QUALITY OF SERVICE FOR WEB CLIENT BASED SESSIONS
    111.
    发明申请
    QUALITY OF SERVICE FOR WEB CLIENT BASED SESSIONS 有权
    基于WEB客户端的会议服务质量

    公开(公告)号:US20140219167A1

    公开(公告)日:2014-08-07

    申请号:US14163938

    申请日:2014-01-24

    Abstract: The disclosure generally relates to network-initiated and client-initiated mechanisms to enable quality of service (QoS) for web-based client applications that may high efficiency, high performance, or otherwise guaranteed service levels. For example, to enable QoS for calls or other sessions associated a web-based application, one or more signaling messages may be exchanged between a server and a first user equipment (UE) to establish a call between the first UE and a second UE and to establish a peer connection between the server and at least the first UE. As such, QoS may be activated for at least the peer connection between the first UE and the server, wherein the server may route data associated with the web-based application between the first UE and the second UE over the established peer connection to implement the activated QoS.

    Abstract translation: 本公开通常涉及网络发起的和客户端发起的机制,以使得可以具有高效率,高性能或以其他方式保证的服务水平的基于web的客户端应用的服务质量(QoS)。 例如,为了为呼叫或与基于web的应用相关联的其他会话启用QoS,可以在服务器和第一用户设备(UE)之间交换一个或多个信令消息以建立第一UE与第二UE之间的呼叫,以及 以在服务器和至少第一UE之间建立对等连接。 因此,对于至少在第一UE与服务器之间的对等连接可以激活QoS,其中服务器可以通过建立的对等连接在第一UE与第二UE之间路由与基于web的应用相关联的数据,以实现 激活的QoS。

    REDUCING NETWORK LATENCY RESULTING FROM NON-ACCESS STRATUM (NAS) AUTHENTICATION FOR HIGH PERFORMANCE CONTENT APPLICATIONS
    112.
    发明申请
    REDUCING NETWORK LATENCY RESULTING FROM NON-ACCESS STRATUM (NAS) AUTHENTICATION FOR HIGH PERFORMANCE CONTENT APPLICATIONS 审中-公开
    从非访问结果(NAS)降低网络延迟由高性能内容应用程序的认证

    公开(公告)号:US20140068098A1

    公开(公告)日:2014-03-06

    申请号:US14017026

    申请日:2013-09-03

    CPC classification number: H04L47/12 H04W12/06 H04W76/25

    Abstract: Aspects relating to reducing network latency in systems that use NAS Authentication/Security procedures are disclosed. For example, a method for reducing latency due to NAS authentication can include determining a number (n) or time (t) of service requests from an idle state that trigger a NAS authentication. A penultimate service request is detected before the nth service request or after time (t). A gratuitous service request is sent after the penultimate service request.

    Abstract translation: 公开了在使用NAS认证/安全程序的系统中减少网络延迟的方面。 例如,用于减少由于NAS认证引起的等待时间的方法可以包括从触发NAS认证的空闲状态确定服务请求的数量(n)或时间(t)。 在第n个服务请求之前或时间(t)之后检测倒数第二个服务请求。 倒数第二个服务请求后发送无偿服务请求。

    DIRECTIONAL ADJUSTMENT TO QUALITY OF SERVICE BASED ON PREDICTED TRAFFIC ACTIVITY ON A LINK
    113.
    发明申请
    DIRECTIONAL ADJUSTMENT TO QUALITY OF SERVICE BASED ON PREDICTED TRAFFIC ACTIVITY ON A LINK 有权
    基于预测的交通活动对业务质量进行方向调整

    公开(公告)号:US20140064084A1

    公开(公告)日:2014-03-06

    申请号:US14013011

    申请日:2013-08-28

    CPC classification number: H04W28/10 H04W28/24

    Abstract: In an embodiment, an apparatus predicts traffic usage in uplink and downlink directions of a link that is configured to support a communication session for the client device. In an example, the predictions can be based upon a call state parameter (e.g., if the client device is a non-floorholder or is muted the client device is unlikely to send much traffic in the uplink direction, etc.). The apparatus initiates, in association with the communication session, (i) an uplink-specific QoS adjustment to a first level of Quality of Service (QoS) assigned to the uplink direction of the link based on the predicted traffic usage in the uplink direction, and/or (ii) a downlink-specific QoS adjustment to a second level of QoS assigned to the downlink direction of the link based on the predicted traffic usage in the downlink direction. The apparatus can correspond to the client device or alternatively to a server.

    Abstract translation: 在一个实施例中,装置预测被配置为支持客户端设备的通信会话的链路的上行链路和下行链路方向上的业务使用。 在一个示例中,预测可以基于呼叫状态参数(例如,如果客户端设备是非楼层持有者或被静音,则客户端设备不太可能在上行链路方向上发送大量业务等)。 该装置与通信会话相关联地,基于上行链路方向上的预测的业务量使用,发起分配给链路的上行链路方向的服务质量(QoS)的第一级别的上行链路特定QoS调整, 和/或(ii)基于下行链路方向上的预测的业务量使用,分配给链路的下行链路方向的QoS的第二级别的下行链路特定QoS调整。 该设备可以对应于客户端设备或替代地与服务器对应。

    UE-TO-NETWORK RELAY SUPPORT FOR N3IWF ACCESS

    公开(公告)号:US20250056673A1

    公开(公告)日:2025-02-13

    申请号:US18810081

    申请日:2024-08-20

    Abstract: Aspects of the disclosure relate to relaying data between a PC5 remote UE and a network entity (e.g., 5G core network entity) via an inter-working function (e.g., N3IWF) over sidelink UE-to-NW relay access. In an example operation, a relay UE establishes a connection with the network entity and determines whether relay access to the network entity via an inter-working function device is supported at the relay UE. The relay UE then indicates, to the remote UE, support of the relay access to the network entity via the inter-working function device. The relay UE receives, from the remote UE, a request to relay data between the remote UE and the network entity via the inter-working function device, and thereafter, relays the data between the remote UE and the network entity via the inter-working function device based on the request. Other aspects and features are also claimed and described.

    DUAL CONNECTIVITY MOBILITY MANAGEMENT WITH L2 UE-TO-NETWORK RELAY

    公开(公告)号:US20240205764A1

    公开(公告)日:2024-06-20

    申请号:US18286992

    申请日:2021-06-07

    Abstract: A remote UE may transmit, to at least one of a source master network entity or a target master network entity, an indication of a first entity change and a second entity change. The remote UE may receive, from the target master network entity, a measurement configuration during an RRC reestablishment procedure with the target master network entity. The remote UE may transmit, to the target master network entity during the RRC reestablishment procedure, one or more measurements corresponding to the second entity change. The remote UE may receive, from the target master network entity, a dual connectivity configuration based on the transmitted one or more measurements. The dual connectivity configuration may correspond to the first entity change and the second entity change. The remote UE may communicate with the target master network entity and the target secondary network entity based on the dual connectivity configuration.

    DUAL-CONNECTIVITY ARCHITECTURE AND SETUP PROCEDURES

    公开(公告)号:US20240196449A1

    公开(公告)日:2024-06-13

    申请号:US18287868

    申请日:2021-06-07

    CPC classification number: H04W76/10 H04W88/04

    Abstract: A remote UE may detect one or more relay UEs for a dual connectivity configuration for communication with a first network entity and a second network entity. The dual connectivity configuration may include a primary connection with the first network entity and a secondary connection with the second network entity. The remote UE may receive, from the first network entity, a configuration for establishing the secondary connection via one of the one or more relay UEs based on a decision at the first network entity. The remote UE may establish the secondary connection via the one of the one or more relay UEs for communication with the second network entity. The remote UE may configure one or more second bearers for the secondary connection via the one of the one or more relay UEs. The one or more second bearers may support data transmission via the secondary connection.

    TECHNIQUES FOR SIDELINK RELAY HANDOVER PROCEDURE

    公开(公告)号:US20240031888A1

    公开(公告)日:2024-01-25

    申请号:US18253379

    申请日:2021-01-14

    CPC classification number: H04W36/0088 H04W48/12

    Abstract: Methods, systems, and devices for wireless communications are described. A first user equipment (UE) may relay wireless communications between a first base station and a second UE via at least a sidelink communication link with the second UE. The first UE may transmit, to the first base station, a measurement report for one or more candidate base stations, the measurement report indicating that the one or more candidate base stations support sidelink relay operation. The first UE may receive instructions to perform a handover procedure from the first base station to a second base station of the one or more candidate base stations based on the measurement report, where the second base station supports sidelink relay operation. The first UE may then perform the handover procedure including establishing a wireless connection with the second base station based on the instructions.

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