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    • 2. 发明申请
    • REVERSE LINK TRANSMIT POWER CONTROL IN A WIRELESS COMMUNICATION SYSTEM
    • 无线通信系统中的反向链路发射功率控制
    • WO2007014037A3
    • 2008-12-18
    • PCT/US2006028371
    • 2006-07-21
    • QUALCOMM INCATTAR RASHID ABHUSHAN NAGA
    • ATTAR RASHID ABHUSHAN NAGA
    • H04B7/005
    • H04W52/146H04W52/16H04W52/50
    • In one embodiment, the patent application comprises an apparatus, method and means for controlling power of an access terminal by adjusting a power of at least one secondary reverse link carrier by computing a forward link power differential, computing a reverse link power differential, and adding a power level of a primary reverse link carrier pilot with the forward link power differential and the reverse link power differential. In another embodiment, the patent application comprises an apparatus, method and means for controlling power of an access terminal by adjusting a power of at least one secondary reverse link carrier by computing a forward link power differential, computing a reverse link load differential, and adding a power level of a primary reverse link carrier pilot with the forward link power differential and the reverse link load differential.
    • 在一个实施例中,专利申请包括一种用于通过调节至少一个次级反向链路载波的功率来控制接入终端的功率的装置,方法和装置,该方法和装置通过计算前向链路功率差异,计算反向链路功率差异,以及添加 具有前向链路功率差和反向链路功率差的主要反向链路载波导频的功率电平。 在另一个实施例中,专利申请包括一种用于通过调节至少一个次级反向链路载波的功率来控制接入终端的功率的装置,方法和装置,该方法和装置通过计算前向链路功率差异,计算反向链路负载差异,以及添加 具有前向链路功率差和反向链路负载差分的主要反向链路载波导频的功率电平。
    • 10. 发明专利
    • Wireless communication rate shaping
    • 无线通信速率
    • JP2010136386A
    • 2010-06-17
    • JP2009283615
    • 2009-12-15
    • Qualcomm Incクゥアルコム・インコーポレイテッドQualcomm Incorporated
    • ATTAR RASHID ALOTT CHRISTOPHER G
    • H04W72/04H04L12/56H04W28/22H04W72/02H04W72/08
    • H04W28/22H04W24/00
    • PROBLEM TO BE SOLVED: To provide a method of reverse link (RL) data rate allocation in a high data rate system such as 1xEV-DO.
      SOLUTION: Rate shaping of a throughput profile for multiple access terminals (ATs) is performed by adjusting transition probabilities associated with a data rate allocation algorithm. The RL maximum data rate per AT is adjusted to reduce the loading in a designated area and result in rate shaping of the cell and/or sector. The maximum data rates are adjusted as a function of the FL signal to Interference and Noise Ratio (SINR), such as measured per serving sector or as a captured sum total of FL SINR. Further, the maximum data rates are adjusted as a function of differences in rise over thermal values between neighboring sectors.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供在诸如1xEV-DO的高数据速率系统中的反向链路(RL)数据速率分配的方法。 解决方案:通过调整与数据速率分配算法相关联的转换概率来执行多个接入终端(AT)的吞吐量简档的速率整形。 调整每个AT的RL最大数据速率以减小指定区域中的负载并导致小区和/或扇区的速率整形。 最大数据速率根据干扰和噪声比(SINR)的FL信号进行调整,例如每个服务扇区的测量或FL SINR的捕获总和。 此外,最大数据速率被调整为相邻扇区之间的热值上升差异的函数。 版权所有(C)2010,JPO&INPIT