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    • 1. 发明授权
    • Method and apparatus for link control in a wireless communication system
    • 无线通信系统中链路控制的方法和装置
    • US08121128B2
    • 2012-02-21
    • US12392765
    • 2009-02-25
    • Danlu ZhangMehmet YavuzBibhu P. MohantyAziz Gholmieh
    • Danlu ZhangMehmet YavuzBibhu P. MohantyAziz Gholmieh
    • H04L12/56
    • H04L1/1607H04L1/1867H04L25/14H04L2001/0096
    • Techniques for controlling transmission of packets on multiple links are described. In one design, a transmitter may generate packets of data for a receiver, assign the packets with sequence numbers from a single sequence number space, demultiplex the packets into multiple streams for multiple links, and send each stream of packets on the associated link to the receiver. The receiver may receive some packets in error, and the correctly received packets may be out of order. In one design, the receiver may maintain the largest sequence number of correctly received packets for each link. After detecting at least one missing packet, the receiver may send status information conveying the missing packet(s) and the largest sequence numbers for all links to the transmitter. The transmitter may use the largest sequence numbers for all links and its packet-to-link mapping to determine whether to quickly resend each missing packet or wait.
    • 描述了用于控制多个链路上的分组传输的技术。 在一种设计中,发射机可以产生用于接收机的数据分组,从单个序列号空间分配具有序列号的分组,将分组解复用为多个链路用于多个链路,并将相关链路上的每个分组流发送到 接收器。 接收机可能错误地接收一些分组,并且正确接收的分组可能是无序的。 在一种设计中,接收机可以维护每个链路的正确接收的分组的最大序列号。 在检测到至少一个丢失分组之后,接收机可以向所述发射机发送所有链路的丢失分组和最大序列号的状态信息。 发射机可以使用所有链路的最大序列号及其分组到链路映射来确定是否快速重新发送每个丢失的分组或等待。
    • 3. 发明申请
    • METHOD AND APPARATUS FOR LINK CONTROL IN A WIRELESS COMMUNICATION SYSTEM
    • 无线通信系统中链路控制的方法与装置
    • US20090213729A1
    • 2009-08-27
    • US12392765
    • 2009-02-25
    • Danlu ZhangMehmet YavuzBibhu P. MohantyAziz Gholmieh
    • Danlu ZhangMehmet YavuzBibhu P. MohantyAziz Gholmieh
    • H04L1/00
    • H04L1/1607H04L1/1867H04L25/14H04L2001/0096
    • Techniques for controlling transmission of packets on multiple links are described. In one design, a transmitter may generate packets of data for a receiver, assign the packets with sequence numbers from a single sequence number space, demultiplex the packets into multiple streams for multiple links, and send each stream of packets on the associated link to the receiver. The receiver may receive some packets in error, and the correctly received packets may be out of order. In one design, the receiver may maintain the largest sequence number of correctly received packets for each link. After detecting at least one missing packet, the receiver may send status information conveying the missing packet(s) and the largest sequence numbers for all links to the transmitter. The transmitter may use the largest sequence numbers for all links and its packet-to-link mapping to determine whether to quickly resend each missing packet or wait.
    • 描述了用于控制多个链路上的分组传输的技术。 在一种设计中,发射机可以产生用于接收机的数据分组,从单个序列号空间分配具有序列号的分组,将分组多路复用为多个链路的多个流,并将相关链路上的每个分组流发送到 接收器。 接收机可能错误地接收一些分组,并且正确接收的分组可能是无序的。 在一种设计中,接收机可以维护每个链路的正确接收的分组的最大序列号。 在检测到至少一个丢失分组之后,接收机可以向所述发射机发送所有链路的丢失分组和最大序列号的状态信息。 发射机可以使用所有链路的最大序列号及其分组到链路映射来确定是否快速重新发送每个丢失的分组或等待。
    • 9. 发明申请
    • MANAGEMENT OF UE OPERATION IN A MULTI-CARRIER COMMUNICATION SYSTEM
    • 在多载波通信系统中的UE操作的管理
    • US20090316575A1
    • 2009-12-24
    • US12488792
    • 2009-06-22
    • Aziz GholmiehBibhu P. MohantyDanlu Zhang
    • Aziz GholmiehBibhu P. MohantyDanlu Zhang
    • G06F11/00
    • H04W76/28H04W72/04H04W76/20H04W76/34
    • Techniques for managing operation of a user equipment (UE) in a multi-carrier system are described. The system may support two or more carriers on the downlink and one or more carriers on the uplink. One carrier on each link may be designated as an anchor carrier. In an aspect, a lower layer order (e.g., an HS-SCCH order) may be used to transition the UE between single-carrier and multi-carrier operation. In another aspect, the UE may have the same discontinuous reception (DRX) configuration for all downlink carriers and/or the same discontinuous transmission (DTX) configuration for all uplink carriers. In yet another aspect, HS-SCCH-less operation may be restricted to the anchor carrier.
    • 描述了用于管理多载波系统中的用户设备(UE)的操作的技术。 系统可以支持下行链路上的两个或更多个载波,以及上行链路上的一个或多个载波。 每个链路上的一个载波可以被指定为锚定载波。 在一个方面,可以使用较低层次(例如,HS-SCCH顺序)来在单载波和多载波操作之间转换UE。 在另一方面,对于所有上行链路载波,UE可以对于所有下行链路载波和/或相同的不连续传输(DTX)配置具有相同的不连续接收(DRX)配置。 在另一方面,可以将HS-SCCH-less操作限于锚定载体。