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    • 1. 发明授权
    • Supporting version negotiation for positioning for terminals in a wireless network
    • 支持无线网络中终端定位的版本协商
    • US08660540B2
    • 2014-02-25
    • US13090142
    • 2011-04-19
    • Stephen William EdgeNathan Edward TennySven Fischer
    • Stephen William EdgeNathan Edward TennySven Fischer
    • H04M3/493
    • H04W8/22G01S5/0036G01S5/0054G01S19/05
    • Techniques for supporting positioning for terminals in a wireless network are described. In an aspect, a message is prepared and transmitted with a message segment including a version of a protocol used to encode the message and a compatibility level associated with inter-operable protocol versions, wherein different compatibility levels indicate non-compatibility between protocol versions. In another aspect, a message is received with a message segment including a version of a protocol used to encode the message and a compatibility level associated with inter-operable protocol versions, wherein different compatibility levels indicate non-compatibility between protocol versions. The compatibility level included in the received message is compared to an internal compatibility level and a response message is prepared and transmitted with a message segment including the internal compatibility level.
    • 描述了用于支持无线网络中的终端的定位的技术。 在一方面,消息被准备并发送包括消息段,消息段包括用于对消息进行编码的协议的版本以及与可操作协议版本相关联的兼容性级别,其中不同的兼容性级别指示协议版本之间的不兼容性。 在另一方面,接收消息,其中包括用于对消息进行编码的协议的版本以及与可操作协议版本相关联的兼容性级别的消息段,其中不同的兼容性级别指示协议版本之间的不兼容性。 将接收的消息中包括的兼容性级别与内部兼容性级别进行比较,并且准备并发送包含内部兼容性级别的消息段的响应消息。
    • 2. 发明申请
    • SUPPORTING VERSION NEGOTIATION FOR POSITIONING FOR TERMINALS IN A WIRELESS NETWORK
    • 支持在无线网络中定位终端的版本协商
    • US20110212733A1
    • 2011-09-01
    • US13090142
    • 2011-04-19
    • Stephen William EdgeNathan Edward TennySven Fischer
    • Stephen William EdgeNathan Edward TennySven Fischer
    • H04W4/02H04W4/12H04W24/00
    • H04W8/22G01S5/0036G01S5/0054G01S19/05
    • Techniques for supporting positioning for terminals in a wireless network are described. In an aspect, a message is prepared and transmitted with a message segment including a version of a protocol used to encode the message and a compatibility level associated with inter-operable protocol versions, wherein different compatibility levels indicate non-compatibility between protocol versions. In another aspect, a message is received with a message segment including a version of a protocol used to encode the message and a compatibility level associated with inter-operable protocol versions, wherein different compatibility levels indicate non-compatibility between protocol versions. The compatibility level included in the received message is compared to an internal compatibility level and a response message is prepared and transmitted with a message segment including the internal compatibility level.
    • 描述了用于支持无线网络中的终端的定位的技术。 在一方面,消息被准备并发送包括消息段,消息段包括用于对消息进行编码的协议的版本以及与可操作协议版本相关联的兼容性级别,其中不同的兼容性级别指示协议版本之间的不兼容性。 在另一方面,接收消息,其中包括用于对消息进行编码的协议的版本以及与可操作协议版本相关联的兼容性级别的消息段,其中不同的兼容性级别指示协议版本之间的不兼容性。 将接收的消息中包括的兼容性级别与内部兼容性级别进行比较,并且准备并发送包含内部兼容性级别的消息段的响应消息。
    • 7. 发明授权
    • Method and apparatus for providing location services with short-circuited message flows
    • 用于提供具有短路消息流的位置服务的方法和装置
    • US08792902B2
    • 2014-07-29
    • US11471049
    • 2006-06-19
    • Stephen William EdgeKirk Allan BurroughsSven Fischer
    • Stephen William EdgeKirk Allan BurroughsSven Fischer
    • H04W24/00
    • H04W8/08H04W8/082H04W8/10H04W8/12H04W8/18
    • A user equipment (UE) sends to a serving network a request for periodic reporting of the UE location to a client entity, periodic location information, a request to use GMLC short circuit, and/or a request to use MO-LR short circuit. Various network entities may accept or reject each of the UE requests. For each location reporting event, the UE may send to the serving network its location estimate (e.g., if available and if MO-LR short circuit is allowed) and an address of a requesting GMLC (e.g., if GMLC short circuit is allowed). The network bypasses location processing if the location estimate is selected for use. The serving network may send the location estimate directly to the R-GMLC and bypass a visiting GMLC and a home GMLC, e.g., using the address provided by the UE. The GMLC short circuit and MO-LR short circuit save system resources and shorten response time.
    • 用户设备(UE)向服务网络发送对客户实体的UE位置的周期性报告的请求,周期性位置信息,使用GMLC短路的请求和/或使用MO-LR短路的请求。 各种网络实体可以接受或拒绝每个UE请求。 对于每个位置报告事件,UE可以向服务网络发送其位置估计(例如,如果可用且是否允许MO-LR短路)和请求GMLC的地址(例如,如果允许GMLC短路)。 如果选择了位置估计使用,网络会绕过位置处理。 服务网络可以直接向R-GMLC发送位置估计,并且绕过访问GMLC和归属GMLC,例如使用由UE提供的地址。 GMLC短路和MO-LR短路节省系统资源,缩短响应时间。
    • 8. 发明申请
    • METHOD AND APPARATUS FOR PERFORMING POSITION DETERMINATION WITH A SHORT CIRCUIT CALL FLOW
    • 用短路电路执行位置确定的方法和装置
    • US20110319095A1
    • 2011-12-29
    • US13175331
    • 2011-07-01
    • Kirk Allan BurroughsStephen William EdgeSven Fischer
    • Kirk Allan BurroughsStephen William EdgeSven Fischer
    • H04W64/00
    • G01S5/0205H04W64/00H04W84/06
    • For a call flow to perform position determination, a network sends to a user equipment (UE) an indication (e.g., a request for permission) to perform a position fix for the UE. The UE responds by sending to the network an acknowledgment (e.g., a grant of permission) to perform the position fix. The UE selectively sends a position estimate for itself to the network, typically along with the acknowledgment. The network may initiate location processing if (1) a location estimate is not received from the UE or (2) a location estimate is received from the UE but the network decides not to use this location estimate. In this case, the network and the UE perform location processing to obtain a position fix for the UE. However, if a location estimate is received from the UE and the network decides to use the location estimate, then the location processing is bypassed or short circuited.
    • 对于执行位置确定的呼叫流程,网络向用户设备(UE)发送指示(例如,请求许可)以执行针对UE的定位。 UE通过向网络发送执行定位的确认(例如,许可的许可)来进行响应。 UE通常与确认一起选择性地向网络发送其自身的位置估计。 如果(1)没有从UE接收到位置估计,或者(2)从UE接收到位置估计,但网络决定不使用该位置估计,则网络可以发起位置处理。 在这种情况下,网络和UE执行位置处理以获得UE的定位。 然而,如果从UE接收到位置估计,并且网络决定使用位置估计,则位置处理被旁路或短路。