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    • 1. 发明申请
    • WAVEFORM CORRELATION RESULT PROCESSING METHODS AND APPARATUSES
    • 波形相关处理方法和设备
    • WO2010068911A1
    • 2010-06-17
    • PCT/US2009/067738
    • 2009-12-11
    • QUALCOMM IncorporatedPON, Rayman Wai
    • PON, Rayman Wai
    • G01S1/00
    • G01S19/22
    • Methods and apparatus are provided for use in devices adapted to perform waveform correlation result processing. An exemplary method may include accessing a plurality of collected measurement values stored in memory, establishing at least one combined measurement value based, at least in part, on at least two of the collected measurement values, and identifying at least one wireless signal within a reference waveform based, at least in part, on at least the combined measurement value. The method may also include establishing the at least one correlation result for at least one of the plurality of waveforms by correlating the at least one of the plurality of waveforms with the reference waveform.
    • 方法和装置被提供用于适于执行波形相关结果处理的装置。 示例性方法可以包括访问存储在存储器中的多个收集的测量值,至少部分地基于所收集的测量值中的至少两个,建立至少一个组合测量值,并且识别参考中的至少一个无线信号 至少部分地基于至少组合的测量值的波形。 该方法还可以包括通过将多个波形中的至少一个与参考波形相关联来建立多个波形中的至少一个波形的至少一个相关结果。
    • 2. 发明申请
    • SATELLITE TIME DETERMINATION FOR SPS RECEIVER
    • SPS接收机的卫星时间确定
    • WO2009110948A1
    • 2009-09-11
    • PCT/US2008/087937
    • 2008-12-22
    • QUALCOMM INCORPORATEDPON, Rayman Wai
    • PON, Rayman Wai
    • G01S5/14G01S1/00
    • G01S19/42G01S19/24
    • Methods and apparatus for improving position location performance, especially in weak coverage areas, are described herein. A SPS receiver is able to solve for position location in situations where at least two satellite signals can be received but only one time stamp can be successfully demodulated. The receiver can utilize the successfully decoded time reference to determine a time associated with bit edge transitions for signals from that satellite. The receiver utilizes the bit edge transition with the known time to set the time for at least one bit edge transition for signals from other satellites for which the time stamp is not demodulated. The receiver sets the time hypothesis to bit edge transitions occurring within a predetermined window including the bit edge transition with the known time. A position can be determined based on the time hypothesis. The time hypothesis and window placement can be modified following invalid position solutions.
    • 本文描述了用于改善位置定位性能的方法和装置,特别是在弱覆盖区域中。 在可以接收至少两个卫星信号但只有一个时间戳可以成功解调的情况下,SPS接收机能够解决位置定位。 接收机可以利用成功解码的时间参考来确定与来自该卫星的信号的位边沿转换相关联的时间。 接收机利用已知时间的比特边缘转换来设置来自其他时间戳未被解调的其他卫星的信号的至少一个比特边缘转换的时间。 接收机将时间假设设置为在包括具有已知时间的位边沿转换的预定窗口内发生的位边沿转换。 可以根据时间假设确定一个位置。 时间假设和窗口布局可以在无效位置解决方案之后进行修改。
    • 3. 发明申请
    • MULTIPATH DETECTION FOR RECEIVED SPS SIGNAL
    • 接收SPS信号的多路径检测
    • WO2009105728A1
    • 2009-08-27
    • PCT/US2009/034796
    • 2009-02-20
    • QUALCOMM INCORPORATEDPON, Rayman Wai
    • PON, Rayman Wai
    • G01S1/00
    • G01S19/22G01S19/30
    • The subject matter disclosed herein relates to detecting and/or estimating multipath signals. For an example, a signal comprising at least one binary offset carrier (BOC) modulation signal is received. The BOC modulation signal is modulated with a pseudorandom noise sequence comprising a plurality of chips, wherein each of said chips has a set interval. In another aspect, the received signal is correlated with portions of the plurality of chips to provide a power signal. The portions of chips are less than the set interval. In a further aspect, presence of a multi-path signal in the received signal is detected. The detection of multipath is based, at least in part, on one or more characteristics of the power signal.
    • 本文公开的主题涉及检测和/或估计多径信号。 作为示例,接收包括至少一个二进制偏移载波(BOC)调制信号的信号。 BOC调制信号由包含多个码片的伪随机噪声序列调制,其中每个所述码片具有设定间隔。 在另一方面,接收信号与多个芯片的部分相关以提供功率信号。 芯片的部分小于设定的间隔。 在另一方面,检测接收信号中的多径信号的存在。 多路径的检测至少部分地基于功率信号的一个或多个特性。
    • 4. 发明申请
    • DGNSS CORRECTION FOR POSITIONING
    • DGNSS定位校正
    • WO2010057149A1
    • 2010-05-20
    • PCT/US2009/064700
    • 2009-11-17
    • QUALCOMM INCORPORATEDFARMER, Dominic, GerardLIN, le-HongPON, Rayman Wai
    • FARMER, Dominic, GerardLIN, le-HongPON, Rayman Wai
    • G01S1/00
    • G01S19/05G01S19/25G01S19/27
    • Techniques for supporting positioning with differential corrections are described. In an aspect, differential correction for a satellite may include (i) a user differential range error (UDRE) indicating an uncertainty in a pseudo-range correction for the satellite, (ii) a UDRE growth rate, which may be a scaling factor for the UDRE, and (iii) a time of validity for UDRE growth rate, which may be a time unit used to apply the scaling factor. In one design, a terminal may send a request message to ask for differential correction information and may receive a response message. The terminal may obtain differential correction ( e.g. , a UDRE, a UDRE growth rate, and a time of validity for UDRE growth rate) for each of at least one satellite from the response message. The terminal may derive a location estimate for itself based on the differential correction for each satellite.
    • 描述用于支持差分校正定位的技术。 在一方面,卫星的差分校正可以包括(i)指示卫星的伪距校正中的不确定性的用户差分范围误差(UDRE),(ii)UDRE增长率,其可以是用于 UDRE,以及(iii)UDRE增长率的有效期,可能是用于应用比例因子的时间单位。 在一种设计中,终端可以发送请求消息来请求差分校正信息,并且可以接收响应消息。 终端可以从响应消息中获得至少一个卫星中的每一个的差分校正(例如,UDRE,UDRE增长率和UDRE增长率的有效时间)。 终端可以基于每个卫星的差分校正导出其自身的位置估计。
    • 8. 发明申请
    • METHOD AND APPARATUS FOR MULTIPATH MITIGATION
    • 用于多路减速的方法和装置
    • WO2010065250A1
    • 2010-06-10
    • PCT/US2009/063979
    • 2009-11-11
    • QUALCOMM IncorporatedCHEN, Shiou-HungMARSHALL, Grant AlexanderSIMIC, Emilija M.ROWITCH, Douglas NealPON, Rayman Wai
    • CHEN, Shiou-HungMARSHALL, Grant AlexanderSIMIC, Emilija M.ROWITCH, Douglas NealPON, Rayman Wai
    • H04B1/707G01S1/00
    • H04B1/7113G01S19/22H04B2201/70715
    • An apparatus and method for short multipath mitigation. In one aspect the method comprises subtracting a first stronger path from a correlation function to obtain a first residual signal, wherein one component of the first residual signal is a weaker path; applying reconstruction on the first residual signal to obtain a first reconstructed weaker path; subtracting the first reconstructed weaker path from the correlation function to obtain a second residual signal; and applying reconstruction on the second residual signal to obtain a second stronger path. In one aspect, the apparatus includes an antenna for receiving a composite receive RF signal, a receiver front-end for converting the composite receive RF signal into a composite receive digital signal; and a processor for performing signal correlation on the composite receive digital signal to obtain a correlation function and for processing the correlation function to obtain a desired signal. In one aspect, the short multipath is identified by computing a Left Edge Height Ratio Indicator (LEHRI).
    • 一种用于短多径减轻的装置和方法。 在一个方面,该方法包括从相关函数中减去第一较强路径以获得第一残差信号,其中第一残差信号的一个分量是较弱的路径; 对第一残差信号应用重建以获得第一重建较弱路径; 从所述相关函数中减去所述第一重建较弱路径以获得第二残差信号; 以及对所述第二残差信号应用重建以获得第二较强路径。 一方面,该装置包括用于接收复合接收RF信号的天线,用于将复合接收RF信号转换成复合接收数字信号的接收机前端; 以及处理器,用于对复合接收数字信号执行信号相关,以获得相关函数,并用于处理相关函数以获得期望的信号。 在一个方面,通过计算左边缘高度比指示符(LEHRI)来识别短多径。