Network Based Speed Dependent Load Balancing
    11.
    发明申请
    Network Based Speed Dependent Load Balancing 有权
    基于网络的速度依赖负载平衡

    公开(公告)号:US20160112927A1

    公开(公告)日:2016-04-21

    申请号:US14980366

    申请日:2015-12-28

    Abstract: A mobile device mobility state is included in device reporting to a radio access network for mobility event and load balancing purposes. Respective load conditions and respective coverage areas of a first set of devices of a first network and a second set of devices of a second network are analyzed. In addition, a mobility state of a mobile device, a first signal strength associated with the first set of devices, and a second signal strength associated with the second set of devices are also analyzed. The mobility state is a function of a movement pattern of the mobile device and a speed at which the mobile device is being moved. Network traffic of the mobile device is routed to a set of network devices selected from the first set of devices and the second set of devices, as a result of the analysis.

    Abstract translation: 在针对移动性事件和负载平衡目的的无线电接入网络的设备报告中包括移动设备移动性状态。 分析第一网络的第一组设备和第二网络的第二组设备的相应负载条件和相应覆盖区域。 此外,还分析了移动设备的移动性状态,与第一组设备相关联的第一信号强度以及与第二组设备相关联的第二信号强度。 移动状态是移动设备的移动模式和移动设备移动的速度的函数。 作为分析的结果,移动设备的网络流量被路由到从第一组设备和第二组设备中选择的一组网络设备。

    Network based speed dependent load balancing
    12.
    发明授权
    Network based speed dependent load balancing 有权
    基于网络的速度依赖负载均衡

    公开(公告)号:US09226197B2

    公开(公告)日:2015-12-29

    申请号:US14059401

    申请日:2013-10-21

    Abstract: A mobile device mobility state is included in device reporting to a radio access network for mobility event and load balancing purposes. Respective load conditions and respective coverage areas of a first set of devices of a first network and a second set of devices of a second network are analyzed. In addition, a mobility state of a mobile device, a first signal strength associated with the first set of devices, and a second signal strength associated with the second set of devices are also analyzed. The mobility state is a function of a movement pattern of the mobile device and a speed at which the mobile device is being moved. Network traffic of the mobile device is routed to a set of network devices selected from the first set of devices and the second set of devices, as a result of the analysis.

    Abstract translation: 在针对移动性事件和负载平衡目的的无线电接入网络的设备报告中包括移动设备移动性状态。 分析第一网络的第一组设备和第二网络的第二组设备的相应负载条件和相应覆盖区域。 此外,还分析了移动设备的移动性状态,与第一组设备相关联的第一信号强度以及与第二组设备相关联的第二信号强度。 移动状态是移动设备的移动模式和移动设备移动的速度的函数。 作为分析的结果,移动设备的网络流量被路由到从第一组设备和第二组设备中选择的一组网络设备。

    Device-Based Idle Mode Load Balancing
    13.
    发明申请
    Device-Based Idle Mode Load Balancing 审中-公开
    基于设备的空闲模式负载平衡

    公开(公告)号:US20140162636A1

    公开(公告)日:2014-06-12

    申请号:US13707539

    申请日:2012-12-06

    CPC classification number: H04W48/20

    Abstract: Concepts and technologies are described herein for device-based idle mode load balancing. According to one aspect disclosed herein, a mobile device can receive a cell information message that includes load information of a current camping cell on which the mobile device is currently camping and load information of at least one neighbor cell of a plurality of neighbor cells to the current camping cell. The mobile device can also obtain cell-type information of the current camping cell and cell-type information of the at least one neighbor cell. The mobile device can also determine a mobility state of the mobile device, and, based upon the load information of the current camping cell, the load information of the at least one neighbor cell, the cell-type information of the current camping cell, the cell-type information of the at least one neighbor cell, and the mobility state information, select a target camping cell.

    Abstract translation: 这里描述了基于设备的空闲模式负载平衡的概念和技术。 根据本文公开的一个方面,移动设备可以接收小区信息消息,该小区信息消息包括当前正在露营的当前营地小区的负载信息,并将多个相邻小区的至少一个相邻小区的信息加载到 目前的野营电池 移动设备还可以获取当前的露营小区的小区类型信息和至少一个相邻小区的小区类型信息。 移动设备还可以确定移动设备的移动性状态,并且基于当前营地小区的负载信息,至少一个相邻小区的负载信息,当前野营小区的小区类型信息, 至少一个相邻小区的小区类型信息和移动性状态信息,选择目标野营小区。

    MOBILE BROADBAND AND MACHINE TYPE COMMUNICATION NETWORK COEXISTENCE

    公开(公告)号:US20240365371A1

    公开(公告)日:2024-10-31

    申请号:US18766522

    申请日:2024-07-08

    Abstract: Techniques for mobile broadband and machine type communication network coexistence are provided. A method can include embedding, by a system comprising a processor, narrowband carriers, comprising a first narrowband carrier having a first bandwidth and a second narrowband carrier having the first bandwidth, into respective portions of an enhanced wireless broadband carrier, the enhanced wireless broadband carrier having a second bandwidth that is greater than the first bandwidth; transmitting, by the system to network equipment via the first narrowband carrier, a master information block comprising a first bandwidth field indicative of the first bandwidth and a second bandwidth field, distinct from the first bandwidth field, indicative of the second bandwidth; and scheduling, by the system, the network equipment on the second narrowband carrier in response to transmitting the master information block to the network equipment.

    OPEN SERVICE-BASED ARCHITECTURE (SBA) FRAMEWORK INCLUDING UNIFIED POLICY AND CHARGING CONTROL (PCC), SELF-ADAPTIVE NETWORK, AND/OR ON-DEMAND SERVICE MANAGEMENT

    公开(公告)号:US20240129697A1

    公开(公告)日:2024-04-18

    申请号:US17965582

    申请日:2022-10-13

    CPC classification number: H04W4/50 H04W24/02 H04W48/18

    Abstract: Aspects of the subject disclosure may include, for example: obtaining first network performance data characterizing a first wireless network that uses one technology, wherein the first wireless network provides one or more users of a plurality of users access to a collection of servers that enable services; obtaining first service performance data characterizing a first service of the services that are enabled by the collection of servers; obtaining first service requirements of the first service; obtaining second service performance data characterizing a second service of the services that are enabled by the collection of servers, wherein the second service is a different service than the first service; obtaining second service requirements of the second service; and responsive to a first user of the plurality of users indicating a preference to utilize the first wireless network, selecting one of the first service or the second service as a selected service for the first user, wherein the selecting of the selected service is based upon the first network performance data, the first service performance data, the first service requirements, the second service performance data, and the second service requirements. Other embodiments are disclosed.

    METAVERSE END-TO-END (E2E) NETWORK ARCHITECTURE

    公开(公告)号:US20230421448A1

    公开(公告)日:2023-12-28

    申请号:US17846087

    申请日:2022-06-22

    CPC classification number: H04L41/12 H04L41/5006 H04L41/40

    Abstract: Aspects of the subject disclosure may include, for example, a network system, comprising a plurality of access networks including access network resources, a plurality of transport networks including transport network resources, a plurality of core networks including core network resources, and a hybrid software-defined network (H-SDN), wherein the access network resources, the transport network resources, and the core network resources are abstracted into respective universal resource ports, resulting in a plurality of universal resource ports, and wherein the H-SDN leverages metaverse resources and select universal resource ports of the plurality of universal resource ports to facilitate end-to-end metaverse service delivery. Other embodiments are disclosed.

    DYNAMIC POWER SHARING ENHANCEMENT
    20.
    发明申请

    公开(公告)号:US20220338198A1

    公开(公告)日:2022-10-20

    申请号:US17235045

    申请日:2021-04-20

    Abstract: A method, system, computer readable storage medium, or apparatus provides for receiving a first message from a user equipment (UE), wherein the first message comprises an indication of one or more conditions, wherein the one or more conditions comprises an indication that the UE has a radio mode that comprises new radio (NR); determining a required idle period for long term evolution (LTE) for the UE; determining, based on the first message and the required idle period for LTE, a transmission time interval (TTI) for NR that corresponds to the required idle period for LTE; and sending, to the UE, a second message, wherein the second message comprises an indication of the TTI for NR.

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