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    • 4. 发明申请
    • System and method of transmission scheduling in time-division duplex communication system to minimize interference
    • 时分双工通信系统中传输调度的系统和方法,以尽量减少干扰
    • US20070147333A1
    • 2007-06-28
    • US11316030
    • 2005-12-22
    • Mahesh Makhijani
    • Mahesh Makhijani
    • H04Q7/24
    • H04B7/2656H04W72/06H04W72/082
    • In a Time-Division Duplex (TDD) data frame, wherein time slots are allocated to downlink and uplink transmissions, time slots are allocated to pending communication signals beginning at the start of the data frame for one of downlink and uplink transmissions, and are allocated to pending communication signals beginning at the end of the frame for the other of downlink and uplink transmissions. When one or more time slots allocated to downlink and/or uplink transmissions are not utilized for actual communication signal transmission, the non-utilized time slot(s) occur towards the middle of the TDD data frame rather than at the end. This reduces the probability of base station/subscriber terminal interference with another sector or cell utilizing a different downlink/uplink time slot allocation.
    • 在时分双工(TDD)数据帧中,其中将时隙分配给下行链路和上行链路传输,将时隙分配给从下行链路和上行链路传输之一的数据帧开始处开始的未决通信信号,并且被分配 到下一个下行链路和上行链路传输中另一个的帧的结尾处开始的未决通信信号。 当分配给下行链路和/或上行链路传输的一个或多个时隙不用于实际的通信信号传输时,未使用的时隙朝向TDD数据帧的中间而不是结束发生。 这降低了使用不同下行链路/上行链路时隙分配的基站/用户终端与另一扇区或小区干扰的概率。
    • 5. 发明申请
    • SIGNALING TRANSMISSION ON SHARED AND DEDICATED CHANNELS IN A WIRELESS COMMUNICATION SYSTEM
    • 无线通信系统中共享和专用信道的信令传输
    • US20090075666A1
    • 2009-03-19
    • US12210828
    • 2008-09-15
    • Mahesh MakhijaniMehmet Yavuz
    • Mahesh MakhijaniMehmet Yavuz
    • H04W72/00
    • H04W72/087H04W36/0055H04W72/042
    • Techniques for sending and receiving signaling messages on shared and dedicated channels in a wireless communication system are described. A user equipment (UE) may receive a first signaling message on a shared channel during a first time period, receive a second signaling message on a dedicated channel during a second time period, and receive a third signaling message on the shared channel during a third time period. The UE may receive traffic data on the shared channel during all time periods. The UE may be handed over from a source Node B to a target Node B during the second time period. The UE may receive the first signaling message via the source Node B, receive the second signaling message via the source and target Node Bs, and receive the third signaling message via the target Node B.
    • 描述了在无线通信系统中在共享和专用信道上发送和接收信令消息的技术。 用户设备(UE)可以在第一时间段期间在共享信道上接收第一信令消息,在第二时间段期间在专用信道上接收第二信令消息,并且在第三时间段期间在共享信道上接收第三信令消息 时间段。 UE可以在所有时间段期间在共享信道上接收业务数据。 在第二时间段期间,UE可以从源节点B切换到目标节点B. UE可以经由源节点B接收第一信令消息,经由源节点B和目标节点B接收第二信令消息,并经由目标节点B接收第三信令消息。
    • 6. 发明授权
    • Signaling transmission on shared and dedicated channels in a wireless communication system
    • 在无线通信系统中的共享和专用信道上进行信令传输
    • US08233452B2
    • 2012-07-31
    • US12210828
    • 2008-09-15
    • Mahesh MakhijaniYavuz Mehmet
    • Mahesh MakhijaniYavuz Mehmet
    • H04W4/00
    • H04W72/087H04W36/0055H04W72/042
    • Techniques for sending and receiving signaling messages on shared and dedicated channels in a wireless communication system are described. A user equipment (UE) may receive a first signaling message on a shared channel during a first time period, receive a second signaling message on a dedicated channel during a second time period, and receive a third signaling message on the shared channel during a third time period. The UE may receive traffic data on the shared channel during all time periods. The UE may be handed over from a source Node B to a target Node B during the second time period. The UE may receive the first signaling message via the source Node B, receive the second signaling message via the source and target Node Bs, and receive the third signaling message via the target Node B.
    • 描述了在无线通信系统中在共享和专用信道上发送和接收信令消息的技术。 用户设备(UE)可以在第一时间段期间在共享信道上接收第一信令消息,在第二时间段期间在专用信道上接收第二信令消息,并且在第三时间段期间在共享信道上接收第三信令消息 时间段。 UE可以在所有时间段期间在共享信道上接收业务数据。 在第二时间段期间,UE可以从源节点B切换到目标节点B. UE可以经由源节点B接收第一信令消息,经由源节点B和目标节点B接收第二信令消息,并经由目标节点B接收第三信令消息。
    • 7. 发明申请
    • Dynamic transmit power for non-canonical transmission formats
    • 用于非规范传输格式的动态发射功率
    • US20070121535A1
    • 2007-05-31
    • US11239853
    • 2005-09-30
    • Wanshi ChenMahesh Makhijani
    • Wanshi ChenMahesh Makhijani
    • H04B7/185H04Q7/00
    • H04W52/286
    • Data packets on forward link packet data channels are typically transmitted at the full available power of the base station. When a non-canonical transmission format associated with a received DRC index is selected for encoding the packet data, the data may be transmitted with less that full available power, achieving the target FER due to shorter packets, and reducing system interference. The transmit power may be selected as a function of the required FER, payload size (associated physical layer format) and packet format (single- or multiple-user packet). The transmit power may also be based on the selected TF, the QoS needs of the packet data, or current system load information.
    • 前向链路分组数据信道上的数据分组通常以基站的完全可用功率发送。 当选择与接收到的DRC索引相关联的非规范传输格式用于对分组数据进行编码时,可以以更少的全可用功率发送数据,由于较短的分组而实现目标FER,并减少系统干扰。 可以根据所需的FER,有效载荷大小(相关的物理层格式)和分组格式(单用户或多用户分组)来选择发射功率。 发射功率还可以基于选择的TF,分组数据的QoS需求或当前系统负载信息。