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    • 91. 发明申请
    • Enhancement of Positioning Quality of Service
    • 提高定位服务质量
    • US20110294518A1
    • 2011-12-01
    • US13122693
    • 2010-07-13
    • Iana SiominaTorbjörn Wigren
    • Iana SiominaTorbjörn Wigren
    • H04W64/00
    • H04W4/023G01S5/0263H04W4/025H04W64/00
    • Teachings herein improve selection of the positioning method(s) used to obtain positioning information responsive to a positioning request, by approaching positioning QoS holistically. Approached holistically, a joint QoS metric as taught herein takes into account the joint effect of individual QoS parameters of a positioning method, or the joint effect of multiple methods in a sequence. Processing in one or more embodiments thus includes determining a joint QoS metric for each of a plurality of candidate positioning methods or sequences, and selecting a positioning method or sequence based on those joint QoS metrics. By selecting a positioning method or sequence in this way, holistically based on joint QoS metrics rather than a piecemeal approach based on a one-by-one check of individual QoS parameters, selection proceeds flexibly according to actual QoS requirements of position-based services and/or systematically according to the joint effect of multiple positioning methods.
    • 本文的教导通过整体地接近定位QoS来改进用于通过定位请求获得定位信息的定位方法的选择。 以全局方式接近,本文所述的联合QoS度量考虑了定位方法的各个QoS参数的联合效应,或者多个方法在序列中的联合效应。 因此,在一个或多个实施例中的处理包括确定多个候选定位方法或序列中的每一个的联合QoS度量,以及基于这些联合QoS度量来选择定位方法或序列。 通过以这种方式选择定位方法或序列,整体地基于联合QoS度量而不是基于对各个QoS参数的逐一检查的零碎方法,根据基于位置的服务的实际QoS要求灵活地选择, /或系统地根据多种定位方法的联合作用。
    • 93. 发明申请
    • Method and Apparatus for use of Performance History Data in Positioning Method Selection
    • 在定位方法选择中使用性能历史数据的方法和装置
    • US20110244879A1
    • 2011-10-06
    • US12819912
    • 2010-06-21
    • Iana SiominaTorbjörn Wigren
    • Iana SiominaTorbjörn Wigren
    • H04W24/00
    • H04W4/02G01S5/0268H04W4/029H04W64/00
    • A method of selecting the positioning method(s) used to respond to given positioning requests uses historical performance data reflecting the actual performance yielded by one or more of the positioning methods that are generally available for selection. As a non-limiting example, a positioning node maintains or otherwise has access to historical data reflecting the QoS obtained for at least some of the positioning methods supported by the node. Correspondingly, the node compares the QoS requirements associated with an incoming positioning request to the historical performance data, to identify the positioning method(s) that appear to best satisfy the requirements. The positioning node therefore selects the “best” method(s) for responding to a positioning request, not based on “generic” performance characteristics of those methods, but rather based on observed real-world performance of those methods, as applicable to the particular operating environment (radio environment) in which the positioning methods are carried out.
    • 选择用于响应给定定位请求的定位方法的方法使用反映通常可用于选择的一个或多个定位方法产生的实际性能的历史性能数据。 作为非限制性示例,定位节点维护或以其他方式访问反映由节点支持的至少一些定位方法获得的QoS的历史数据。 相应地,节点将与进入定位请求相关联的QoS要求与历史性能数据进行比较,以识别看起来最符合要求的定位方法。 因此,定位节点选择“最佳”方法来响应定位请求,而不是基于这些方法的“通用”性能特征,而是基于观察到的这些方法的实际性能,适用于特定的 执行定位方法的操作环境(无线电环境)。
    • 95. 发明申请
    • Signaling Support Enabling QoS Discrimination for Positioning, Location and Location-Based Services in LTE
    • 信令支持支持在LTE中定位,定位和基于位置的业务的QoS鉴别
    • US20110159893A1
    • 2011-06-30
    • US12979469
    • 2010-12-28
    • Iana SiominaTorbjörn Wigren
    • Iana SiominaTorbjörn Wigren
    • H04W4/02
    • H04W4/02H04L67/18H04W4/20H04W28/16
    • One aspect of the present invention extends the number of client and/or service types used in location-based services. The extension provides richer definitions for use in selecting the optimal or otherwise best suited positioning sequences to be used in fulfilling given positioning requests. For example, some types of commercial-related positioning requests are better satisfied with quicker-but-lower-accuracy position determinations, while other types benefit from more-accurate-but-slower position determinations. These and other benefits are provided by extending the type definitions used to identify commercial positioning requests. For example, a UE may be configured to send positioning requests that indicate the extended client or service types. As another example, the network node(s) involved in generating or processing such requests are configured to understand the extended type definitions and/or to map the extended definitions to QoS requirements, or to particular positioning sequences, for requesting that a positioning node carry out that particular positioning sequence.
    • 本发明的一个方面扩展了基于位置的服务中使用的客户端和/或服务类型的数量。 该扩展提供更丰富的定义,用于选择要用于实现给定定位请求的最佳或其他最适合的定位序列。 例如,某些类型的商业相关定位请求对于更快速但更低精度的位置确定更好地满足,而其他类型受益于更准确但更慢的位置确定。 通过扩展用于识别商业定位请求的类型定义来提供这些和其他好处。 例如,UE可以被配置为发送指示扩展的客户端或服务类型的定位请求。 作为另一示例,参与生成或处理这样的请求的网络节点被配置为理解扩展类型定义和/或将扩展定义映射到QoS要求或特定定位序列,以请求定位节点携带 了解特定的定位顺序。
    • 99. 发明申请
    • Method and Arrangement for Handling Measurements Under Dynamically Configured Patterns
    • 在动态配置模式下处理测量的方法和布置
    • US20170055174A1
    • 2017-02-23
    • US15346834
    • 2016-11-09
    • Iana SIOMINAMuhammad KAZMI
    • Iana SIOMINAMuhammad KAZMI
    • H04W24/10H04W24/08
    • 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。
    • 100. 发明授权
    • Methods and network nodes for configuring almost blank subframe transmission patterns and corresponding measurement patterns for reducing intercell interference in an heterogeneous cellular radio communication system
    • 用于配置几乎空白子帧传输模式的方法和网络节点以及用于减少异构蜂窝无线电通信系统中的小区间干扰的相应测量模式
    • US09560662B2
    • 2017-01-31
    • US13883839
    • 2011-11-08
    • Iana SiominaElena Voltolina
    • Iana SiominaElena Voltolina
    • H04W24/10H04W72/08H04W72/04H04W84/04
    • H04W24/10H04W72/048H04W72/082H04W84/045
    • A method and a network node (110, 120, 140) for enabling configuration of at least two patterns for a cell (C0) are provided. The patterns are transmission patterns or measurement patterns. The network node (110, 120, 140) obtains (402) the at least two patterns. Each of the at least two patterns is associated with information about a respective restricted area (A1, A2) such that each pattern is used when a user equipment (130) served by the cell (C0) is located in the respective restricted area. Each respective restricted area (A1, A2) is smaller than an entire area of the cell (C0). Moreover, a method and a user equipment (130) for configuring measurements are provided. The user equipment (130) is served by a cell (C0, C1, C2) of a radio base station (110, 120, 140). The user equipment (130) receives at feast two measurement patterns from the radio base station. Each measurement pattern is associated with a respective restricted area. Each respective restricted area is smaller than an entire area of the cell. The user equipment (130) obtains information about the respective restricted area.
    • 提供了一种能够为单元(C0)配置至少两个图案的方法和网络节点(110,120,140)。 模式是传输模式或测量模式。 网络节点(110,120,140)获得(402)至少两个模式。 所述至少两个图案中的每一个与关于相应的受限区域(A1,A2)的信息相关联,使得当由所述单元(C0)服务的用户设备(130)位于相应的受限区域中时,使用每个模式。 每个相应的限制区域(A1,A2)小于单元格(C0)的整个区域。 此外,提供了用于配置测量的方法和用户设备(130)。 用户设备(130)由无线基站(110,120,140)的小区(C0,C1,C2)服务。 用户设备(130)从无线电基站接收两个测量模式。 每个测量图案与相应的限制区域相关联。 每个相应的限制区域小于单元的整个区域。 用户设备(130)获得关于相应受限制区域的信息。