METHODS FOR NR SL MULTI-SUB-CHANNEL PSCCH TRANSMISSION

    公开(公告)号:US20250008547A1

    公开(公告)日:2025-01-02

    申请号:US18885061

    申请日:2024-09-13

    Abstract: Methods and apparatuses for Sidelink (SL) communication are disclosed herein. A method for SL communication performed by a Wireless Transmit/Receive Unit (WTRU) may include receiving a plurality of resources over a Physical Sidelink Control Channel (PSCCH) in a slot. In addition, the method may include determining the plurality of resources in the slot are control information resources and determining a control information resource type associated with the control information resources. The method may include determining a priority of the control information resource type based on a configuration relating priorities to control resource information types. The method may also include determining a Quality of Service (QoS) of the transport block (TB) associated with the control information resource type. Moreover, the method may include decoding the PSCCH according to the determined priority of the control information resource type.

    INTERFERENCE MEASUREMENTS AND MANAGEMENT IN DIRECTIONAL MESH NETWORKS
    3.
    发明申请
    INTERFERENCE MEASUREMENTS AND MANAGEMENT IN DIRECTIONAL MESH NETWORKS 审中-公开
    干扰测量和方向网络中的管理

    公开(公告)号:US20150373572A1

    公开(公告)日:2015-12-24

    申请号:US14766044

    申请日:2014-02-05

    Abstract: Techniques may be used for interference measurement and management in directional mesh networks, including centralized and/or distributed approaches. A centralized node, such as an operations and maintenance (OAM) center, may use feedback from nodes in the mesh network to partition the nodes in the mesh network into clusters based on interference levels. Interference measurement reports may be used by the centralized node to update cluster membership. An initiating node in the mesh network may use topographical information to generate an initial interference cluster, and interference measurement frame (IMF) scheduling information may be used to schedule transmissions within the interference clusters. Techniques for opportunistic measurement campaigns, simultaneous measurement campaigns, link failure detection, and link re-acquisition in directional mesh networks may also be used.

    Abstract translation: 技术可用于定向网状网络中的干扰测量和管理,包括集中式和/或分布式方法。 诸如操作和维护(OAM)中心的集中式节点可以使用来自网状网络中的节点的反馈,以将网状网络中的节点基于干扰级别划分成簇。 中央节点可以使用干扰测量报告来更新集群成员资格。 网状网络中的发起节点可以使用地形信息来生成初始干扰群集,并且可以使用干扰测量帧(IMF)调度信息来调度干扰群集内的传输。 也可以使用用于机会主义测量活动,同时测量活动,链路故障检测和定向网状网络中的链路重新获取的技术。

    PHYSICAL LAYER (PHY) DESIGN FOR A LOW LATENCY MILLIMETER WAVE (MMW) BACKHAUL SYSTEM
    5.
    发明申请
    PHYSICAL LAYER (PHY) DESIGN FOR A LOW LATENCY MILLIMETER WAVE (MMW) BACKHAUL SYSTEM 有权
    物理层(PHY)设计用于低功率微波(MMW)反向系统

    公开(公告)号:US20160007371A1

    公开(公告)日:2016-01-07

    申请号:US14766696

    申请日:2014-02-06

    Abstract: A method and apparatus are disclosed for establishing a low latency millimeter wave (mmW) backhaul connection. A base station may receive a mmW relay schedule from an evolved Node B (eNB) within one Long Term Evolution (LTE) scheduling interval. The base station may decode the mmW relay schedule, and initialize a mmW radio transmission resource according to the mmW relay schedule. The base station may receive a data packet from a second base station in a mmW transmission time interval (TTI) based on the mmW relay schedule using the initialized mmW radio transmission resource, and may transmit the data packet to a third base station based on the mmW relay schedule using the initialized mmW radio transmission resource. The transmitting may begin before the reception of the data packet is complete.

    Abstract translation: 公开了用于建立低延迟毫米波(mmW)回程连接的方法和装置。 基站可以在一个长期演进(LTE)调度间隔内从演进节点B(eNB)接收mmW中继调度。 基站可以解码mmW中继调度,并根据mmW中继调度初始化mmW无线电传输资源。 基站可以基于使用初始化的mmW无线电传输资源的mmW中继调度,以mmW传输时间间隔(TTI)从第二基站接收数据分组,并且可以基于该第一基站的数据分组向第三基站发送数据分组 使用初始化的mmW无线电传输资源的mmW中继计划。 发送可以在数据包的接收完成之前开始。

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