APPARATUS AND METHOD FOR RESERVED TRANSMISSION OF NON-REAL-TIME CONTENT IN HETEROGENEOUS NETWORK ENVIRONMENT
    5.
    发明申请
    APPARATUS AND METHOD FOR RESERVED TRANSMISSION OF NON-REAL-TIME CONTENT IN HETEROGENEOUS NETWORK ENVIRONMENT 审中-公开
    异构网络环境中非实时内容传输的设备和方法

    公开(公告)号:US20150181489A1

    公开(公告)日:2015-06-25

    申请号:US14387403

    申请日:2012-12-05

    Abstract: An apparatus and a method for reserved transmission of non-real-time content in a heterogeneous network environment are disclosed. According to the present disclosure, a method for performing reserved transmission of non-real-time content in a heterogeneous network environment comprises receiving a transmission reservation option from either a mobile terminal user or a server, collecting information on networks accessible by the mobile terminal and data transmission rate on a regular basis, performing scheduling of whether to transmit data over a currently accessible network, based on the received transmission reservation option and the collected information on the accessible networks and the data transmission rate, and repeating data transmission according to the scheduling until transmission of the content is completed.

    Abstract translation: 公开了一种在异构网络环境中保留非实时内容传输的装置和方法。 根据本公开,在异构网络环境中执行非实时内容的保留传输的方法包括从移动终端用户或服务器接收传输预约选项,收集由移动终端可访问的网络上的信息;以及 数据传输速率,基于所接收的传输预约选项和收集的可访问网络信息和数据传输速率,执行是否通过当前可访问网络传输数据的调度,并根据调度重复数据传输 直到内容的传输完成。

    Method and apparatus for scheduling in wireless communication system

    公开(公告)号:US10980041B1

    公开(公告)日:2021-04-13

    申请号:US16464578

    申请日:2017-11-28

    Abstract: The present disclosure provides a method and an apparatus for scheduling traffic in a wireless communication system. A method for a base station operating in a wireless communication system according to an embodiment of the present disclosure comprises the steps of: receiving feedback information from a plurality of terminals; and scheduling the plurality of terminals based on the feedback information, wherein the step of scheduling the plurality of terminals includes a step of scheduling so as to reduce throughput of terminals in a first group of the plurality of terminals that are in an overload state, and to satisfy delay-based quality of service (QoS) of terminals in a second group of the plurality of terminals that are in under-load state. As a result, the total utility of all the terminals can be maximized, a delay-based QoS with respect to all the terminals can be achieved on average, and a minimum data rate-based QoS can be achieved on average.

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