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    • 1. 发明申请
    • DIGITAL SIGNAL REPRODUCING APPARATUS
    • 数字信号再现设备
    • US20090257334A1
    • 2009-10-15
    • US11995634
    • 2006-07-20
    • Youichi OguraTatsushi HirakiYorikazu Takao
    • Youichi OguraTatsushi HirakiYorikazu Takao
    • G11B27/30H03M1/12
    • G11B20/10009G11B20/10046G11B20/10055G11B20/10083G11B20/10101G11B20/10111G11B20/10222G11B20/1403G11B2020/1287G11B2220/2562G11B2220/2575
    • A digital signal reproducing apparatus includes an analog to digital converter for sampling and quantizing a signal read from an optical recording medium in accordance with a reproduced clock having a frequency which is one-half of a channel bit frequency and outputting an obtained digital RF signal, an offset compensation circuit for reducing an offset component in an amplitude direction from the digital RF signal, and a simplified interpolation filter for reconstructing a signal indicating a predetermined pattern recorded in the optical recording medium from the output signal of the offset compensation circuit and outputting the reconstructed signal. A control operation is performed to reduce the magnitudes of respective values shown by first phase error information on a section with the predetermined pattern and by second phase error information on a section other than the section with the predetermined pattern.
    • 一种数字信号再生装置,具有模拟数字转换器,用于根据具有频率为通道位频率的二分之一的频率的再生时钟对从光记录介质读取的信号进行采样和量化,并输出所获得的数字RF信号, 偏移补偿电路,用于减少来自数字RF信号的振幅方向上的偏移分量;以及简化内插滤波器,用于根据偏移补偿电路的输出信号重建指示记录在光学记录介质中的预定模式的信号,并输出 重建信号。 执行控制操作以减小具有预定模式的部分上的第一相位误差信息所示的各个值的大小以及除了具有预定模式的部分之外的部分的第二相位误差信息。
    • 2. 发明授权
    • Digital signal reproducing apparatus
    • 数字信号再现装置
    • US07852728B2
    • 2010-12-14
    • US11995634
    • 2006-07-20
    • Youichi OguraTatsushi HirakiYorikazu Takao
    • Youichi OguraTatsushi HirakiYorikazu Takao
    • G11B7/00
    • G11B20/10009G11B20/10046G11B20/10055G11B20/10083G11B20/10101G11B20/10111G11B20/10222G11B20/1403G11B2020/1287G11B2220/2562G11B2220/2575
    • A digital signal reproducing apparatus includes an analog to digital converter for sampling and quantizing a signal read from an optical recording medium in accordance with a reproduced clock having a frequency which is one-half of a channel bit frequency and outputting an obtained digital RF signal, an offset compensation circuit for reducing an offset component in an amplitude direction from the digital RF signal, and a simplified interpolation filter for reconstructing a signal indicating a predetermined pattern recorded in the optical recording medium from the output signal of the offset compensation circuit and outputting the reconstructed signal. A control operation is performed to reduce the magnitudes of respective values shown by first phase error information on a section with the predetermined pattern and by second phase error information on a section other than the section with the predetermined pattern.
    • 一种数字信号再生装置,具有模拟数字转换器,用于根据具有频率为通道位频率的二分之一的频率的再生时钟对从光记录介质读取的信号进行采样和量化,并输出所获得的数字RF信号, 偏移补偿电路,用于减少来自数字RF信号的振幅方向上的偏移分量;以及简化内插滤波器,用于根据偏移补偿电路的输出信号重建指示记录在光学记录介质中的预定模式的信号,并输出 重建信号。 执行控制操作以减小具有预定模式的部分上的第一相位误差信息所示的各个值的大小以及除了具有预定模式的部分之外的部分的第二相位误差信息。
    • 3. 发明申请
    • Recording position deviation correction apparatus, recording position deviation correction method, and recording position correction program
    • 记录位置偏差校正装置,记录位置偏差校正方法和记录位置校正程序
    • US20070109933A1
    • 2007-05-17
    • US10583372
    • 2004-12-10
    • Yorikazu TakaoTatsushi Hiraki
    • Yorikazu TakaoTatsushi Hiraki
    • G11B19/00
    • G11B20/10G11B20/10009G11B27/24G11B2220/216
    • In the prior art recording position deviation correction apparatus, it was difficult to obtain the physical address position during performing an additional recording processing. So, a high reliability recording position deviation amount cannot be calculated, and the recording position deviation correction cannot be carried out correctly. The present invention adopts, as a calculating method for calculating the recording position deviation amount in the additional recording processing, one among (1) to perform an interpolation processing on the basis of the physical address position before performing an additional recording processing thereby to detect the physical address during performing the additional recording processing, and calculates the positional deviation amount using the detected physical address position, (2) to calculate the recording position deviation amount on the basis of the position deviation amount before performing the additional recording processing, and (3) to obtain the physical address position in a stationary state by making the laser power to be irradiated constant when obtaining the physical address in the recording processing, and calculate the recording position deviation amount using the obtained physical address position, and thereby realizes a high reliability recording position deviation correction.
    • 在现有技术的记录位置偏差校正装置中,在执行附加记录处理期间难以获得物理地址位置。 因此,不能计算高可靠性记录位置偏差量,并且不能正确地执行记录位置偏差校正。 本发明作为用于计算附加记录处理中的记录位置偏差量的计算方法,在(1)中,在执行附加记录处理之前,根据物理地址位置执行插值处理之一,从而检测 在执行附加记录处理期间的物理地址,并且使用检测到的物理地址位置来计算位置偏差量,(2)基于在执行附加记录处理之前的位置偏差量来计算记录位置偏差量,以及(3 )通过在获取记录处理中的物理地址时使激光功率恒定来获得静止状态的物理地址位置,并且使用获得的物理地址位置计算记录位置偏差量,从而实现高可靠性 记录位置偏差 修正。
    • 5. 发明授权
    • Optical disc reproduction apparatus
    • 光盘再现装置
    • US08411544B2
    • 2013-04-02
    • US13251874
    • 2011-10-03
    • Youichi OguraNoriyuki MasunariYorikazu Takao
    • Youichi OguraNoriyuki MasunariYorikazu Takao
    • G11B7/00
    • G11B20/10212
    • An instantaneous jitter information detection section detects, based on first and second digital values indicating different polarities relative to a predetermined reference value, an instantaneous gradient value corresponding to a difference value between the first and second digital values, and an instantaneous deviation value corresponding to a difference value between an intermediate value between the first and second digital values and the reference value. An information conversion section converts, based on an inversely proportional conversion table, the instantaneous gradient value to an inversely proportional value. An arithmetic section detects an instantaneous variance value by multiplying the instantaneous deviation value and the inversely proportional value together, and squaring a value obtained by the multiplication, and detects an integrated value by accumulating the instantaneous variance value. A standard deviation detection section detects a square root of a mean value of the integrated value as the absolute jitter value.
    • 瞬时抖动信息检测部分根据相对于预定参考值指示不同极性的第一和第二数字值检测对应于第一和第二数字值之间的差值的瞬时梯度值和对应于 第一和第二数字值之间的中间值与参考值之间的差值。 信息转换部分将基于逆比例转换表将瞬时梯度值转换为反比例值。 算术部分通过将瞬时偏差值和反比例值相乘并检测通过乘法获得的值的平方来检测瞬时方差值,并且通过累加瞬时方差值来检测积分值。 标准差检测部检测积分值的平均值的平方根作为绝对抖动值。
    • 6. 发明申请
    • OPTICAL DISC REPRODUCTION APPARATUS
    • 光盘再现设备
    • US20120026850A1
    • 2012-02-02
    • US13251874
    • 2011-10-03
    • Youichi OguraNoriyuki MasunariYorikazu Takao
    • Youichi OguraNoriyuki MasunariYorikazu Takao
    • G11B20/18
    • G11B20/10212
    • An instantaneous jitter information detection section detects, based on first and second digital values indicating different polarities relative to a predetermined reference value, an instantaneous gradient value corresponding to a difference value between the first and second digital values, and an instantaneous deviation value corresponding to a difference value between an intermediate value between the first and second digital values and the reference value. An information conversion section converts, based on an inversely proportional conversion table, the instantaneous gradient value to an inversely proportional value. An arithmetic section detects an instantaneous variance value by multiplying the instantaneous deviation value and the inversely proportional value together, and squaring a value obtained by the multiplication, and detects an integrated value by accumulating the instantaneous variance value. A standard deviation detection section detects a square root of a mean value of the integrated value as the absolute jitter value.
    • 瞬时抖动信息检测部分根据相对于预定参考值指示不同极性的第一和第二数字值检测对应于第一和第二数字值之间的差值的瞬时梯度值和对应于 第一和第二数字值之间的中间值与参考值之间的差值。 信息转换部分将基于逆比例转换表将瞬时梯度值转换为反比例值。 算术部分通过将瞬时偏差值和反比例值相乘并检测通过乘法获得的值的平方来检测瞬时方差值,并且通过累加瞬时方差值来检测积分值。 标准差检测部检测积分值的平均值的平方根作为绝对抖动值。