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    • 3. 发明授权
    • Optical read/write apparatus
    • 光读/写设备
    • US08817583B2
    • 2014-08-26
    • US13880359
    • 2012-08-31
    • Ryoji HiroseHarumitsu Miyashita
    • Ryoji HiroseHarumitsu Miyashita
    • G11B27/36G11B7/0045
    • G11B7/00458
    • An optical read/write apparatus according to an embodiment includes: an optical head unit (2a, 2b) which focuses a write light beam and a read light beam onto an optical storage medium (100) and which generates a signal based on the light beam that has been reflected from the optical storage medium; and a control section (6) which controls the optical head unit (2a, 2b) so that the optical head unit records a mark on the optical storage medium by irradiating the optical storage medium with the write light beam and reads the recorded mark on the optical storage medium with the read light beam. After having started to record the mark on the optical storage medium by irradiating the optical storage medium with the write light beam and before forming the recorded mark completely, the optical head unit (2a, 2b) reads the recorded mark on the optical storage medium with the read light beam.
    • 根据实施例的光学读/写装置包括:将写入光束和读取光束聚焦到光学存储介质(100)上并且基于光束产生信号的光学头单元(2a,2b) 已从光学存储介质反射出来; 以及控制部分(6),其控制光学头单元(2a,2b),使得光学头单元通过用光学光束照射光学存储介质来在光学存储介质上记录标记,并读取记录标记 具有读取光束的光学存储介质。 在通过用写入光束照射光学存储介质并且在完全形成记录标记之前开始在光学存储介质上记录标记之后,光学头单元(2a,2b)在光学存储介质上读取记录的标记, 读光束。
    • 4. 发明申请
    • OPTICAL READ/WRITE APPARATUS
    • 光读/写设备
    • US20140003211A1
    • 2014-01-02
    • US13880359
    • 2012-08-31
    • Ryoji HiroseHarumitsu Miyashita
    • Ryoji HiroseHarumitsu Miyashita
    • G11B7/0045
    • G11B7/00458
    • An optical read/write apparatus according to an embodiment includes: an optical head unit (2a, 2b) which focuses a write light beam and a read light beam onto an optical storage medium (100) and which generates a signal based on the light beam that has been reflected from the optical storage medium; and a control section (6) which controls the optical head unit (2a, 2b) so that the optical head unit records a mark on the optical storage medium by irradiating the optical storage medium with the write light beam and reads the recorded mark on the optical storage medium with the read light beam. After having started to record the mark on the optical storage medium by irradiating the optical storage medium with the write light beam and before forming the recorded mark completely, the optical head unit (2a, 2b) reads the recorded mark on the optical storage medium with the read light beam.
    • 根据实施例的光学读/写装置包括:将写入光束和读取光束聚焦到光学存储介质(100)上并且基于光束产生信号的光学头单元(2a,2b) 已从光学存储介质反射出来; 以及控制部分(6),其控制光学头单元(2a,2b),使得光学头单元通过用光学光束照射光学存储介质来在光学存储介质上记录标记,并读取记录标记 具有读取光束的光学存储介质。 在通过用写入光束照射光学存储介质并且在完全形成记录标记之前开始在光学存储介质上记录标记之后,光学头单元(2a,2b)在光学存储介质上读取记录的标记, 读光束。
    • 7. 发明申请
    • INFORMATION REPRODUCTION METHOD, INFORMATION RECORDING METHOD, AND INFORMATION RECORDING MEDIUM
    • 信息再现方法,信息记录方法和信息记录介质
    • US20120092974A1
    • 2012-04-19
    • US13378862
    • 2011-04-12
    • Isao KobayashiHarumitsu Miyashita
    • Isao KobayashiHarumitsu Miyashita
    • G11B7/005
    • G11B20/10009G11B7/0062G11B7/1267G11B20/10287G11B2220/2541G11B2220/2562
    • According to the present invention, a first error pattern caused by a shift of a bit relating to a recording mark or a space of a shortest length and a second error pattern caused by an edge shift of the recording mark are used. For each of a plurality of error patterns, a pattern shift obtained by normalizing a difference between a square of a Euclidean distance between the error pattern and a reproduction signal and a square of a Euclidean distance between a correct pattern and the reproduction signal, using a square of a Euclidean distance between the correct pattern and the error pattern is detected. Length and phase errors are calculated by a sum of, or a difference between, a first pattern shift amount obtained by normalization performed using the first error pattern and a second pattern shift amount obtained by normalization performed using the second error pattern.
    • 根据本发明,使用由与记录标记相关的位的移位引起的第一错误模式或由记录标记的边缘移位引起的最短长度的空间和第二错误模式。 对于多个误差图案中的每一个,通过使用以下方式归一化误差模式和再现信号之间的欧几里得距离的平方与欧氏距离的正方形之间的差异而获得的图案偏移, 检测正确模式与误差模式之间的欧氏距离的平方。 长度和相位误差通过使用第一误差图案进行的归一化所获得的第一图案偏移量和通过使用第二误差图案进行的归一化获得的第二图案偏移量之和或之差来计算。