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    • 1. 发明申请
    • Enhanced Angle-of-Arrival Positioning
    • 增强的到达角定位
    • US20120258729A1
    • 2012-10-11
    • US13262533
    • 2011-07-12
    • Iana SiominaAri KangasTorbjörn Wigren
    • Iana SiominaAri KangasTorbjörn Wigren
    • H04W4/02
    • H04W64/00G01S3/28G01S5/0215G01S5/04G01S5/08
    • The position of a mobile device served in a cell of a serving node of a wireless communication network is estimated by estimating an angle-of-arrival (AoA) between the mobile device and the serving node based on a precoding matrix indicator (PMI) determined for the serving node in a downlink direction or for the mobile device in an uplink direction. Also estimated is the AoA between the mobile device and a non-serving neighbor node of the wireless communication network based on a PMI determined for the neighbor node in the downlink direction or for the mobile device in the uplink direction. The downlink and/or uplink AoA estimation can be further enhanced by employing interference cancellation in the mobile device and in the radio node, respectively. The position of the mobile device is estimated based on the estimated AoAs.
    • 通过基于确定的预编码矩阵指示符(PMI)估计移动设备和服务节点之间的到达角(AoA)来估计在无线通信网络的服务节点的小区中服务的移动设备的位置 对于下行链路方向上的服务节点或者在上行链路方向上对于移动设备。 还估计基于为下行链路方向上的相邻节点确定的PMI或在上行链路方向上为移动设备确定的PMI的移动设备和无线通信网络的非服务邻居节点之间的AoA。 通过在移动设备和无线电节点中分别采用干扰消除,可以进一步增强下行链路和/或上行链路AoA估计。 基于估计的AoAs来估计移动设备的位置。
    • 2. 发明授权
    • Enhanced angle-of-arrival positioning
    • 增强的到达角定位
    • US08731579B2
    • 2014-05-20
    • US13262533
    • 2011-07-12
    • Iana SiominaAri KangasTorbjörn Wigren
    • Iana SiominaAri KangasTorbjörn Wigren
    • H04W24/00
    • H04W64/00G01S3/28G01S5/0215G01S5/04G01S5/08
    • The position of a mobile device served in a cell of a serving node of a wireless communication network is estimated by estimating an angle-of-arrival (AoA) between the mobile device and the serving node based on a precoding matrix indicator (PMI) determined for the serving node in a downlink direction or for the mobile device in an uplink direction. Also estimated is the AoA between the mobile device and a non-serving neighbor node of the wireless communication network based on a PMI determined for the neighbor node in the downlink direction or for the mobile device in the uplink direction. The downlink and/or uplink AoA estimation can be further enhanced by employing interference cancellation in the mobile device and in the radio node, respectively. The position of the mobile device is estimated based on the estimated AoAs.
    • 通过基于确定的预编码矩阵指示符(PMI)估计移动设备和服务节点之间的到达角(AoA)来估计在无线通信网络的服务节点的小区中服务的移动设备的位置 对于下行链路方向上的服务节点或者在上行链路方向上对于移动设备。 还估计基于为下行链路方向上的相邻节点确定的PMI或在上行链路方向上为移动设备确定的PMI的移动设备和无线通信网络的非服务邻居节点之间的AoA。 通过在移动设备和无线电节点中分别采用干扰消除,可以进一步增强下行链路和/或上行链路AoA估计。 基于估计的AoAs来估计移动设备的位置。
    • 3. 发明申请
    • METHODS AND APPARATUSES FOR POSITIONING A NODE IN A WIRELESS COMMUNICATIONS SYSTEM USING DIFFERENT RAN/RATS
    • 在使用不同RAN / RATS的无线通信系统中定位节点的方法和装置
    • US20120295623A1
    • 2012-11-22
    • US13575168
    • 2010-09-24
    • Iana SiominaTorbjörn WigrenAri Kangas
    • Iana SiominaTorbjörn WigrenAri Kangas
    • H04W64/00H04W36/16
    • H04W64/00G01S5/0263
    • A method in a positioning node (100) for selecting a positioning method is provided. The positioning node is connected to a plurality of radio access networks of different access technologies and to a plurality of core networks. The positioning node receives (201) from a requesting node, a request for a positioning of a terminal. The request comprises at least one of a plurality of client types, and at least one of a plurality of quality of service parameters. The positioning node then selects (204) at least one positioning method of a plurality of positioning methods of the different plurality of radio access networks and or radio access technologies for positioning the terminal. The selection of the positioning method is based on the received at least one client type and at least one quality of service parameters of the request.
    • 提供了一种用于选择定位方法的定位节点(100)中的方法。 定位节点连接到多个不同接入技术的无线接入网络和多个核心网络。 定位节点从请求节点接收(201)终端的定位请求。 该请求包括多个客户端类型中的至少一个以及多个服务质量参数中的至少一个。 然后,定位节点选择(204)不同的多个无线电接入网络的多个定位方法的至少一个定位方法以及用于定位终端的无线电接入技术。 定位方法的选择基于所接收的至少一种客户端类型和该请求的至少一个服务质量参数。
    • 4. 发明授权
    • Language dependent positioning and signalling
    • 语言相关的定位和信号
    • US08804574B2
    • 2014-08-12
    • US13094172
    • 2011-04-26
    • Iana SiominaTorbjörn Wigren
    • Iana SiominaTorbjörn Wigren
    • H04W4/02H04W4/22H04W8/22
    • H04W4/02H04W4/90H04W76/50
    • Presented is a system and methods for allowing the translation the civic address portion of a positioning message to different languages. The positioning message can be in response to an Emergency-911 call providing much better information regarding the location of the caller associated with the user equipment on a wireless network. The positioning message can contain an indicator of the originating language or a translation of the language from the originating language to the preferred or required language of the destination address. The positioning message can also contain a series of translated messages representing all the languages supported by the wireless network.
    • 提出了一种允许将定位消息的公民地址部分翻译成不同语言的系统和方法。 定位消息可以响应于紧急911呼叫,提供关于与无线网络上的用户设备相关联的呼叫者的位置的更好的信息。 定位消息可以包含始发语言的指示符或者将语言从始发语言转换为目的地地址的首选或必需语言。 定位消息还可以包含一系列表示无线网络支持的所有语言的翻译消息。
    • 5. 发明授权
    • Signaling support enabling QoS discrimination for positioning, location and location-based services in LTE
    • 信令支持支持LTE中定位,位置和位置服务的QoS鉴别
    • US08768289B2
    • 2014-07-01
    • US12979469
    • 2010-12-28
    • Iana SiominaTorbjörn Wigren
    • Iana SiominaTorbjörn Wigren
    • H04M11/04
    • 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。
    • 6. 发明申请
    • METHODS AND APPARATUS FOR COMMUNICATING LOCATION INFORMATION FOR ENHANCING EMERGENCY POSITIONING
    • 传播位置信息以增强紧急定位的方法和装置
    • US20130337767A1
    • 2013-12-19
    • US13995439
    • 2011-09-20
    • Iana SiominaTorbjörn Wigren
    • Iana SiominaTorbjörn Wigren
    • H04W4/22
    • 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。
    • 9. 发明申请
    • 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
    • US20130310077A1
    • 2013-11-21
    • US13982565
    • 2011-05-11
    • Iana SiominaTorbjörn Wigren
    • Iana SiominaTorbjörn Wigren
    • H04W64/00
    • 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。
    • 10. 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。