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    • 101. 发明授权
    • Method and arrangement for handling measurements under dynamically configured patterns
    • 用于在动态配置模式下处理测量的方法和布置
    • US09526031B2
    • 2016-12-20
    • US14238903
    • 2012-07-06
    • Iana SiominaMuhammad Kazmi
    • Iana SiominaMuhammad Kazmi
    • H04W28/20H04W24/08H04W24/10H04W36/30
    • H04W24/10H04W24/08H04W28/20H04W36/30
    • The present disclosure relates to a method in a measuring node and a measuring node for handling measurements performed on signals received over a wireless interface in a wireless communication system. The method comprises performing (202) measurements on the received signals according to a first measurement configuration, detecting (204) that a change from the first measurement configuration to a second measurement configuration has occurred, performing (206) measurements on the received signals according to the second measurement configuration, and using (210) the measurements performed according to the first measurement configuration and the measurements performed according to the second measurement configuration for radio resource management tasks. At least one of the first measurement configuration and the second measurement configuration comprises a signal activity pattern.
    • 本公开涉及一种测量节点和测量节点中的方法,用于处理对通过无线通信系统中的无线接口接收的信号执行的测量。 该方法包括根据第一测量配置对接收到的信号执行(202)测量,检测(204)从第一测量配置到第二测量配置的变化已经发生,根据接收到的信号执行(206)测量 第二测量配置,以及使用(210)根据第一测量配置执行的测量以及根据用于无线电资源管理任务的第二测量配置执行的测量。 第一测量配置和第二测量配置中的至少一个包括信号活动模式。
    • 103. 发明授权
    • Method and apparatus for compensating signal timing measurements for differences in signal frequencies
    • 用于补偿信号频率差异的信号定时测量的方法和装置
    • US09462563B2
    • 2016-10-04
    • US13257605
    • 2011-08-02
    • Iana SiominaMuhammad Kazmi
    • Iana SiominaMuhammad Kazmi
    • H04L12/26H04W56/00H04W24/08H04W64/00
    • H04W56/004H04W24/08H04W64/00
    • Methods (100) and apparatuses (12, 24, 38) taught herein advantageously facilitate use of timing measurements in wireless communication networks (10) where radio signal timing measurements involve signals at different carrier frequencies. The methods and apparatuses in particular compensate such timing measurements for expected discrepancies in the measurements that arise from frequency-dependent differences in the propagation behavior of the radio signals being measured. In a non-limiting example, measurements at two or more frequencies may be compensated for the frequency distance between those frequencies, or with respect to a reference frequency. In such cases, timing measurements determined for one or more other radio signals are compensated as a function of the frequency distance between the reference frequency and the frequencies of such other radio signals.
    • 本文教导的方法(100)和装置(12,24,38)有利地有助于在无线电信号定时测量涉及不同载波频率的信号的无线通信网络(10)中使用定时测量。 所述方法和装置特别地将这样的定时测量补偿在由所测量的无线电信号的传播行为的频率相关差异引起的测量中的预期差异。 在非限制性示例中,可以针对这些频率之间的频率距离或相对于参考频率来补偿两个或更多个频率处的测量。 在这种情况下,为一个或多个其他无线电信号确定的定时测量作为参考频率与这种其它无线电信号的频率之间的频率距离的函数被补偿。
    • 105. 发明授权
    • Methods and arrangements in a cellular radio communication system
    • 蜂窝无线电通信系统中的方法和布置
    • US09374802B2
    • 2016-06-21
    • US13982565
    • 2011-05-11
    • Iana SiominaTorbjörn Wigren
    • Iana SiominaTorbjörn Wigren
    • H04W68/00H04W64/00H04W4/02
    • H04W64/006H04W4/02H04W64/00
    • A user equipment (120), a first radio network node (130) and a positioning node (110) are comprised in a Long Term Evolution system (100). The user equipment (120) receives (2000, 2010) a request for path loss related information. The user equipment (120) estimates (2020) and sends (2030, 2040) the path loss related information. Moreover, the first radio network node (110, 130) sends (2010, 2060) a request for the path loss related information. The first radio network node (110, 130) receives (2030) the path loss related information. Furthermore, the positioning node (110) sends (2000, 2050) a request for the path loss related information. The positioning node (110) receives (2040, 2080) the path loss related information. In some examples, the positioning node (110) associates (2110) the path loss related information to at least one cell area description, thereby creating a database of cell area descriptions and path loss related information associated thereto.
    • 用户设备(120),第一无线电网络节点(130)和定位节点(110)包括在长期演进系统(100)中。 用户设备(120)接收(2000,2010)对路径丢失相关信息的请求。 用户设备(120)估计(2020)并发送(2030,2040)路径丢失相关信息。 此外,第一无线网络节点(110,130)发送(2010,2060)关于路径丢失相关信息的请求。 第一无线电网络节点(110,130)接收(2030)路径损耗相关信息。 此外,定位节点(110)发送(2000,2050)对路径丢失相关信息的请求。 定位节点(110)接收路径损耗相关信息(2040,2080)。 在一些示例中,定位节点(110)将路径损耗相关信息(2110)与至少一个小区区域描述相关联,从而创建与其相关联的小区区域描述和路径丢失相关信息的数据库。
    • 106. 发明授权
    • Methods and apparatus for communicating location information for enhancing emergency positioning
    • 用于传达位置信息以增强应急定位的方法和装置
    • US09277384B2
    • 2016-03-01
    • US13995439
    • 2011-09-20
    • Iana SiominaTorbjörn Wigren
    • Iana SiominaTorbjörn Wigren
    • H04W4/22G01S5/00G01S5/02
    • H04W4/22G01S5/0009G01S5/0205G01S5/0289H04W4/90
    • Methods and apparatus for handling positioning information by sending a positioning result, which can include uncertainty information, in at least one of a graphical format and a text-encoded graphical format. Positioning result accuracy, which can be important for emergency services, is improved by avoiding conversion between positioning result formats. Positioning results can be flexibly delivered, without concern for the particular radio access technology used in a communication network. The graphical format can be a vector graphics format, such as Scalable Vector Graphics and Wireless Vector Graphics. The text-encoded graphical format can be based on the extensible Markup Language, the positioning information in the graphical and/or text-encoded graphical format can be signaled by a messaging service.
    • 通过以图形格式和文本编码图形格式中的至少一种发送可包括不确定性信息的定位结果来处理定位信息的方法和装置。 通过避免定位结果格式之间的转换,可以提高定位结果准确度,这对紧急服务来说很重要。 可以灵活地传递定位结果,而不用考虑通信网络中使用的特定无线电接入技术。 图形格式可以是矢量图形格式,例如可缩放矢量图形和无线矢量图形。 文本编码的图形格式可以基于可扩展标记语言,图形和/或文本编码的图形格式中的定位信息可以由消息服务发出信号。
    • 108. 发明授权
    • Measurement and reporting configuration in radio communication networks
    • 无线电通信网络中的测量和报告配置
    • US09107084B2
    • 2015-08-11
    • US13637844
    • 2012-07-06
    • Iana SiominaMuhammad Kazmi
    • Iana SiominaMuhammad Kazmi
    • H04W24/00H04W72/12
    • H04W24/00H04J11/005H04L5/0053H04L5/0073H04W24/08H04W72/1257H04W72/1263H04W72/1289
    • A wireless device, a network apparatus, a test equipment and a method in a heterogeneous radio-communication system configured to perform and report measurements in view of patterns including at least two types of subframes are provided. The wireless device has a transceiver and a processing unit. The transceiver is configured to send and to receive signals from more than one cell, and to receive information defining a first pattern related to first cells. The processing unit is configured to determine a second pattern related to second cells based on the first pattern and at least one of an indication or predefined rule relating the first pattern and the second pattern, to perform measurements related to the signals, and to report, to a network node, measurement results based on the measurements, the measurement results being related to signals received from a number of one or more cells.
    • 提供了一种无线设备,网络设备,测试设备和异构无线电通信系统中的方法,该系统被配置为考虑到包括至少两种类型的子帧的模式来执行和报告测量。 无线设备具有收发器和处理单元。 收发器被配置为发送和接收来自多于一个小区的信号,并且接收定义与第一小区有关的第一模式的信息。 所述处理单元被配置为基于所述第一模式和与所述第一模式和所述第二模式相关联的指示或预定义规则中的至少一个来确定与第二小区有关的第二模式,以执行与所述信号相关的测量, 对网络节点,基于测量的测量结果,测量结果与从一个或多个单元的数量接收的信号有关。
    • 110. 发明授权
    • Bandwidth-based configuration of measurement gaps
    • 基于带宽的测量间隙配置
    • US09055595B2
    • 2015-06-09
    • US13979905
    • 2012-01-12
    • Iana SiominaMuhammad Kazmi
    • Iana SiominaMuhammad Kazmi
    • H04W24/00H04W72/08G01S5/02H04W24/10H04W36/00H04W72/12H04W64/00
    • H04W24/10G01S5/0205G01S5/0236H04B17/27H04B17/318H04B17/382H04L5/0048H04L5/0092H04W4/023H04W24/00H04W36/0094H04W64/00H04W72/0446H04W72/082H04W72/12
    • Processing implemented by a method and apparatus herein advantageously improves the quality of measurements performed on non-serving frequencies and/or the quality of serving cell data reception by intelligently configuring measurement gaps during which a wireless device (36) is to perform those measurements. Such intelligent configuration entails obtaining (100) information that identifies, for each of a plurality of candidate non-serving frequencies, one or more measurement bandwidths over which one or more corresponding measurements on that non-serving frequency are to be performed. In at least some embodiments, such candidate non-serving frequencies represent frequencies for which the device (36) has requested measurements gaps. Regardless, processing further includes selecting (110) a subset of the candidate non-serving frequencies based on the measurement bandwidths. Processing finally includes configuring (120) measurement gaps during which the wireless device (36) is to perform one or more measurements on the selected non-serving frequencies.
    • 本文方法和装置实现的处理有利地通过智能地配置无线设备(36)进行这些测量的测量间隙来改善在非服务频率上执行的测量质量和/或服务小区数据接收的质量。 这种智能配置需要获得(100)信息,其针对多个候选非服务频率中的每一个识别一个或多个在该非服务频率上执行一个或多个对应测量的测量带宽。 在至少一些实施例中,这种候选非服务频率表示设备(36)已经请求测量间隙的频率。 无论如何,处理进一步包括基于测量带宽来选择(110)候选非服务频率的子集(110)。 处理最终包括配置(120)测量间隙,在该间隙期间无线设备(36)将对所选择的非服务频率执行一个或多个测量。