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    • 1. 发明申请
    • Fast Encoding and Decoding Methods and Related Devices
    • 快速编码和解码方法及相关设备
    • US20100287437A1
    • 2010-11-11
    • US12223109
    • 2007-01-18
    • Jean-Baptiste DoreMarie-Hélène HamonPierre Penard
    • Jean-Baptiste DoreMarie-Hélène HamonPierre Penard
    • H03M13/27G06F11/10
    • H03M13/2972H03M13/1194H03M13/2771H03M13/2978H03M13/6566
    • A method of low latency encoding of an input bit sequence (S0) to yield an encoded bit sequence (S), and a corresponding decoding method, said encoding method including: a first encoding step (E1) applied to bits of the input bit sequence (S0), using a first code; an interleaving step (E3) in which an interleaver interleaves the bits obtained from said first code; and a parity, second encoding step (E4) applied to the bits obtained from said interleaver, using a second code, to generate said encoded bit sequence (S). The parity, second encoding step (E4) starts after a predetermined number Δ of bits have been interleaved, said predetermined number Δ of bits ranging between a first lower number Δi of bits depending on one or more parameters of said interleaving step (E3) and a first higher number Δs of bits corresponding to the total number of bits to be processed during said interleaving step (E3).
    • 一种输入比特序列(S0)的低延迟编码以产生编码比特序列(S)的方法和相应的解码方法,所述编码方法包括:第一编码步骤(E1),其应用于输入比特序列 (S0),使用第一代码; 交织步骤(E3),其中交织器交织从所述第一码获得的比特; 以及使用第二代码应用于从所述交织器获得的比特的奇偶校验第二编码步骤(E4),以生成所述编码比特序列(S)。 奇偶校验第二编码步骤(E4)在预定数量&Dgr之后开始; 的位已被交织,所述预定数量&Dgr; 根据所述交织步骤(E3)的一个或多个参数和与在所述交织步骤期间要处理的总位数相对应的比特的第一较高数目&Dgr比特,位于第一较低数字& (E3)。
    • 2. 发明申请
    • ENCODING AND DECODING A DATA SIGNAL AS A FUNCTION OF A CORRECTING CODE
    • 编码和解码数据信号作为校正码的功能
    • US20100064195A1
    • 2010-03-11
    • US12514590
    • 2007-11-09
    • Jean-Baptiste DoreMarie-Helene HamonPierre Penard
    • Jean-Baptiste DoreMarie-Helene HamonPierre Penard
    • H03M13/05G06F11/10
    • H03M13/116H03M13/1137
    • The invention relates to correcting codes for encoding and decoding a data signal. A signal including data variables is coded into a signal including the data variables and parity variables. The encoding and decoding operations are based on a parity check matrix comprised of a systematic matrix and a parity matrix and having rows corresponding coefficients of parity equations and distributed into decoding windows of same size. In order to increase convergence of the iterative decoding, the elements of at least one column of the systematic matrix associated with a decoding window are “0s”, except for a single element which is a “1”. A data variable is only involved in one equation of the window and not involved in solving the equations of other windows as long as the solving of equations of the window is not achieved.
    • 本发明涉及用于对数据信号进行编码和解码的代码。 包括数据变量的信号被编码成包括数据变量和奇偶变量的信号。 编码和解码操作基于由系统矩阵和奇偶校验矩阵组成的奇偶校验矩阵,并且具有对应于奇偶校验方程的系数的行并分布到相同大小的解码窗口中。 为了增加迭代解码的收敛,除了作为“1”的单个元素之外,与解码窗口相关联的系统矩阵的至少一列的元素是“0”。 数据变量只涉及窗口的一个方程,只要求解窗口的方程就不能解决其他窗口的方程。
    • 5. 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。
    • 6. 发明授权
    • Method and system for encoding a data sequence
    • 用于编码数据序列的方法和系统
    • US08161350B2
    • 2012-04-17
    • US11988252
    • 2006-06-30
    • Jean-Baptiste DoreMarie-Hélène HamonPierre Penard
    • Jean-Baptiste DoreMarie-Hélène HamonPierre Penard
    • H03M13/00
    • H03M13/1194H03M13/1105H03M13/116H03M13/118H03M13/1185H03M13/2906
    • A communication method and a communication system including a first entity (3) including an information source (9) and a coder device (11) connected by a channel (7) transmitting data to a second entity (5) including a decoder device (13), the coder device (11) coding a data sequence sent by the information source (9) to form a set of code words from a parity check matrix including two matrix areas, each matrix area including a processing matrix, a connecting matrix including only one “1” per column and only one “1” per row, and a triangular matrix, and the decoder device (13) decoding a coded reception signal that is received by the second entity and is derived from the set of code words constructed in accordance with said parity check matrix.
    • 一种通信方法和通信系统,包括第一实体(3),包括信息源(9)和编码器装置(11),通过信道(7)连接到包括解码器装置(13)的第二实体(5)的信道 ),编码器装置(11)对由信息源(9)发送的数据序列进行编码,以从包括两个矩阵区域的奇偶校验矩阵形成一组码字,每个矩阵区域包括处理矩阵,仅包括连接矩阵 每列一个“1”,每行仅一个“1”,三角矩阵,解码器装置(13)对由第二实体接收的编码的接收信号进行解码,并从构成的代码字集合 根据所述奇偶校验矩阵。
    • 7. 发明授权
    • Fast encoding and decoding methods and related devices
    • 快速编码和解码方法及相关设备
    • US08214723B2
    • 2012-07-03
    • US12223109
    • 2007-01-18
    • Jean-Baptiste DoreMarie-Hélène HamonPierre Penard
    • Jean-Baptiste DoreMarie-Hélène HamonPierre Penard
    • H03M13/00
    • H03M13/2972H03M13/1194H03M13/2771H03M13/2978H03M13/6566
    • A method of low latency encoding of an input bit sequence (S0) to yield an encoded bit sequence (S), and a corresponding decoding method, said encoding method including: a first encoding step (E1) applied to bits of the input bit sequence (S0), using a first code; an interleaving step (E3) in which an interleaver interleaves the bits obtained from said first code; and a parity, second encoding step (E4) applied to the bits obtained from said interleaver, using a second code, to generate said encoded bit sequence (S). The parity, second encoding step (E4) starts after a predetermined number Δ of bits have been interleaved, said predetermined number Δ of bits ranging between a first lower number Δi of bits depending on one or more parameters of said interleaving step (E3) and a first higher number Δs of bits corresponding to the total number of bits to be processed during said interleaving step (E3).
    • 一种输入比特序列(S0)的低延迟编码以产生编码比特序列(S)的方法和相应的解码方法,所述编码方法包括:第一编码步骤(E1),其应用于输入比特序列 (S0),使用第一代码; 交织步骤(E3),其中交织器交织从所述第一码获得的比特; 以及使用第二代码应用于从所述交织器获得的比特的奇偶校验第二编码步骤(E4),以生成所述编码比特序列(S)。 奇偶校验第二编码步骤(E4)在预定数量&Dgr之后开始; 的位已被交织,所述预定数量&Dgr; 根据所述交织步骤(E3)的一个或多个参数和与在所述交织步骤期间要处理的总位数相对应的比特的第一较高数目&Dgr比特,位于第一较低数字& (E3)。
    • 8. 发明授权
    • Encoding and decoding a data signal as a function of a correcting code
    • 作为校正码的函数对数据信号进行编码和解码
    • US08271851B2
    • 2012-09-18
    • US12514590
    • 2007-11-09
    • Jean-Baptiste DoreMarie-Helene HamonPierre Penard
    • Jean-Baptiste DoreMarie-Helene HamonPierre Penard
    • H03M13/00
    • H03M13/116H03M13/1137
    • The invention relates to correcting codes for encoding and decoding a data signal. A signal including data variables is coded into a signal including the data variables and parity variables. The encoding and decoding operations are based on a parity check matrix comprised of a systematic matrix and a parity matrix and having rows corresponding coefficients of parity equations and distributed into decoding windows of same size. In order to increase convergence of the iterative decoding, the elements of at least one column of the systematic matrix associated with a decoding window are “0s”, except for a single element which is a “1”. A data variable is only involved in one equation of the window and not involved in solving the equations of other windows as long as the solving of equations of the window is not achieved.
    • 本发明涉及用于对数据信号进行编码和解码的代码。 包括数据变量的信号被编码成包括数据变量和奇偶变量的信号。 编码和解码操作基于由系统矩阵和奇偶校验矩阵组成的奇偶校验矩阵,并且具有对应于奇偶校验方程的系数的行并分布到相同大小的解码窗口中。 为了增加迭代解码的收敛,除了作为“1”的单个元素之外,与解码窗口相关联的系统矩阵的至少一列的元素是“0”。 数据变量只涉及窗口的一个方程,只要求解窗口的方程就不能解决其他窗口的方程。