方法开始于对于与无线电网络节点相关联的两个或多个天线中的每一个的信号传输定时的检测(1020)。 接下来,基于检测到的信号传输定时,无线电网络节点确定(1030)至少一个天线的发射定时不对准至少第一阈值时间间隔。 响应于确定至少一个天线的发射定时未对准,该示例方法继续对于一个或多个后续传输周期中的至少一个天线的发射定时的调整(1040)。
    • 3. 发明授权
    • Method and arrangement in a wireless communication system
    • 无线通信系统中的方法和布置
    • US09538434B2
    • 2017-01-03
    • US13639038
    • 2010-07-14
    • Muhammad Kazmi
    • Muhammad Kazmi
    • H04W36/00H04W24/10H04W72/12H04W84/04
    • H04W72/12H04L5/0055H04W8/22H04W24/10H04W36/0088H04W72/1257H04W76/28H04W84/045
    • According to some embodiments of the invention, a method is provided in a radio network node for scheduling data transmission and/or reception. According to the method, the radio network node predicts (530) at least one autonomous gap occurrence in which user equipments served by the radio network node will use autonomously created gaps for acquiring system information from a neighboring base station and during which the UE is not able to receive data from, and/or transmit data to, the radio network node. Furthermore, the radio network node schedules (560) a user equipment for data transmission and/or reception in a time period which does not overlap with any predicted autonomous gap occurrence.
    • 根据本发明的一些实施例,在无线电网络节点中提供了一种用于调度数据传输和/或接收的方法。 根据该方法,无线网络节点预测(530)至少一个自主差距发生,其中由无线电网络节点服务的用户设备将使用自主创建的间隙来从相邻基站获取系统信息,并且在该时间内UE不是 能够从无线电网络节点接收数据和/或发送数据。 此外,无线网络节点在与任何预测的自主差距发生不重叠的时间段内调度(560)用于数据发送和/或接收的用户设备。
    • 5. 发明授权
    • Methods and network nodes in a telecommunication system
    • 电信系统中的方法和网络节点
    • US09480031B2
    • 2016-10-25
    • US14113424
    • 2011-10-06
    • Muhammad KazmiOlav QuesethErika Tejedor
    • Muhammad KazmiOlav QuesethErika Tejedor
    • H04W52/38H04W28/18H04L5/14H04W52/02H04W52/36H04W88/02H04W8/10
    • H04W52/386H04L5/14H04W8/10H04W28/18H04W52/0209H04W52/367H04W88/02Y02D70/1244Y02D70/1262Y02D70/142
    • A method in a user equipment for controlling transmission from the user equipment, a method in a first radio network node for selecting one or more radio emission control parameters and a user equipment, and a first radio network node configured to perform the methods are provided. The user equipment sends, to the first radio network node, one or more parameters associated with supported duplexer arrangement characteristics of the user equipment for a first operating frequency band. The first radio network node selects the one or more radio emission control parameters based on the one or more parameters associated with the supported duplexer arrangement characteristics of the user equipment for the first operating frequency band. The user equipment receives and applies the one or more radio emission control parameters from the first radio network node such as to control transmission from the user equipment.
    • 提供了一种用于控制来自用户设备的传输的用户设备中的方法,用于选择一个或多个无线电发射控制参数的第一无线电网络节点中的方法和用户设备,以及被配置为执行所述方法的第一无线电网络节点。 用户设备向第一无线电网络节点发送与用于第一工作频带的用户设备的支持的双工器布置特性相关联的一个或多个参数。 第一无线电网络节点基于与用于第一工作频带的用户设备的支持的双工器布置特性相关联的一个或多个参数来选择一个或多个无线电发射控制参数。 用户设备从第一无线电网络节点接收并应用一个或多个无线电发射控制参数,以便控制来自用户设备的传输。
    • 6. 发明授权
    • Coverage extension of position services
    • 职位服务覆盖范围扩大
    • US09366760B2
    • 2016-06-14
    • US13640373
    • 2010-04-12
    • Gabor FodorMuhammad KazmiIana Siomina
    • Gabor FodorMuhammad KazmiIana Siomina
    • G01S19/11
    • G01S19/11
    • The present solution relates to a method in a user equipment (110) for providing navigation signals to a navigator device (104) for use in determining the location of the navigator device. The user equipment (110) selects a plurality of satellites whose signals are to be emulated. After determining the position of the user equipment (110), the user equipment (110) translates the determined position to emulating navigation signals using a parameter derived from each of the respective selected satellites. The user equipment (110) transmits, to the navigator device (104), the emulated navigation signals. The emulated navigation signals enable the navigator device to determine the location of the navigator device (104).
    • 本解决方案涉及用于向导航设备(104)提供导航信号以用于确定导航设备的位置的用户设备(110)中的方法。 用户设备(110)选择信号要被仿真的多个卫星。 在确定用户设备(110)的位置之后,用户设备(110)使用从每个相应选择的卫星导出的参数将所确定的位置转换为仿真导航信号。 用户设备(110)向导航设备(104)发送仿真的导航信号。 仿真的导航信号使导航装置能够确定导航装置的位置(104)。
    • 8. 发明授权
    • Node and method for the management of a user equipment time offset measurement
    • 用于管理用户设备时间偏移测量的节点和方法
    • US09226186B2
    • 2015-12-29
    • US13820526
    • 2013-01-15
    • Angelo CentonzaMuhammad Kazmi
    • Angelo CentonzaMuhammad Kazmi
    • H04B1/16H04W24/10H04W8/26H04L29/12H04W36/00H04W84/04
    • H04W24/10H04L61/2038H04L61/2046H04W8/26H04W36/0094H04W84/045
    • Example embodiments presented herein are directed towards a network node (401A, 401B) (e.g., a source or target base station), and corresponding method therein, for managing a user equipment time offset measurement by accounting for a user equipment mobility profile. The management may involve a source network node (401A) delaying or preventing the sending of a user equipment timing offset measurement to a target network node (401B) or sending an indication or a reliability of the user equipment timing offset measurement. The network node (401A, 401B) may further apply a compensation to the user equipment timing offset measurement to account for an expected behavior of the user equipment based on the mobility profile. The network node (401A, 401B) may also adapt an uplink search window based on the user equipment mobility profile.
    • 这里呈现的示例性实施例针对网络节点(401A,401B)(例如,源或目标基站)及其中的对应方法,用于通过计算用户设备移动性简档来管理用户设备时间偏移测量。 管理可能涉及源网络节点(401A)延迟或阻止向目标网络节点(401B)发送用户设备定时偏移测量,或发送用户设备定时偏移测量的指示或可靠性。 网络节点(401A,401B)可以进一步向用户设备定时偏移测量应用补偿,以便基于移动性简档来解释用户设备的预期行为。 网络节点(401A,401B)还可以基于用户设备移动性简档来适配上行链路搜索窗口。
    • 9. 发明授权
    • Capability reporting for relay nodes in wireless networks
    • 无线网络中继节点的能力报告
    • US09191098B2
    • 2015-11-17
    • US13147219
    • 2011-06-16
    • Muhammad KazmiOlav Queseth
    • Muhammad KazmiOlav Queseth
    • H04B7/155
    • H04B7/15542
    • An out-of-band relay node (800) reports its composite operating band capability to a donor base station or to another network node. The reported information indicates frequency band support separately for each of the backhaul and access links, which may operate over different frequency bands. In some embodiments, a controlling network node (700) such as a donor base station, an O&M node, an OSS node, a SON node, or another relay node, requests the relay node to report its backhaul link and access link operating frequency band capabilities to the network node. A network node (700) that receives the frequency capability information may use the information to select appropriate frequency bands for access and backhaul link operation and to configure the relay node accordingly. The received frequency band capability information may also be used for one or more network management functions such as radio resources management, network planning, dimensioning, and coverage enhancement.
    • 带外中继节点(800)将其复合工作频带能力报告给施主基站或另一网络节点。 所报告的信息分别指示可以在不同频带上操作的每个回程和接入链路的频带支持。 在一些实施例中,诸如施主基站,O&M节点,OSS节点,SON节点或另一中继节点的控制网络节点(700)请求中继节点报告其回程链路和接入链路工作频带 网络节点的能力。 接收频率能力信息的网络节点(700)可以使用该信息来选择用于接入和回程链路操作的适当频带,并相应地配置中继节点。 所接收的频带能力信息也可以用于一个或多个网络管理功能,例如无线电资源管理,网络规划,尺寸和覆盖增强。