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    • 9. 发明授权
    • Audio encoder utilizing bandwidth-limiting processing based on code amount characteristics
    • 音频编码器利用基于码量特性的带宽限制处理
    • US07343292B2
    • 2008-03-11
    • US10399101
    • 2001-10-11
    • Yuichiro TakamizawaToshiyuki Nomura
    • Yuichiro TakamizawaToshiyuki Nomura
    • G10L19/00G10L21/00
    • G10L19/0212G10L19/002G10L19/0204
    • A mapping transform unit subjects input audio signals to a mapping transform and generates frequency region signals that take frequency as a variable; a code amount designation unit supplies a preset coding bit rate as a code amount output; a frequency region signal compression encoder, based on the code amount, subjects input frequency region signals to a compression encoding process and generates a bitstream; and a bandwidth-limiting unit executes a bandwidth-limiting processing in which a part of the frequency zone covered by frequency region signals is allotted to an attenuation frequency zone, and in which the value of the frequency region signal is multiplied by an attenuation coefficient having a value less than 1 in the attenuation frequency zone to attenuate the frequency region signal in the attenuation frequency zone, and supplies the frequency region signals that have undergone the bandwidth-limiting processing to the frequency region signal compression encoder.
    • 输入变换单元对输入音频信号进行映射变换,生成将频率作为变量的频域信号; 代码量指定单元将预设编码比特率提供为代码量输出; 频率区域信号压缩编码器基于代码量,将输入频率区域信号转化为压缩编码处理并生成比特流; 并且带宽限制单元执行带宽限制处理,其中由频域信号覆盖的频域的一部分被分配给衰减频带,并且其中频域信号的值乘以具有 在衰减频率区域中小于1的值,以衰减衰减频带中的频域信号,并将经过带宽限制处理的频域信号提供给频域信号压缩编码器。
    • 10. 发明授权
    • Hierarchical lossless encoding/decoding method, hierarchical lossless encoding method, hierarchical lossless decoding method, its apparatus and program
    • 分级无损编码/解码方法,分层无损编码方法,分级无损解码方法,其装置和程序
    • US07454354B2
    • 2008-11-18
    • US10478905
    • 2003-03-24
    • Toshiyuki NomuraYuichiro Takamizawa
    • Toshiyuki NomuraYuichiro Takamizawa
    • G01L21/04G01L19/14
    • G10L19/0017
    • A hierarchical lossless encoding and decoding technology for digital signals such as of music data, audio data, or the like. A lossless reproduced signal is made identical to an input signal even when the processing accuracy in an encoding apparatus and the processing accuracy in a decoding apparatus are different from each other. the encoding apparatus transmits low-bit-rate encoded data produced by encoding an input signal, lossless encoded data produced by effecting lossless encoding on a differential signal between a low-bit-rate decoded signal decoded from the low-bit-rate encoded data and the input signal, and corrective information extracted from the low-bit-rate decoded signal to respective input terminals of the decoding apparatus. A low-bit-rate decoder decodes the low-bit-rate encoded data. A lossless decoder decodes the differential signal. A corrector corrects the low-bit-rate decoded signal based on the corrective information. An adder adds the differential signal and the corrected low-bit-rate decoded signal into a lossless reproduced signal.
    • 用于诸如音乐数据,音频数据等的数字信号的分级无损编码和解码技术。 即使当编码装置中的处理精度和解码装置中的处理精度彼此不同时,无损复制信号也与输入信号相同。 编码装置发送通过对输入信号进行编码而产生的低比特率编码数据,通过对从低比特率编码数据解码的低比特率解码信号和差分信号之间的差分信号进行无损编码而产生的无损编码数据和 输入信号和从低比特率解码信号提取的解码信息到解码装置的各个输入端。 低比特率解码器解码低比特率编码数据。 无损解码器解码差分信号。 校正器基于校正信息来校正低比特率解码信号。 加法器将差分信号和校正的低比特率解码信号加到无损再现信号中。