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    • 42. 发明申请
    • FAST CARRIER ALLOCATION IN MULTI-CARRIER SYSTEMS
    • 多载波系统中的快速载波分配
    • US20090257387A1
    • 2009-10-15
    • US12409714
    • 2009-03-24
    • Aziz GholmiehDanlu ZhangSharad Deepak SambhwaniMehmet Yavuz
    • Aziz GholmiehDanlu ZhangSharad Deepak SambhwaniMehmet Yavuz
    • H04W72/00
    • H04L5/0053H04L5/0091H04W28/16H04W72/042Y02D70/142Y02D70/24Y02D70/25
    • Providing for fast allocation of additional carriers in multi-carrier wireless communication systems is described herein. By way of example, high layer protocols can be employed to allocate additional carriers to UEs in a wireless network. Additionally, management of the additional carriers can be accomplished via high speed lower layer signaling protocols. Management can involve activating/deactivating the additional carriers, instructing the UE to provide carrier feedback, monitor pilot or control channels of such carriers, or the like. Because lower layer signaling is relatively fast, activation or deactivation of the additional carrier can be quickly implemented in response to contemporaneous changes in channel conditions. Thus, changes to signal quality or network loading can be determined and utilized to customize carrier activation in near real-time, providing efficient resource allocation while conserving UE battery life.
    • 本文描述了在多载波无线通信系统中提供附加载波的快速分配。 作为示例,可以采用高层协议来向无线网络中的UE分配附加载波。 此外,附加载波的管理可以通过高速下层信令协议来实现。 管理可以涉及激活/去激活附加载波,指示UE提供载波反馈,监视这些载波的导频或控制信道等。 因为较低层信令相对较快,所以可以响应于信道条件的同时变化来快速实现附加载波的激活或去激活。 因此,可以确定和利用对信号质量或网络负载的改变来近似实时地定制载波激活,提供有效的资源分配,同时节省UE的电池寿命。
    • 49. 发明授权
    • Method and apparatus for power control during DTX operation
    • DTX操作期间功率控制的方法和装置
    • US08060130B2
    • 2011-11-15
    • US12977301
    • 2010-12-23
    • Aziz GholmiehJuan MontojoStein Arne Lundby
    • Aziz GholmiehJuan MontojoStein Arne Lundby
    • H04B7/00
    • H04W52/56
    • Techniques for performing power control during discontinuous transmission (DTX) operation are described. A UE transmits on the uplink during a transmission burst and receives TPC commands generated by a Node B based on the uplink transmission. The UE may receive two TPC commands at the end of the transmission burst that are not applied during the transmission burst. The UE saves and applies these two TPC commands in the next transmission burst. In one design, the UE applies each saved TPC command in one slot of the next transmission burst. In another design, the UE combines the two saved TPC commands and applies the combined value in the first two slots of the next transmission burst. In yet another design, the UE selects one of the saved TPC commands and applies the selected TPC command in the first two slots of the next transmission burst.
    • 描述了在不连续传输(DTX)操作期间执行功率控制的技术。 UE在传输突发期间在上行链路上进行发送,并且基于上行链路传输接收由节点B生成的TPC命令。 UE可以在传输突发结束时接收两个在传输突发期间不被应用的TPC命令。 UE在下一个传输突发中保存并应用这两个TPC命令。 在一种设计中,UE将每个保存的TPC命令应用于下一个传输突发的一个时隙。 在另一种设计中,UE组合了两个保存的TPC命令,并将组合值应用于下一个传输脉冲串的前两个时隙。 在另一种设计中,UE选择保存的TPC命令之一,并将所选择的TPC命令应用于下一个传输脉冲串的前两个时隙。