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    • 5. 发明授权
    • Method and apparatus for obtaining coefficients of a fractionally-spaced equalizer
    • 用于获得分数间隔均衡器的系数的方法和装置
    • US08433965B2
    • 2013-04-30
    • US12880740
    • 2010-09-13
    • Marc Feller
    • Marc Feller
    • G06F11/00H03M13/00
    • G11B20/10009G11B20/10037G11B20/10046G11B20/10222G11B20/10231G11B20/10379G11B2220/20G11B2220/90H03M13/39H03M13/41
    • A digital data recovery system for converting a suboptimal signal into a converted signal that closely approximates an original signal includes a first data filter, a first interpolator and a second interpolator. The first data filter filters the suboptimal signal to generate a first filtered signal. The first interpolator receives the first filtered signal and generates a first interpolated signal. Substantially concurrently, the second interpolator receives the suboptimal signal and generates a second interpolated signal. The digital data recovery system may further comprise a second data filter that receives the second interpolated signal and generates a second filtered signal. Further, the first data filter can include a set of first coefficients and the second data filter can include a set of second coefficients. Moreover, the second coefficients can be updated and subsequently transformed in order to update the first coefficients.
    • 用于将次最佳信号转换为接近原始信号的转换信号的数字数据恢复系统包括第一数据滤波器,第一内插器和第二内插器。 第一数据滤波器滤除次优信号以产生第一滤波信号。 第一内插器接收第一滤波信号并产生第一内插信号。 基本同时,第二内插器接收次优信号并产生第二内插信号。 数字数据恢复系统还可以包括接收第二内插信号并产生第二滤波信号的第二数据滤波器。 此外,第一数据滤波器可以包括一组第一系数,并且第二数据滤波器可以包括一组第二系数。 此外,可以更新第二系数并随后变换以更新第一系数。
    • 7. 发明申请
    • METHOD AND APPARATUS FOR OBTAINING COEFFICIENTS OF A FRACTIONALLY-SPACED EQUALIZER
    • 用于获取均匀分布平均分子系数的方法和装置
    • US20120066561A1
    • 2012-03-15
    • US12880740
    • 2010-09-13
    • MARC FELLER
    • MARC FELLER
    • H03M13/00G06F11/07
    • G11B20/10009G11B20/10037G11B20/10046G11B20/10222G11B20/10231G11B20/10379G11B2220/20G11B2220/90H03M13/39H03M13/41
    • A digital data recovery system (14) for converting a suboptimal signal (18) into a converted signal (20) that closely approximates an original signal (16) includes a first data filter (22), a first interpolator (26) and a second interpolator (36). The first data filter (22) filters the suboptimal signal (18) to generate a first filtered signal (48). The first interpolator (26) receives the first filtered signal (48) and generates a first interpolated signal (52). Substantially concurrently, the second interpolator (36) receives the suboptimal signal (18) and generates a second interpolated signal (64). The digital data recovery system (14) may further comprise a second data filter (38) that receives the second interpolated signal (64) and generates a second filtered signal (66). Further, the first data filter (22) can include a set of first coefficients (50) and the second data filter (38) can include a set of second coefficients (68). Moreover, the second coefficients (68) can be updated and subsequently transformed in order to update the first coefficients (50).
    • 用于将次最佳信号(18)转换为紧密接近原始信号(16)的转换信号(20)的数字数据恢复系统(14)包括第一数据滤波器(22),第一内插器(26)和第二数字滤波器 内插器(36)。 第一数据滤波器(22)对次优信号(18)进行滤波以产生第一滤波信号(48)。 第一内插器(26)接收第一滤波信号(48)并产生第一内插信号(52)。 基本上同时地,第二内插器(36)接收次优信号(18)并产生第二内插信号(64)。 数字数据恢复系统(14)还可以包括接收第二内插信号(64)并产生第二滤波信号(66)的第二数据滤波器(38)。 此外,第一数据滤波器(22)可以包括一组第一系数(50),并且第二数据滤波器(38)可以包括一组第二系数(68)。 此外,可以更新第二系数(68)并随后变换以更新第一系数(50)。
    • 8. 发明申请
    • DATA DEPENDENT NPML DETECTION AND SYSTEMS THEREOF
    • 数据依赖性NPML检测及其系统
    • US20110246864A1
    • 2011-10-06
    • US12750350
    • 2010-03-30
    • Evangelos S. EleftheriouRobert A. HutchinsSedat Oelcer
    • Evangelos S. EleftheriouRobert A. HutchinsSedat Oelcer
    • G06F11/07
    • G11B20/10009G11B20/10046G11B20/10379G11B20/10509G11B2220/2516
    • According to one embodiment, a data detection system includes a coefficient-and-variance engine for selecting which infinite impulse response (IIR) filter and prediction error variance to process and store at any time, and a maximum-likelihood sequence detector. The coefficient-and-variance engine comprises a filter bank storing a plurality of IIR filters that represent a plurality of data-dependent noise whitening or noise prediction filters; a least-mean square (LMS) engine for adapting each IIR filter to actual noise conditions: a variance hank storing a plurality of prediction error variance values; and a data-dependent prediction error variance computation unit which updates the plurality of prediction error variance values. The maximum-likelihood sequence detector includes a metric computation unit that employs the plurality of IIR filters in the filter bank and the plurality of prediction error variances in the variance bank to adaptively compute detector branch metrics. Other systems and methods are also described in other embodiments.
    • 根据一个实施例,数据检测系统包括用于选择在任何时间处理和存储的无限脉冲响应(IIR)滤波器和预测误差方差的系数和方差引擎和最大似然序列检测器。 系数和方差引擎包括存储多个表示多个数据相关噪声白化或噪声预测滤波器的IIR滤波器的滤波器组; 用于使每个IIR滤波器适应于实际噪声条件的最小均方(LMS)引擎:存储多个预测误差方差值的方差汉克; 以及数据相关预测误差方差计算单元,其更新所述多个预测误差方差值。 最大似然序列检测器包括在滤波器组中采用多个IIR滤波器的度量计算单元,并且方差库中的多个预测误差方差自适应地计算检测器分支度量。 其他系统和方法也在其他实施例中描述。
    • 9. 发明申请
    • OPTICAL DISC VERIFICATION METHOD AND OPTICAL DISC MEDIUM
    • 光盘验证方法和光盘介质
    • US20090207705A1
    • 2009-08-20
    • US12369870
    • 2009-02-12
    • Shigeru FURUMIYAAtsushi NAKAMURA
    • Shigeru FURUMIYAAtsushi NAKAMURA
    • G11B20/10
    • G11B7/00458G11B7/00736G11B7/268G11B20/10009G11B20/10314G11B20/10379G11B2020/1099G11B2220/218G11B2220/2541
    • An optical disc verification method according to the present invention includes the steps of: writing data on first, second and third radial locations on an optical disc at a writing speed V1 and reading the data written there, thereby measuring read signal quality index values A, B and C, where the second radial location is inside of the first radial location and the third radial location is inside of the second radial location; writing data on the first and second radial locations at a writing speed V2, which is higher than V1, and reading the data written there, thereby measuring read signal quality index values D and E; and correcting the signal quality index value C with the difference between the signal quality index values B and E, thereby calculating a signal quality index value F that would be obtained if data is written on, and then read from, the third radial location at the speed V2.
    • 根据本发明的光盘验证方法包括以下步骤:以写入速度V1在光盘上的第一,第二和第三径向位置上写入数据,并读取写在其上的数据,从而测量读取信号质量指数值A, B和C,其中第二径向位置在第一径向位置内,第三径向位置在第二径向位置内; 以高于V1的写入速度V2在第一和第二径向位置上写入数据,并读取写入的数据,从而测量读取信号质量指标值D和E; 并且用信号质量指标值B和E之间的差校正信号质量指标值C,由此计算如果数据被写入的第三径向位置上的数据被读取,然后读取,则获得的信号质量指标值F 速度V2。