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    • 3. 发明授权
    • Soft output decoder for convolutional codes
    • 用于卷积码的软输出解码器
    • US06901117B1
    • 2005-05-31
    • US09501922
    • 2000-02-10
    • Brian K. ClassonTerry M. Schaffner
    • Brian K. ClassonTerry M. Schaffner
    • H03M13/23H03M13/41H03M13/45H04D1/00
    • H03M13/3972H03M13/3723H03M13/3905
    • Decoding signals represented by a trellis of block length N divided into windows of length L includes a step of decoding a forward recursion from a point P that is before the beginning of a window up to the beginning of the window. P is chosen at a sufficient distance from the beginning of the window such that forward recursion determines a known state metric at the beginning of the window. A next step includes decoding the window using forward recursion from the known state at the beginning of the window up to the end of the window to define a set of known forward recursion state metrics which are stored. A next step includes decoding using backward recursion starting from a known state at the end of the window and moving backward. A next step includes calculating a soft output at each stage of the backward recursion using the stored forward recursion state metrics, and branch metrics at each stage, and outputting the soft output for that stage in a LIFO format.
    • 将由划分成长度L的窗口的块长度N的网格表示的信号解码包括从窗口开始直到窗口开始之前的点P解码向前递归的步骤。 P选择距离窗口开始的足够的距离,使得正向递归确定窗口开始处的已知状态度量。 下一个步骤包括使用从窗口的开始到窗口结束的已知状态的正向递归来解码窗口,以定义存储的一组已知的向前递归状态度量。 下一步包括使用从窗口末端的已知状态开始并向后移动的反向递归解码。 下一步包括使用存储的前向递归状态度量和每个阶段的分支度量来计算在逆向递归的每个阶段的软输出,并以LIFO格式输出该阶段的软输出。
    • 4. 发明授权
    • Method and apparatus for re-encoding decoded data
    • 用于重新编码解码数据的方法和装置
    • US6075824A
    • 2000-06-13
    • US905455
    • 1997-08-04
    • Theodore A. TrostTerry M. Schaffner
    • Theodore A. TrostTerry M. Schaffner
    • H03M13/23H03K9/00H03M13/27
    • H03M13/3961H03M13/3776
    • A re-encoded history data bits generator (101), in a communication system having a block of convolutionally encoded data bits that are interleaved into a matrix (200), selects, for each of the required number of re-encoded history data bits, a combination of data bits from a sequence of previously decoded data bits (410). The position of data bits in each combination is predetermined relative to the position of a data bit last shifted into in the sequence (410). The re-encoder encodes the combinations of the selected data bits thereby producing the re-encoded history data bits. The data bits of each combination are at consecutive positions in the sequence (410). The data bits of an encoded word constitute each row of the matrix (200).
    • 在具有交织到矩阵(200)中的卷积编码数据位块的通信系统中,重新编码的历史数据位发生器(101)针对每个所需数量的重新编码历史数据位选择, 来自先前解码的数据比特序列(410)的数据比特的组合。 每个组合中的数据位的位置相对于在序列(410)中最后移入的数据位的位置是预先确定的。 重新编码器对所选数据位的组合进行编码,从而产生重新编码的历史数据位。 每个组合的数据位在序列中的连续位置(410)。 编码字的数据位构成矩阵的每一行(200)。
    • 5. 发明授权
    • System and method for transmitting and detecting spread spectrum signals
    • 用于发射和检测扩频信号的系统和方法
    • US09088349B2
    • 2015-07-21
    • US11764597
    • 2007-06-18
    • Terry M. Schaffner
    • Terry M. Schaffner
    • H04B1/00H04B1/7183H04B1/69
    • H04B1/7183H04B2001/6912
    • This document discusses, among other things, a system and method of detecting wideband signals of bandwidth X within a communications system having a coherency time constant of T. A synchronization signal is generated as a function of a chirp signal that sweeps a portion of bandwidth X. The synchronization signal is transmitted and received as a wideband signal at a receiver. The receiver detects the synchronization signal within the wideband signal received at the receiver by generating a detection signal, correlating the received wideband signal with the detection signal and indicating when the synchronization signal is detected within the wideband signal. The detection signal is a complex conjugate of the synchronization signal.
    • 该文件尤其涉及一种在具有T的相干性时间常数T的通信系统内检测带宽X的宽带信号的系统和方法。产生同步信号作为扫描带宽X的一部分的啁啾信号的函数 同步信号作为宽带信号在接收机发送和接收。 接收机通过产生检测信号来检测在接收机接收的宽带信号内的同步信号,使接收的宽带信号与检测信号相关,并指示何时在宽带信号内检测同步信号。 检测信号是同步信号的复共轭。
    • 8. 发明申请
    • RF CHIRP RECEIVER SYNCHRONIZATION
    • RF CHIRP接收器同步
    • US20120307871A1
    • 2012-12-06
    • US13209744
    • 2011-08-15
    • Terry M. Schaffner
    • Terry M. Schaffner
    • H04B1/00
    • H04L27/103H04L27/0014H04L2027/0026H04L2027/0046H04L2027/0067
    • A radio frequency communication system includes a radio frequency transmitter having a chirp generator operable to transmit a first chirp signal, and transmit a second chirp signal that is circular shifted relative to the first chirp signal. A receiver receives the first chirp signal and the second chirp signal, such that the proportion of phase offset between the first and second chirp signals is proportional to the frequency offset of the received signals. The first and second chirp signals are despread, and the phase difference between the first and second chirp signals is used to determine a frequency offset of the received first and second chirp signals that is proportional to the phase difference between the first and second chirp signals.
    • 射频通信系统包括具有啁啾发生器的射频发射机,其可操作以发送第一啁啾信号,并发送相对于第一啁啾信号循环移位的第二啁啾信号。 接收器接收第一线性调频信号和第二啁啾信号,使得第一和第二线性调频脉冲信号之间的相位偏移的比例与接收信号的频率偏移成比例。 第一和第二线性调频脉冲信号被解扩展,并且第一和第二线性调频脉冲信号之间的相位差用于确定与第一和第二线性调频脉冲信号之间的相位差成比例的接收的第一和第二线性调频脉冲信号的频率偏移。
    • 9. 发明申请
    • System and method for transmitting and detecting spread spectrum signals
    • 用于发射和检测扩频信号的系统和方法
    • US20080310481A1
    • 2008-12-18
    • US11764597
    • 2007-06-18
    • Terry M. Schaffner
    • Terry M. Schaffner
    • H04B1/69
    • H04B1/7183H04B2001/6912
    • This document discusses, among other things, a system and method of detecting wideband signals of bandwidth X within a communications system having a coherency time constant of T. A synchronization signal is generated as a function of a chirp signal that sweeps a portion of bandwidth X. The synchronization signal is transmitted and a received as a wideband signal at a receiver. The receiver detects the synchronization signal within the wideband signal received at the receiver by generating a detection signal, correlating the received wideband signal with the detection signal and indicating when the synchronization signal is detected within the wideband signal. The detection signal is a complex conjugate of the synchronization signal.
    • 该文件尤其涉及一种在具有T的相干性时间常数T的通信系统内检测带宽X的宽带信号的系统和方法。产生同步信号作为扫描带宽X的一部分的啁啾信号的函数 在接收机发送同步信号并作为宽带信号接收。 接收机通过产生检测信号来检测在接收机接收的宽带信号内的同步信号,使接收的宽带信号与检测信号相关,并指示何时在宽带信号内检测同步信号。 检测信号是同步信号的复共轭。
    • 10. 发明申请
    • SYSTEM AND METHOD FOR OBTAINING FREQUENCY AND TIME SYNCHRONIZATION IN A WIDEBAND COMMUNICATION SYSTEM
    • 在宽带通信系统中获取频率和时间同步的系统和方法
    • US20080309543A1
    • 2008-12-18
    • US11764579
    • 2007-06-18
    • Terry M. Schaffner
    • Terry M. Schaffner
    • G01S13/00
    • H04B1/7183H04B1/71635H04B1/71637H04B2001/6912
    • This document discusses, among other things, a system and method of measuring and correcting for frequency offset in wideband signals of bandwidth X within a communications system. A synchronization signal is generated and transmitted, wherein generating a synchronization signal includes generating a first chirp signal that sweeps a portion of bandwidth X and generating a second chirp signal to sweep approximately the same portion of bandwidth X but in the opposite direction. The synchronization signal is received at a receiver. The receiver then detects a first offset as a function of the first chirp signal and a second offset as a function of the second chirp signal and calculates the frequency offset as a function of the first and second offsets.
    • 本文件还讨论了通信系统中的带宽X的宽带信号中的频率偏移测量和校正的系统和方法。 产生并发送同步信号,其中产生同步信号包括产生扫描带宽X的一部分并产生第二线性调频信号以扫描大致相同的带宽部分X但沿相反方向扫描的第一线性调频信号。 在接收机处接收同步信号。 然后,接收机检测作为第一线性调频信号的函数的第一偏移和作为第二线性调频脉冲信号的函数的第二偏移,并且计算作为第一和第二偏移的函数的频率偏移。