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    • 31. 发明申请
    • A METHOD AND APPARATUS FOR TRANSMITTING AND RECEIVING NS-FLAB OVER F-SSCH IN WIRELESS COMMUNICATION SYSTEM
    • 用于在无线通信系统中发送和接收F-SSCH的NS-FLAB的方法和装置
    • WO2007050809A1
    • 2007-05-03
    • PCT/US2006/041882
    • 2006-10-27
    • QUALCOMM INCORPORATEDTEAGUE, Edward, Harrison
    • TEAGUE, Edward, Harrison
    • H04Q7/38
    • H04W24/02H04B7/216H04B7/2628H04J13/00H04L5/0057H04L27/2601H04W52/146H04W52/16H04W52/325H04W52/48H04W52/58H04W72/0473H04W72/085Y02D30/32
    • A method and apparatus for transmitting a NS-FLAB block is provided, comprising generating the NS-FLAB block comprising aN 11-bit MACID field, a ChID field of length NRL CHID bits, wherein the ChID field is set to a value to identify a set of hop-ports assigned to an access terminal, a 6 bit Packet Format (PF) field, wherein an access network sets the PF field to indicate the packet format that is to be used on subsequent transmissions on the same interlace and the first bit of the PF indicates the pilot pattern, a 2-bit duration field wherein the duration field indicates number of standard or extended frames used for transmission for the assignment and a 1 bit Extended Transmission field wherein the Extended transmission field indicates whether hop-port assignment is on standard or extended Physical layer (PHY) frames and transmitting the NS-FLAB block over the F-SSCH. A method and apparatus for receiving the NS-FLAB block is further provided, comprising receiving the NS-FLAB block and processing the FLAB block
    • 提供了一种用于发送NS-FLAB块的方法和装置,包括生成包括N 11位MACID字段的NS-FLAB块,长度为NRL CHID比特的ChID字段,其中ChID字段被设置为一个值,以识别 分配给接入终端的一组跳跃端口,6比特分组格式(PF)字段,其中接入网络设置PF字段以指示将在相同交织上的后续传输上使用的分组格式,并且第一比特 PF指示导频模式,其中持续时间字段指示用于分配用于传输的标准或扩展帧的数目的2位持续时间字段和扩展传输字段,其中扩展传输字段指示跳转端口分配是否为 在标准或扩展的物理层(PHY)帧上,并通过F-SSCH发送NS-FLAB块。 还提供了一种用于接收NS-FLAB块的方法和装置,包括接收NS-FLAB块并处理FLAB块
    • 33. 发明申请
    • EFFICIENT TRANSMISSION OF SIGNALING USING CHANNEL CONSTRAINTS
    • 使用信道约束的信号的有效传输
    • WO2006045099A1
    • 2006-04-27
    • PCT/US2005/038107
    • 2005-10-20
    • QUALCOMM INCORPORATEDTEAGUE, Edward, HarrisonJULIAN, David, Jonathan
    • TEAGUE, Edward, HarrisonJULIAN, David, Jonathan
    • H04L1/16H04J11/00
    • H04L1/1692H04L1/1829
    • To transmit signaling, a base station obtains signaling (e.g., ACKs) for a group of channels used for data transmission and selected from a set of channels having constraints on usage 810). The base station compresses the signaling based on the channel constraints and obtains at least one message (832) . If multiple messages are to be sent, then the assigned channels are partitioned into multiple subgroups, and the signaling for the channels in each subgroup is compressed to obtain a message for that subgroup (820,822) . Each message is encoded at a spectral efficiency and transmitted at a power level selected for the message (824,828) . A CRC value is appended to the message(s) for error detection (826) . To receive the signaling, a terminal checks a received message with the appended CRC, decodes the message if the CRC passes, decompresses the decoded message based on the channel constraints, and extracts the signaling for an assigned channel.
    • 为了发送信令,基站获得用于数据传输所使用的一组信道的信令(例如,ACK),并从具有使用限制的一组信道中选择)。 基站基于信道约束来压缩信令,并获得至少一个消息(832)。 如果要发送多个消息,则将分配的信道划分成多个子组,并且压缩每个子组中的信道的信令以获得该子组的消息(820,822)。 每个消息以频谱效率进行编码,并以为消息选择的功率电平(824,828)进行发送。 将CRC值附加到用于错误检测的消息(826)。 为了接收信令,终端用附加的CRC检查接收到的消息,如果CRC通过则对消息进行解码,基于信道约束对解码的消息进行解压缩,并提取所分配的信道的信令。
    • 35. 发明申请
    • DYNAMIC IOT SETPOINTS AND INTERFERENCE CONTROL
    • 动态IOT设定点与干扰控制
    • WO2010014823A2
    • 2010-02-04
    • PCT/US2009/052273
    • 2009-07-30
    • QUALCOMM INCORPORATEDTEAGUE, Edward, Harrison
    • TEAGUE, Edward, Harrison
    • H04W52/24H04W72/08H04B17/00
    • H04W52/243H04B17/345H04W72/082
    • Reverse link interference can be controlled by utilizing a dynamic and changeable IoT setpoint, which is a quantitative measurement of total interference received at a base station. The interference can occur when a mobile device in an adjacent sector is communicating over the reverse link. The IoT setpoint can be changed based on conditions occurring in the sector and/or scheduling information for the future. A fast up indicator (Up+) can be transmitted for reverse link interference, which allows the receiving device to take advantage of the fact that additional interference created will not affect the sector. An interference control action can be transmitted in an Other Sector Interference Bit (OSIB) channel over the air or over the backhaul. The interference control action can be determined as a function of the dynamic IoT setpoint.
    • 反向链路干扰可以通过利用动态和可改变的IoT设定点来控制,该设定点是在基站处接收的总干扰的定量测量。 当相邻扇区中的移动设备通过反向链路进行通信时可能发生干扰。 IoT设定值可根据扇区中出现的条件和/或未来的调度信息进行更改。 可以发送快速指示符(Up +)用于反向链路干扰,这允许接收设备利用所产生的附加干扰不会影响扇区的事实。 干扰控制动作可以通过空中或回程在其他扇区干扰比特(OSIB)信道中传输。 干扰控制动作可以根据动态IoT设定值来确定。