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    • 2. 发明申请
    • UWB telecommunication system and communication device to be used therein
    • UWB电信系统及其中使用的通信设备
    • US20060025086A1
    • 2006-02-02
    • US11182901
    • 2005-07-18
    • Jean-Baptiste DoreBernard UguenStephane PaqueletLouis-Marie Aubert
    • Jean-Baptiste DoreBernard UguenStephane PaqueletLouis-Marie Aubert
    • H04B1/02H04B7/02
    • H04B1/71635H04B7/04H04L25/4902
    • The present invention relates to a system for transmitting data in the form of at least one sequence of pulses modulated by symbol encoding means. According to the invention, the symbol encoding means include a plurality of signal encoders ENCi connected to a plurality of antennas ANTi and comprising each: pulse generating means PGi for delivering a basic pulse sequence PSQi, energy splitting means ENSPi for splitting said basic pulse sequence into sub-sequences Psqi1 . . . PsqiK, signal modulating means SGM1 . . . SGMK for applying to each sub-sequence a tunable coefficient, and combination means CMBMi for combining all sub-sequences Tsgi1 . . . TsgiK into a signal Tsgi to be transmitted by the antenna ANTi to which the encoder ENCi is connected. Thanks to the invention, each signal encoder ENCi is linked to a single antenna ANTi, which enables to ensure that said antenna will have essentially constant physical properties within its own frequential range of operation.
    • 本发明涉及一种用于以由符号编码装置调制的至少一个脉冲序列的形式发送数据的系统。 根据本发明,符号编码装置包括连接到多个天线ANTi的多个信号编码器ENCi,包括:用于传送基本脉冲序列PSQi的脉冲发生装置PGi,用于将所述基本脉冲序列分成的能量分离装置 子序列Psqi 1。 。 。 PsqiK,信号调制装置SGM 1。 。 。 用于向每个子序列应用可调系数的SGMK,以及用于组合所有子序列Tsgi 1的组合装置CMBMi。 。 。 TsgiK转换成由编码器ENCi连接到的天线ANTi发送的信号Tsgi。 由于本发明,每个信号编码器ENCi链接到单个天线ANTi,其能够确保所述天线在其自身的频率操作范围内具有基本上恒定的物理特性。
    • 3. 发明申请
    • Method for detecting UWB pulse sequences and detection means suitable for this purpose
    • 用于检测UWB脉冲序列的方法和适用于此目的的检测装置
    • US20050031020A1
    • 2005-02-10
    • US10881526
    • 2004-07-01
    • Stephane PaqueletBernard Uguen
    • Stephane PaqueletBernard Uguen
    • H04B1/69H04B1/707
    • H04B1/7163H04B1/7176
    • The present invention relates to a method for transmitting data in the form of at least one sequence of Np pulses over Np time windows Tf, each pulse being enclosed within a time chip Tc whose position whithin its relevant time window is defined by a chip number. The method according to the invention, includes at least one signal detection step, in the course of which Np detection windows Dj (for j=1 to Np) encompassing the time chips defined by the chip numbers are to be examined in search of an expected pulse sequence. The method according to the invention enables to limit the processing time and power needed for carrying out the detection step, which only requires to scan detection windows defined by the signature of a transmitter, instead of mapping the whole pulse sequence.
    • 本发明涉及一种在Np个时间窗口Tf上以至少一个Np个脉冲序列的形式发送数据的方法,每个脉冲被包围在其相关时间窗口内的位置由芯片号码定义的时间片段Tc内。 根据本发明的方法包括至少一个信号检测步骤,在该过程中,将检查包含由芯片号码定义的时间码的Np检测窗口Dj(用于j = 1至Np),以搜索期望的 脉冲序列。 根据本发明的方法能够限制执行检测步骤所需的处理时间和功率,该检测步骤仅需要扫描由发射机的签名定义的检测窗口,而不是映射整个脉冲序列。
    • 4. 发明授权
    • Method for detecting UWB pulse sequences and detection means suitable for this purpose
    • 用于检测UWB脉冲序列的方法和适用于此目的的检测装置
    • US07660359B2
    • 2010-02-09
    • US10881526
    • 2004-07-01
    • Stephane PaqueletBernard Uguen
    • Stephane PaqueletBernard Uguen
    • H04L27/00
    • H04B1/7163H04B1/7176
    • A telecommunication system including a receiver to receive a signal including a sequence of Np pulses, each pulse included in a separate time window, and each pulse enclosed within a time chip whose position within the corresponding time window is defined by a chip number that is included in a known signature; and a detector configured to detect Np pulses in each of the separate time windows by using Np detection windows, a location of the detection windows defined by the known signature, the detection windows being shorter than the separate time windows, and longer than the time chip duration of the time chips, to search an expected pulse sequence.
    • 一种电信系统,包括接收器,用于接收包括Np个脉冲序列的信号,包括在单独的时间窗口中的每个脉冲以及封装在时间芯片内的每个脉冲,其中相应的时间窗口内的位置由包括的芯片号码定义 在一个已知的签名; 以及检测器,被配置为通过使用Np检测窗口来检测每个分离的时间窗口中的Np脉冲,由已知签名定义的检测窗口的位置,检测窗口比分离的时间窗口短,并且比时间码片长 时间片的持续时间,以搜索预期的脉冲序列。