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    • 1. 发明授权
    • Scalable decoding apparatus and scalable encoding apparatus
    • 可扩展解码装置和可扩展编码装置
    • US07983904B2
    • 2011-07-19
    • US11718437
    • 2005-11-02
    • Hiroyuki EharaMasahiro OshikiriKoji Yoshida
    • Hiroyuki EharaMasahiro OshikiriKoji Yoshida
    • G10L19/14
    • G10L21/038G10L19/24
    • A scalable decoding apparatus capable of providing decoded audio signals of high quality having less degradation of a high frequency spectrum even when decoding audio signals by generating the high frequency spectrum by use of a low frequency spectrum. In the apparatus, an amplitude adjusting part uses different adjustment coefficients in accordance with the characteristic of first layer spectrum information to adjust the amplitude of a first layer decoded signal spectrum, and then outputs the amplitude-adjusted first layer decoded signal spectrum to a pseudo-spectrum generating part. Using amplitude-adjusted first layer decoded signal spectrum received from the amplitude adjusting part, the pseudo-spectrum generating part generates and outputs a pseudo-spectrum of high frequencies to a scaling part. The scaling part scales the spectrum received from the pseudo-spectrum generating part and then outputs it to an adder.
    • 即使在通过使用低频谱生成高频谱来解码音频信号的同时,也能够提供具有较低的高频谱劣化的高质量解码音频信号的可扩展解码装置。 在该装置中,振幅调整部根据第一层频谱信息的特性,使用不同的调整系数来调整第一层解码信号频谱的振幅,然后将调幅后的第一层解码信号频谱输出到伪 - 频谱产生部分。 使用从振幅调整部接收到的经调幅的第一层解码信号频谱,伪频谱生成部生成并输出高频的伪频谱到缩放部。 缩放部分缩放从伪频谱生成部分接收到的频谱,然后将其输出到加法器。
    • 2. 发明授权
    • Scalable encoding device, scalable decoding device, and method thereof
    • 可扩展编码装置,可扩展解码装置及其方法
    • US07904292B2
    • 2011-03-08
    • US11576264
    • 2005-09-28
    • Michiyo GotoKoji YoshidaHiroyuki EharaMasahiro Oshikiri
    • Michiyo GotoKoji YoshidaHiroyuki EharaMasahiro Oshikiri
    • G10L19/12G10L19/00
    • G10L19/008G10L19/24
    • A scalable encoding device for realizing scalable encoding by CELP encoding of a stereo sound signal and improving the encoding efficiency. In this device, an adder and a multiplier obtain an average of a first channel signal CH1 and a second channel signal CH2 as a monaural signal M. A CELP encoder for a monaural signal subjects the monaural signal M to CELP encoding, outputs the obtained encoded parameter to outside, and outputs a synthesized monaural signal M′ synthesized by using the encoded parameter to a first channel signal encoder. By using the synthesized monaural signal M′ and the second channel signal CH2, the first channel signal encoder subjects the first channel signal CH1 to CELP encoding to minimize the sum of the encoding distortion of the first channel signal CH1 and the encoding distortion of the second channel signal CH2.
    • 一种可扩展编码装置,用于通过立体声信号的CELP编码实现可分级编码,并提高编码效率。 在该装置中,加法器和乘法器获得第一信道信号CH1和第二信道信号CH2的平均值作为单声道信号M.用于单声道信号的CELP编码器对单声道信号M进行CELP编码,将获得的编码 参数到外部,并且将通过使用编码参数合成的合成单声道信号M'输出到第一声道信号编码器。 通过使用合成单声道信号M'和第二声道信号CH2,第一声道信号编码器使第一声道信号CH1至CELP编码器使第一声道信号CH1的编码失真和第二声道信号CH1的编码失真之和最小化 通道信号CH2。
    • 3. 发明申请
    • Scalable Encoding Device, Scalable Decoding Device, and Method Thereof
    • 可扩展编码设备,可扩展解码设备及其方法
    • US20080255833A1
    • 2008-10-16
    • US11576264
    • 2005-09-28
    • Michiyo GotoKoji YoshidaHiroyuki EharaMasahiro Oshikiri
    • Michiyo GotoKoji YoshidaHiroyuki EharaMasahiro Oshikiri
    • G10L19/12
    • G10L19/008G10L19/24
    • A scalable encoding device for realizing scalable encoding by CELP encoding of a stereo sound signal and improving the encoding efficiency. In this device, an adder and a multiplier obtain an average of a first channel signal CH1 and a second channel signal CH2 as a monaural signal M. A CELP encoder for a monaural signal subjects the monaural signal M to CELP encoding, outputs the obtained encoded parameter to outside, and outputs a synthesized monaural signal M′ synthesized by using the encoded parameter to a first channel signal encoder. By using the synthesized monaural signal M′ and the second channel signal CH2, the first channel signal encoder subjects the first channel signal CH1 to CELP encoding to minimize the sum of the encoding distortion of the first channel signal CH1 and the encoding distortion of the second channel signal CH2.
    • 一种可扩展编码装置,用于通过立体声信号的CELP编码实现可分级编码,并提高编码效率。 在该装置中,加法器和乘法器获得第一信道信号CH 1和第二信道CH 2的平均值作为单声道信号M.用于单声道信号的CELP编码器使单声道信号M进行CELP编码, 获得编码参数到外部,并且将通过使用编码参数合成的合成单声道信号M'输出到第一声道信号编码器。 通过使用合成单声道信号M'和第二声道信号CH 2,第一声道信号编码器对第一声道信号CH 1进行CELP编码,使第一声道信号CH 1的编码失真和编码失真的和最小化 的第二信道信号CH 2。
    • 4. 发明申请
    • Scalable Decoding Apparatus and Scalable Encoding Apparatus
    • 可扩展解码装置和可扩展编码装置
    • US20080126082A1
    • 2008-05-29
    • US11718437
    • 2005-11-02
    • Hiroyuki EharaMasahiro OshikiriKoji Yoshida
    • Hiroyuki EharaMasahiro OshikiriKoji Yoshida
    • G10L19/00
    • G10L21/038G10L19/24
    • A scalable decoding apparatus capable of providing decoded audio signals of high quality having less degradation of a high frequency spectrum even when decoding audio signals by generating the high frequency spectrum by use of a low frequency spectrum. In the apparatus, an amplitude adjusting part (1211) uses different adjustment coefficients in accordance with the characteristic of first layer spectrum information to adjust the amplitude of a first layer decoded signal spectrum, and then outputs the amplitude-adjusted first layer decoded signal spectrum to a pseudo-spectrum generating part (1012). Using amplitude-adjusted first layer decoded signal spectrum received from the amplitude adjusting part (1211), the pseudo-spectrum generating part (1012) generates and outputs a pseudo-spectrum of high frequencies to a scaling part (1013). The scaling part (1013) scales the spectrum received from the pseudo-spectrum generating part (1012) and then outputs it to an adder (B).
    • 即使在通过使用低频谱生成高频谱来解码音频信号的同时,也能够提供具有较低的高频谱劣化的高质量解码音频信号的可扩展解码装置。 在该装置中,振幅调整部(1211)根据第一层频谱信息的特性使用不同的调整系数来调整第一层解码信号频谱的振幅,然后将经调幅的第一层解码信号频谱输出到 伪频谱生成部(1012)。 使用从振幅调整部(1211)接收到的经调幅的第一层解码信号频谱,伪频谱生成部(1012)生成并将高频的伪频谱输出到缩放部(1013)。 缩放部分(1013)缩放从伪频谱生成部分(1012)接收的频谱,然后将其输出到加法器(B)。
    • 5. 发明授权
    • Encoder, decoder, encoding method, and decoding method
    • 编码器,解码器,编码方法和解码方法
    • US08135583B2
    • 2012-03-13
    • US12819690
    • 2010-06-21
    • Masahiro OshikiriHiroyuki EharaKoji Yoshida
    • Masahiro OshikiriHiroyuki EharaKoji Yoshida
    • G10L19/02
    • G10L21/038
    • An encoder, decoder, encoding method, and decoding method enabling acquisition of high-quality decoded signal in scalable encoding of an original signal in first and second layers even if the second or upper layer section performs low bit-rate encoding. In the encoder, a spectrum residue shape codebook stores candidates of spectrum residue shape vectors, a spectrum residue gain codebook stores candidates of spectrum residue gains, and a spectrum residue shape vector and a spectrum residue gain are sequentially outputted from the candidates according to the instruction from a search section. A multiplier multiplies a candidate of the spectrum residue shape vector by a candidate of the spectrum residue gain and outputs the result to a filtering section. The filtering section performs filtering by using a pitch filter internal state set by a filter state setting section, a lag T outputted by a lag setting section, and a spectrum residue shape vector which has undergone gain adjustment.
    • 即使第二或上层部分执行低比特率编码,编码器,解码器,编码方法和解码方法能够在第一和第二层中的原始信号的可分级编码中获取高质量解码信号。 在编码器中,频谱残差形状码本存储频谱残差形状向量的候选,频谱残差增益码本存储频谱残差增益的候选,频谱残差形状矢量和频谱残差增益从根据指令的候选顺序输出 从搜索部分。 乘法器将频谱残差形状矢量的候选乘以频谱残差增益的候选,并将结果输出到滤波部分。 滤波部分通过使用由滤波器状态设置部分设置的音调滤波器内部状态,由滞后设置部分输出的延迟T和经过增益调整的频谱残差形状矢量进行滤波。
    • 6. 发明授权
    • Encoder, decoder, encoding method, and decoding method
    • 编码器,解码器,编码方法和解码方法
    • US07769584B2
    • 2010-08-03
    • US11718452
    • 2005-11-02
    • Masahiro OshikiriHiroyuki EharaKoji Yoshida
    • Masahiro OshikiriHiroyuki EharaKoji Yoshida
    • G10L19/02
    • G10L21/038
    • An encoder, decoder, encoding method, and decoding method enabling acquisition of high-quality decoded signal in scalable encoding of an original signal in first and second layers even if the second or upper layer section performs low bit-rate encoding. In the encoder, a spectrum residue shape codebook (305) stores candidates of spectrum residue shape vectors, a spectrum residue gain codebook (307) stores candidates of spectrum residue gains, and a spectrum residue shape vector and a spectrum residue gain are sequentially outputted from the candidates according to the instruction from a search section (306). A multiplier (308) multiplies a candidate of the spectrum residue shape vector by a candidate of the spectrum residue gain and outputs the result to a filtering section (303). The filtering section (303) performs filtering by using a pitch filter internal state set by a filter state setting section (302), a lag T outputted by a lag setting section (304), and a spectrum residue shape vector which has undergone gain adjustment.
    • 即使第二或上层部分执行低比特率编码,编码器,解码器,编码方法和解码方法能够在第一和第二层中的原始信号的可分级编码中获取高质量解码信号。 在编码器中,频谱残差形状码本(305)存储频谱残差形状矢量的候补,频谱残差增益码本(307)存储频谱残差增益的候选,频谱残差形状矢量和频谱残差增益从 候选人根据来自搜索部分的指示(306)。 乘法器(308)将频谱残差形状矢量的候选乘以频谱残差增益的候选,并将结果输出到滤波部(303)。 滤波部(303)通过使用由滤波器状态设定部(302)设定的音调滤波器内部状态,由滞后设定部(304)输出的滞后T和进行了增益调整的频谱残差图形矢量进行滤波 。
    • 7. 发明申请
    • Encoder, Decoder, Encoding Method, and Decoding Method
    • 编码器,解码器,编码方法和解码方法
    • US20080052066A1
    • 2008-02-28
    • US11718452
    • 2005-11-02
    • Masahiro OshikiriHiroyuki EharaKoji Yoshida
    • Masahiro OshikiriHiroyuki EharaKoji Yoshida
    • G10L19/12
    • G10L21/038
    • An encoder, decoder, encoding method, and decoding method enabling acquisition of high-quality decoded signal in scalable encoding of an original signal in first and second layers even if the second or upper layer section performs low bit-rate encoding. In the encoder, a spectrum residue shape codebook (305) stores candidates of spectrum residue shape vectors, a spectrum residue gain codebook (307) stores candidates of spectrum residue gains, and a spectrum residue shape vector and a spectrum residue gain are sequentially outputted from the candidates according to the instruction from a search section (306). A multiplier (308) multiplies a candidate of the spectrum residue shape vector by a candidate of the spectrum residue gain and outputs the result to a filtering section (303). The filtering section (303) performs filtering by using a pitch filter internal state set by a filter state setting section (302), a lag T outputted by a lag setting section (304), and a spectrum residue shape vector which has undergone gain adjustment.
    • 即使第二或上层部分执行低比特率编码,编码器,解码器,编码方法和解码方法能够在第一和第二层中的原始信号的可分级编码中获取高质量解码信号。 在编码器中,频谱残差形状码本(305)存储频谱残差形状矢量的候补,频谱残差增益码本(307)存储频谱残差增益的候选,频谱残差形状矢量和频谱残差增益从 候选人根据来自搜索部分的指示(306)。 乘法器(308)将频谱残差形状矢量的候选乘以频谱残差增益的候选,并将结果输出到滤波部(303)。 滤波部(303)通过使用由滤波器状态设定部(302)设定的音调滤波器内部状态,由滞后设定部(304)输出的滞后T和进行了增益调整的频谱残差图形矢量进行滤波 。
    • 8. 发明授权
    • Encoder, decoder, encoding method, and decoding method
    • 编码器,解码器,编码方法和解码方法
    • US08204745B2
    • 2012-06-19
    • US13158944
    • 2011-06-13
    • Masahiro OshikiriHiroyuki EharaKoji Yoshida
    • Masahiro OshikiriHiroyuki EharaKoji Yoshida
    • G10L19/02
    • G10L21/038
    • An encoding apparatus and method for generating low-frequency-band encoding information and high-frequency-band encoding information from an original signal. The encoding apparatus includes a first spectrum calculator that calculates a first spectrum of a low frequency band from a decoded signal of the low-frequency-band encoding information, a second spectrum calculator that calculates a second spectrum from the original signal, an estimator that divides a high frequency band of the second spectrum into a plurality of bands and estimates the second spectrum included in each band, using the first spectrum, and a first error component encoder that encodes a first error component between the high frequency band of the second spectrum and an estimated spectrum. A corresponding decoding apparatus and method provides decoding.
    • 一种用于从原始信号产生低频带编码信息和高频带编码信息的编码装置和方法。 编码装置包括:第一频谱计算器,根据低频带编码信息的解码信号计算低频带的第一频谱;第二频谱计算器,从原始信号计算第二频谱;估计器,其将 将第二频谱的高频带转换成多个频带,并使用第一频谱估计包括在每个频带中的第二频谱,以及第一误差分量编码器,其对第二频谱的高频带和 估计频谱。 相应的解码装置和方法提供解码。
    • 9. 发明授权
    • Encoding device, decoding device, and method thereof
    • 编码装置,解码装置及其方法
    • US08352249B2
    • 2013-01-08
    • US12740727
    • 2008-11-04
    • Kok Seng ChongKoji YoshidaMasahiro Oshikiri
    • Kok Seng ChongKoji YoshidaMasahiro Oshikiri
    • G06F15/00G10L11/00G10L19/00G10L19/14G10L21/02
    • G10L19/008G10L19/0208G10L19/0212G10L19/08G10L19/24
    • An encoding device improves the sound quality of a stereo signal while maintaining a low bit rate. The encoding device includes: an LP inverse filter which LP-inverse-filters a left signal L(n) by using an inverse quantization linear prediction coefficient AdM(z) of a monaural signal; a T/F conversion unit which converts the left sound source signal Le(n) from a temporal region to a frequency region; an inverse quantizer which inverse-quantizes encoded information Mqe; spectrum division units which divide a high-frequency component of the sound source signal Mde(f) and the left signal Le(f) into a plurality of bands; and scale factor calculation units which calculate scale factors ai and ssi by using a monaural sound source signal Mdeh,i(f), a left sound source signal Leh,i(f), Mdeh,i(f), and right sound source signal Reh,i(f) of each divided band.
    • 编码装置在维持低比特率的同时提高了立体声信号的声音质量。 编码装置包括:LP逆滤波器,其通过使用单声道信号的逆量化线性预测系数AdM(z)对左信号L(n)进行反滤波; T / F转换单元,其将左声源信号Le(n)从时间区域转换为频率区域; 反量化编码信息Mqe的逆量化器; 将声源信号Mde(f)和左信号Le(f)的高频分量分割为多个频带的频谱分割单元; 以及通过使用单声道声源信号Mdeh,i(f),左声源信号Leh,i(f),Mdeh,i(f)和右声源信号来计算比例因子ai和ssi的比例因子计算单元 Reh,i(f)。
    • 10. 发明申请
    • ENCODING DEVICE, DECODING DEVICE, AND METHOD THEREOF
    • 编码设备,解码设备及其方法
    • US20100262421A1
    • 2010-10-14
    • US12740727
    • 2008-11-04
    • Kok Seng ChongKoji YoshidaMasahiro Oshikiri
    • Kok Seng ChongKoji YoshidaMasahiro Oshikiri
    • G10L19/02G10L19/00G10L19/14
    • G10L19/008G10L19/0208G10L19/0212G10L19/08G10L19/24
    • Provided is an encoding device which improves the sound quality of a stereo signal while maintaining a low bit rate. The encoding device includes: an LP inverse filter (121) which LP-inverse-filterS a left signal L(n) by using an inverse quantization linear prediction coefficient AdM(z) of a monaural signal; a T/F conversion unit (122) which converts the left sound source signal Le(n) from a temporal region to a frequency region; an inverse quantizer (123) which inverse-quantizes encoded information Mqe; spectrum division units (124, 125) which divide a high-frequency component of the sound source signal Mde(f) and the left signal Le(f) into a plurality of bands; and scale factor calculation units (126, 127) which calculate scale factors ai and ssi by using a monaural sound source signal Mdeh,i(f), a left sound source signal Leh,i(f), Mdeh,i(f), and right sound source signal Reh,i(f) of each divided band.
    • 提供了一种在保持低比特率的同时改善立体声信号的声音质量的编码装置。 编码装置包括:LP逆滤波器,其通过使用单声道信号的逆量化线性预测系数AdM(z)对左信号L(n)进行反转滤波; 将左声源信号Le(n)从时间区域转换为频率区域的T / F转换单元(122) 逆量化器(123),其对编码信息Mqe进行逆量化; 将声源信号Mde(f)和左信号Le(f)的高频分量分割为多个频带的频谱分割单元(124,125) 以及通过使用单声道声源信号Mdeh,i(f),左声源信号Leh,i(f),Mdeh,i(f),...,f(f)来计算比例因子ai和ssi的比例因子计算单元(126,127) 和每个分频带的右声源信号Reh,i(f)。