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    • 1. 发明申请
    • METHODS AND APPARATUS FOR COMMUNICATING TRANSMISSION BACKLOG INFORMATION
    • 用于传播传输信息的方法和装置
    • WO2007075741A9
    • 2007-08-23
    • PCT/US2006048520
    • 2006-12-20
    • QUALCOMM FLARION TECHDAS ARNABLAROIA RAJIVLI JUNYI
    • DAS ARNABLAROIA RAJIVLI JUNYI
    • H04W72/12
    • H04W72/0413H04W72/1252H04W72/1284
    • An uplink dedicated control channel reporting structure includes a plurality of different bit size reports, e.g. 1 bit, 3 bit and 4 bit reports, for reporting a wireless terminal's backlog information of uplink traffic request group queues. Smaller bit size reports are transmitted more frequently than larger reports. A 1 bit request report indicates whether or not there are any MAC frames of information to be communicated in a set of two request group queues. A 3 bit request report indicates an amount of backlog information corresponding to a first set of request group queues and a second set of request group queues. A 4 bit request report indicates an amount of backlog information corresponding to a set of request group queues. The 4 bit request report is capable of reporting information on any of a plurality of uplink traffic channel request group queues being maintained by the wireless terminal.
    • 上行链路专用控制信道报告结构包括多个不同比特大小的报告,例如, 1位,3位和4位报告,用于报告无线终端的上行流量请求组队列的积压信息。 比较大的报告传送的位数较小的报告更频繁。 1位请求报告指示在一组两个请求组队列中是否存在要传送的任何MAC帧的信息。 3位请求报告指示对应于第一组请求组队列和第二组请求组队列的积压信息量。 4位请求报告指示与一组请求组队列对应的积压信息量。 4位请求报告能够报告由无线终端维护的多个上行链路业务信道请求组队列中的任一个的信息。
    • 2. 发明申请
    • METHODS AND APPARATUS FOR USE IN A WIRELESS COMMUNICATIONS SYSTEM THAT USES A MULTI-MODE BASE STATION
    • 在采用多模式基站的无线通信系统中使用的方法和装置
    • WO2007035447A2
    • 2007-03-29
    • PCT/US2006035931
    • 2006-09-15
    • QUALCOMM FLARION TECHLAROIA RAJIVANIGSTEIN PABLODAS ARNABRANGAN SUNDEEP
    • LAROIA RAJIVANIGSTEIN PABLODAS ARNABRANGAN SUNDEEP
    • H04B7/26
    • H04W56/00H04B7/2678H04L5/0007H04L5/0048H04L5/0053H04W52/0206H04W72/1278Y02D70/00Y02D70/449
    • A multi-mode base station includes a transmit standby mode and an active mode. Transmit standby mode of base station operation is a low power/low interference level of operation as compared to active mode. In transmit standby mode at least some of the synchronization signaling such as pilot tone signaling is reduced in power level and/or rate with respect to the active mode. In transmit standby mode, the base station has no active state registered wireless terminals being serviced but may have some sleep state registered wireless terminals being serviced. Mode transitions from active to transmit standby may be in response to: a detected period of inactivity, scheduling information, base station mode change signals, and/or detected wireless terminal state transition. Mode transitions from transmit standby to active may be in response to: scheduling information, access signals, wake-up signals, hand-off signals, wireless terminal state change signals, and/or base station mode change signals.
    • 多模式基站包括发送待机模式和活动模式。 与主动模式相比,基站操作的发送待机模式是低功耗/低干扰电平。 在发送待机模式中,诸如导频音调信令的至少一些同步信令相对于活动模式降低功率电平和/或速率。 在发送待机模式中,基站没有被激活状态登记的无线终端被服务,但是可能有一些睡眠状态登记的无线终端被维护。 模式从有效切换到发送备用的转换可以是:检测到的不活动时段,调度信息,基站模式改变信号和/或检测到的无线终端状态转换。 从发射待机状态转换为有效的模式可以响应于:调度信息,接入信号,唤醒信号,切换信号,无线终端状态改变信号和/或基站模式改变信号。
    • 5. 发明申请
    • METHODS AND APPARATUS FOR IMPLEMENTING AND USING AN IN-BAND RATE INDICATOR
    • 实现和使用带内速率指示器的方法和装置
    • WO2007015830A3
    • 2007-04-19
    • PCT/US2006027761
    • 2006-07-19
    • QUALCOMM FLARION TECHLAROIA RAJIVJIN HUILI JUNYILANE FRANK ARICHARDSON TOM
    • LAROIA RAJIVJIN HUILI JUNYILANE FRANK ARICHARDSON TOM
    • H04B7/26
    • H04L1/0057H04L1/0004H04L1/0005H04L1/0009H04L1/0025H04L1/0029H04L27/0008H04L27/2608Y02D50/10
    • Downlink traffic channel data rate options and methods of indicating to a wireless terminal a utilized downlink data rate option are described. The downlink traffic channel rate option for a segment is conveyed using an assignment signal and/or a block in the downlink traffic channel segment which is not used for user data. Downlink segment assignment signals in some implementations allocate fewer bits for rate option indication than are required to uniquely identify each option, hi some implementations low rate options, e.g., using QPSK, are uniquely identified via assignment signals. Higher rate options, e.g., using QAMl 6 modulation, are conveyed via the distinct information block in the downlink traffic segment using a first coding/modulation method. Still higher rate options, e.g., using QAMl 6, QAM64, or QAM256, are conveyed via the information block in the segment using a second coding/modulation method which is applied to the rate option information.
    • 下行业务信道数据速率选项和向无线终端指示利用的下行链路数据速率选项的方法进行描述。 使用未用于用户数据的下行链路业务信道段中的分配信号和/或块来传送段的下行业务信道速率选项。 在一些实施方式中,下行链路段分配信号比用于唯一地标识每个选项所需要的速率选项指示分配更少的比特。在一些实现中,例如使用QPSK的低速率选项通过分配信号被唯一地识别。 使用第一编码/调制方法,通过下行链路业务段中的不同信息块传送更高速率选项,例如使用QAM6调制。 使用应用于速率选项信息的第二编码/调制方法,通过片段中的信息块传送诸如使用QAM6,QAM64或QAM256的更高速率选项。
    • 7. 发明申请
    • METHODS AND APPARATUS FOR PROVIDING BASE STATION POSITION INFORMATION AND USING POSITION INFORMATION TO SUPPORT TIMING AND/OR FREQUENCY CORRECTIONS
    • 用于提供基站位置信息和使用位置信息来支持定时和/或频率校正的方法和设备
    • WO2007015828A3
    • 2007-04-19
    • PCT/US2006027759
    • 2006-07-19
    • QUALCOMM FLARION TECHLANE FRANK ALAROIA RAJIVLI JUNYI
    • LANE FRANK ALAROIA RAJIVLI JUNYI
    • H04B7/01H04B7/208H04W64/00
    • H04W4/02H04B7/01H04W56/0025H04W56/0035H04W56/006H04W64/00H04W88/005H04W92/10
    • A wireless terminal receives base station position over an airlink, determines its relative position with respect to the base station and determines a timing adjustment correction. The wireless terminal applies the determined timing correction to control uplink signaling timing and achieve synchronization at the base station's receiver. The wireless terminal determines its relative velocity with respect to the base station and determines a Doppler shift adjustment which it adds to the uplink carrier frequency or to its baseband signal. A wireless terminal determines the position of a moving base station and determines timing and/or frequency corrections. Base station position is determined from the current time and stored information correlating the base station position with time, e.g., for a geo-synchronous satellite. Base station position information is determined from broadcast information, e.g., GPS base station position, for an aircraft base station. Wireless terminals may be mobile and include a GPS receiver for WIRELESS TERMINAL position determination.
    • 无线终端通过空中链路接收基站位置,确定其相对于基站的相对位置并确定定时调整校正。 无线终端应用所确定的定时校正来控制上行链路信令定时并在基站的接收机处实现同步。 无线终端确定其相对于基站的相对速度并确定其增加到上行链路载波频率或其基带信号的多普勒频移。 无线终端确定移动基站的位置并确定定时和/或频率校正。 基站位置由当前时间确定,并存储使基站位置与时间相关的信息,例如用于地球同步卫星。 基站位置信息由飞机基站的广播信息(例如,GPS基站位置)确定。 无线终端可以是移动的并且包括用于WIRELESS TERMINAL位置确定的GPS接收器。
    • 8. 发明申请
    • METHODS AND APPARATUS FOR SUPPORTING TIMING AND/OR FREQUENCY CORRECTIONS IN A WIRELESS COMMUNICATIONS SYSTEM
    • 用于支持无线通信系统中的定时和/或频率校正的方法和设备
    • WO2007013938A3
    • 2007-03-22
    • PCT/US2006028091
    • 2006-07-19
    • QUALCOMM FLARION TECHLANE FRANK ALAROIA RAJIVLI JUNYI
    • LANE FRANK ALAROIA RAJIVLI JUNYI
    • H04B7/01G01S5/00H04B7/208H04W56/00H04W92/10
    • H04B7/01G01S5/0009G01S5/0284H04W56/0025H04W56/0035H04W56/006H04W92/10
    • A wireless terminal determines the position of a moving base station and determines timing and/or frequency corrections. A wireless terminal determines its relative position with respect to the base station and determines a timing adjustment correction. The wireless terminal applies the determined timing correction to control uplink signaling timing and achieve synchronization at the base station's receiver. The wireless terminal determines its relative velocity with respect to the moving base station and determines a Doppler shift adjustment which it adds to the uplink carrier frequency or to its baseband signal. Base station position is determined from the current time and stored information correlating the base station position with time, e.g., for a geo-synchronous satellite. Base station position information, e.g., a GPS derived base station position fix, is determined from downlink airlink broadcast information, e.g., for an aircraft base station. Wireless terminals may be mobile and include a GPS receiver for wireless terminal position determination.
    • 无线终端确定移动基站的位置并确定定时和/或频率校正。 无线终端确定其相对于基站的相对位置并确定定时调整校正。 无线终端应用所确定的定时校正来控制上行链路信令定时并在基站的接收机处实现同步。 无线终端确定其相对于移动基站的相对速度并确定其增加到上行链路载波频率或其基带信号的多普勒频移。 基站位置由当前时间确定,并存储使基站位置与时间相关的信息,例如用于地球同步卫星。 基站位置信息,例如GPS导出的基站位置定位,是从下行链路空中链路广播信息中确定的,例如,用于飞机基站。 无线终端可以是移动的并且包括用于无线终端位置确定的GPS接收机。
    • 10. 发明申请
    • METHODS AND APPARATUS FOR SUPPORTING UPLINKS WITH REMOTE BASE STATIONS
    • 支持远程基站上网的方法和装置
    • WO2006138191A3
    • 2007-02-22
    • PCT/US2006022696
    • 2006-06-12
    • QUALCOMM FLARION TECHLANE FRANK ALAROIA RAJIVLI JUNYI
    • LANE FRANK ALAROIA RAJIVLI JUNYI
    • H04B7/26H04W56/00
    • H04L27/2614H04B7/2125H04J3/0682H04W56/00
    • A wireless terminal using OFDM signaling supporting both terrestrial and satellite base station connectivity operates using conventional access probe signaling in a first mode of operation to establish a timing synchronized wireless link with a terrestrial base station. In a second mode of operation, used to establish a timing synchronized wireless link with a satellite base station, a slightly modified access protocol is employed. The round trip signaling time and timing ambiguity between a wireless terminal and a satellite base station is substantially greater than with a terrestrial base station. The modified access protocol uses coding of access probe signals to uniquely identify a superslot index within a beaconslot. The modified protocol uses multiple access probes with different timing offsets to further resolve timing ambiguity and allows the satellite base station access monitoring interval to remain small in duration. Terrestrial base station location/connection information is used to estimate initial timing.
    • 使用支持地面和卫星基站连接的OFDM信令的无线终端使用第一操作模式中的常规接入探测信令进行操作,以与地面基站建立定时同步的无线链路。 在用于与卫星基站建立定时同步的无线链路的第二操作模式中,采用稍微修改的接入协议。 无线终端和卫星基站之间的往返信令时间和定时模糊度明显大于地面基站。 经修改的接入协议使用接入探测信号的编码来唯一地标识信标内的超频索引。 经修改的协议使用具有不同定时偏移的多个接入探测器来进一步解决定时模糊度,并允许卫星基站接入监视间隔在持续时间内保持较小。 地面基站位置/连接信息用于估计初始定时。