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    • 15. 发明申请
    • DATA TRANSMISSION VIA A RELAY STATION IN A WIRELESS COMMUNICATION SYSTEM
    • 数据传输通过无线通信系统中的继电器站
    • WO2010048645A3
    • 2010-08-05
    • PCT/US2009067028
    • 2009-12-07
    • QUALCOMM INCPALANKI RAVIBHATTAD KAPILBHUSHAN NAGAKHANDEKAR AAMOD DJI TINGFANGMONTOJO JUAN
    • PALANKI RAVIBHATTAD KAPILBHUSHAN NAGAKHANDEKAR AAMOD DJI TINGFANGMONTOJO JUAN
    • H04L1/18
    • H04L1/1867H04B7/2606
    • Techniques for supporting data transmission via a relay station are described. In an aspect, data transmission may be supported using ACK-and-suspend. A transmitter station sends a first transmission of a packet to a receiver station. The transmitter station receives no ACK information for the first transmission of the packet and suspends transmission of the packet. The transmitter station thereafter receives an indication to resume transmission of the packet and, in response, sends a second transmission of the packet. In another aspect, different ACK timeline may be used when applicable. The receiver station may send ACK information in a designated subframe if available for use or in a different subframe. In yet another aspect, ACK repetition may be used. The receiver may send ACK information in multiple subframes to facilitate reception of the ACK information when the transmitter station is unable to receive one or more of the multiple subframes.
    • 描述了通过中继站支持数据传输的技术。 在一方面,可以使用ACK和挂起来支持数据传输。 发送站发送分组的第一次发送到接收站。 发送台不接收用于分组的第一次发送的ACK信息,并且暂停分组的发送。 然后,发送站接收到恢复分组的发送的指示,并且作为响应,发送分组的第二发送。 在另一方面,当适用时可以使用不同的ACK时间线。 如果可以使用或在不同的子帧中,则接收站可以在指定的子帧中发送ACK信息。 在另一方面,可以使用ACK重复。 接收机可以在多个子帧中发送ACK信息,以便当发射机站不能接收多个子帧中的一个或多个时,接收ACK信息。
    • 19. 发明申请
    • SYSTEM AND METHOD TO ENABLE RESOURCE PARTITIONING IN WIRELESS NETWORKS
    • 在无线网络中实现资源分配的系统和方法
    • WO2009143384A3
    • 2010-08-19
    • PCT/US2009044912
    • 2009-05-21
    • QUALCOMM INCBHATTAD KAPILPALANKI RAVI
    • BHATTAD KAPILPALANKI RAVI
    • H04W72/00
    • H04L5/0073H04L1/0001H04L1/1867H04L5/0053H04W28/04H04W28/18H04W72/0406H04W72/082
    • Systems and methodologies are described that facilitate improved resource partitioning and interference management in a wireless communication system. Techniques are described herein for the transmission and use of various types of signaling, such as Access Request commands, Reverse Link Special Resource Utilization Message (R-SRUM) signaling, Forward Link Special Resource Utilization Message (F-SRUM) signaling, and the like, for managing interference associated with range extension, restricted association networks, and other jamming scenarios. As described herein, downlink resource coordination and interference management are accomplished through the use of Access Request or R-SRUM signaling conducted in a unicast or broadcast fashion, and uplink resource coordination and interference management are accomplished through the use of F-SRUM signaling. As further described herein, a clean communication channel such as a Low Reuse Preamble (LRP) channel can be utilized for interference management signaling and/or leveraged for determining timing of various signaling messages.
    • 描述了有助于在无线通信系统中改进资源划分和干扰管理的系统和方法。 本文描述了用于传输和使用各种类型的信令的技术,诸如接入请求命令,反向链路特殊资源利用消息(R-SRUM)信令,前向链路特殊资源利用消息(F-SRUM)信令等等 用于管理与范围扩展相关的干扰,受限关联网络和其他干扰场景。 如本文所述,通过使用以单播或广播方式进行的接入请求或R-SRUM信令来实现下行链路资源协调和干扰管理,并且通过使用F-SRUM信令来实现上行链路资源协调和干扰管理。 如本文进一步描述的,诸如低重用前导码(LRP)信道的干净通信信道可以用于干扰管理信令和/或用于确定各种信令消息的定时。