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    • 1. 发明授权
    • Method for obtaining bit-specific reliability information
    • 获取比特特定可靠性信息的方法
    • US5790595A
    • 1998-08-04
    • US523699
    • 1995-09-05
    • Marcus BenthinKarl-Dirk Kammeyer
    • Marcus BenthinKarl-Dirk Kammeyer
    • G06F11/10H03M13/23H04L1/00H04L1/20H04L27/00
    • H04L1/20
    • In a method for demodulation of multistage-modulated data, correspondence variables (decision variables) are determined from the comparison of the received signal with stored signals, and these correspondence variables are converted into a posteriori symbol probabilities. The received signal represents a symbol which in turn represents a data group. The a posteriori symbol probabilities are now accounted for in turn such that one individual probability information item is produced for each bit of a data group, which information indicates the probability of a relevant bit being +1. Reliability values are determined from these bit-specific probabilities, and these reliability values are output, together with the bits, as soft bits.
    • 在解调多级调制数据的方法中,根据接收信号与存储信号的比较来确定对应变量(决定变量),并将这些对应变量转换成后验符号概率。 接收到的信号表示一个符号,它又表示一个数据组。 后验符号概率现在依次被考虑,使得针对数据组的每个位产生一个个体概率信息项,该信息指示相关比特为+1的概率。 从这些位特定概率确定可靠性值,并将这些可靠性值与位一起作为软比特输出。
    • 2. 发明授权
    • Method for demodulating a carrier wave modulated by a digital symbol sequence
    • 用于解调由数字符号序列调制的载波的方法
    • US06603824B1
    • 2003-08-05
    • US09673066
    • 2000-11-30
    • Kalman CinklerKarl-Dirk Kammeyer
    • Kalman CinklerKarl-Dirk Kammeyer
    • H04L2706
    • H04L25/069H04L27/2332
    • A method for demodulating a carrier wave that is modulated using a digital symbol sequence and that is transmitted over a noise-impacted channel, the ideal edge shapes of possible transitions between two symbols being known and stored in memory as reference edges, and a received edge being scanned and digitalized using a scanning frequency that is a multiple of the frequency of the symbol sequence. In particular, for detecting a received and scanned edge, all scanning values are used for calculating Euclidean distances from at least two reference edges, and the reference edge associated with the lowest Euclidean distance is selected. A Viterbi algorithm is applied to a sequence of estimated edges (rather than to an estimated symbol sequence) and the specific Euclidean distances between the edge received in one symbol period and the reference edges are considered as the costs of one trellis branch of the Viterbi algorithm.
    • 一种用于解调使用数字符号序列调制并且在受噪声影响的信道上发送的载波的方法,已知并存储在存储器中的两个符号之间的可能转换的理想边缘形状作为参考边缘,以及接收边缘 使用扫描频率进行扫描和数字化,扫描频率是符号序列的频率的倍数。 特别地,为了检测接收和扫描的边缘,所有扫描值被用于从至少两个参考边缘计算欧氏距离,并且选择与最低欧几里德距离相关联的参考边缘。 维特比算法被应用于估计边缘的序列(而不是估计的符号序列),并且在一个符号周期中接收的边缘与参考边缘之间的特定欧几里德距离被认为是维特比算法的一个网格分支的成本 。
    • 5. 发明授权
    • Converting and decoding receiver for digital data recorded in analog
form on magnetic tape
    • 转换和解码数字数据接收器,以模拟形式记录在磁带上
    • US4646173A
    • 1987-02-24
    • US744106
    • 1985-06-12
    • Karl-Dirk KammeyerAndreas Rungeler
    • Karl-Dirk KammeyerAndreas Rungeler
    • H04L7/00H04L7/02H04L27/38G11B5/09G11B5/00H04B1/10
    • H04L7/0029H04L27/38H04L7/0062
    • Multi-phase/multi-level modulation data signals recorded on tape after conversion from original digital data are first converted to complex digital signals in an analog-to-digital converter in which the sampling rate is set by a pulse generator frequency controlled by the received signals through a control loop which develops a frequency control voltage (A). The complex digital signals have their real and imaginary parts separately filtered by filters of variable propagation time, but of constant bandwidth to produce complex signals to which the nearest permissible output complex signal (reference signal) is selected by a decision circuit (17), for final conversion to binary signals by a decoder (19) and a shift register (20). Timing shift correction is based on comparison of the received signals and reference signals of the decision stage to produce a control signal (.phi.) which further processed by addition to its previous value to produce a timing correction signal (A) which is applied both to the pulse generator for the sampling frequency of the analog-to-digital converter and to control the propagation time of digital non-recursive filters (14, 15). The timing correction signal (A) control of the filter propagation time makes possible a rapid timing shift correction that overcomes tape jitter effects. It is not necessary to stabilize the received carrier frequency because the tap recording preserves the relation between the sampling/keying frequency and the carrier frequency.
    • 在从原始数字数据转换之后记录在磁带上的多相/多电平调制数据信号首先在模数转换器中转换为复数数字信号,其中采样速率由接收到的脉冲发生器频率 通过产生频率控制电压(A)的控制回路发出信号。 复数数字信号通过可变传播时间的滤波器分别对其实部和虚部进行滤波,但是具有恒定带宽以产生由决策电路(17)选择最接近的允许输出复信号(参考信号)的复数信号,为 由解码器(19)和移位寄存器(20)最终转换为二进制信号。 定时移位校正基于接收信号和判决级的参考信号的比较,以产生通过加上其先前值进一步处理的控制信号(phi),以产生定时校正信号(A),该定时校正信号(A)同时应用于 脉冲发生器,用于模拟 - 数字转换器的采样频率,并控制数字非递归滤波器(14,15)的传播时间。 定时校正信号(A)控制滤波器传播时间使得可以实现克服磁带抖动效应的快速定时偏移校正。 不需要稳定接收的载波频率,因为抽头记录保持采样/键控频率与载波频率之间的关系。
    • 7. 发明授权
    • Channel error correction apparatus and method
    • 通道纠错装置及方法
    • US06526532B1
    • 2003-02-25
    • US09434319
    • 1999-11-04
    • Kalman CinklerKarl Dirk Kammeyer
    • Kalman CinklerKarl Dirk Kammeyer
    • G01R3128
    • H04N19/63H04N19/65H04N19/89
    • To provide an approach to correction of residual errors in subband-based transmission schemes there is provided a channel error correction apparatus with a first synthesis unit for synthesizing a preliminary output signal from subband signals received via a transmission channel. A subband correcting is achieved through a subband reanalysis unit analyzing the preliminary output signal through subband filtering without downsampling, an error estimation unit estimating errors in subband reanalysis output signals using subband specific error patterns, and an error compensation unit correcting the subband signals using error estimation results. A second synthesis unit then synthesizes a final output signal from output signals of the error compensation unit.
    • 为了提供基于子带的传输方案中的残余误差校正方法,提供了一种具有第一合成单元的信道纠错装置,用于从经由传输信道接收的子带信号合成初步输出信号。 通过子带再分析单元通过子带滤波分析初级输出信号而不进行下采样来实现子带校正,误差估计单元使用子带特定误差模式估计子带再分析输出信号中的误差,以及使用误差估计校正子带信号的误差补偿单元 结果。 然后,第二合成单元从误差补偿单元的输出信号合成最终的输出信号。