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    • 4. 发明授权
    • Signal reproducing method and device, signal recording method and device, and code sequence generating method and device
    • 信号再现方法和装置,信号记录方法和装置,以及码序列生成方法和装置
    • US07372375B2
    • 2008-05-13
    • US11803363
    • 2007-05-14
    • Kyoya TsutsuiNaoya HanedaKenzo Akagiri
    • Kyoya TsutsuiNaoya HanedaKenzo Akagiri
    • H03M7/00
    • G11B20/00086G11B2220/2562
    • It is intended to remove a risk of illegal high quality restoration while enabling trial viewing of contents such as music, to make it possible to reproduce contents with high quality by acquiring a relatively small amount of data, and to make it possible to implement hardware at a lower cost. To generate trial listening data containing dummy data, a pseudo random number R is generated first. A remainder r of R divided by 128 is calculated. The remainder r is coded and incorporated into high sound quality restoration data. A bandwidth limitation region of trial listening data is replaced by dummy data starting from its rth bit. As a result, the head position of the dummy data in the trial listening data varies frame by frame, whereby the safety of the trial listening data can be increased.
    • 旨在消除非法高质量恢复的风险,同时能够对诸如音乐的内容进行试用,从而可以通过获取相对少量的数据来高质量地再现内容,并且使得可以在 成本较低。 为了生成包含伪数据的试听数据,首先生成伪随机数R. 计算R的余数r除以128。 其余的r被编码并被并入高音质恢复数据。 试听数据的带宽限制区域由从其第r位开始的虚拟数据替换。 结果,试听数据中的伪数据的头位置逐帧变化,从而可以提高试听数据的安全性。
    • 9. 发明授权
    • Coding apparatus for digital signal
    • 数字信号编码装置
    • US5490170A
    • 1996-02-06
    • US159122
    • 1993-11-30
    • Kenzo AkagiriKyoya Tsutsui
    • Kenzo AkagiriKyoya Tsutsui
    • G10L19/002G10L19/02G10L19/022H04B1/66H04B14/04
    • G10L19/0208G10L19/002G10L19/0204G10L19/022H04B1/665
    • In a coding apparatus for a digital signal adapted for implementing, every variable length block, floating processing to an input digital signal by using a block floating processing circuit thereafter to orthogonally transform signal components which have undergone such processing by using orthogonal transform circuits (e.g., DCT circuits), the block floating processing circuit is constructed so as to determine the length of a variable length block and a floating coefficient of the block floating processing on the basis of the same index, e.g., a maximum absolute value in that block. Thus, a quantity subject to processing can be reduced. In addition, there may be employed such a configuration to divide, every critical bands, spectrum signals on the frequency base from DCT (Discrete Cosine Transform) circuits to determine, every respective critical bands, allowed noises in which the masking is taken into consideration to compare these allowed noises and a minimum audible curve from a minimum audible curve generator at a comparator. When the minimum audible curve is grater than an allowed noise at that time, this minimum audible curve is considered as an allowed noise to divide the critical band into smaller bands to carry out bit allocation every respective smaller bands, and to rase or set a flag. Thus, an accurate allowed noise level can be provided without increasing auxiliary information.
    • 在适于实现每个可变长度块的数字信号的编码装置中,通过使用块浮动处理电路对输入数字信号进行浮动处理,此后通过使用正交变换电路(例如,等等)对经过这种处理的信号分量进行正交变换, DCT电路),块浮动处理电路被构造成基于相同索引(例如,该块中的最大绝对值)确定可变长度块的长度和块浮动处理的浮动系数。 因此,可以减少处理量。 此外,可以采用这样的配置来从DCT(离散余弦变换)电路在频域上划分每个临界频带的频谱信号,以确定每个相应临界频带允许的噪声,其中考虑掩蔽 比较这些允许的噪声和比较器中最小可听曲线发生器的最小可听曲线。 当最小可听曲线比当时允许的噪声更大时,该最小可听曲线被认为是允许的噪声,以将临界频带划分成更小的频带,以对每个较小的频带进行位分配,并且设定一个标志 。 因此,可以提供准确的允许噪声水平而不增加辅助信息。