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    • 3. 发明授权
    • Low bit-rate audio encoding
    • 低比特率音频编码
    • US07596490B2
    • 2009-09-29
    • US10570289
    • 2004-08-26
    • Gerard Herman HothoAndreas Johannes Gerrits
    • Gerard Herman HothoAndreas Johannes Gerrits
    • G10L19/00
    • G10L19/093
    • In a sinusoidal audio encoder a number of sinusoids are estimated per audio segment. A sinusoid is represented by frequency, amplitude and phase. The invention uses a track dependent quantization of phase. A track is encoded with a suitable initial (e.g. frequency dependent) quantization grid that is chosen among a set of possible initial grids that may vary from fine to coarse. If, in a series of time segments the frequency variation in a particular track is smaller than a predetermined value, the track is quantized using a finer quantization grid. The invention gives a significant improvement in decoded signal quality, especially for low bit-rate quantizers.
    • 在正弦音频编码器中,每个音频段估计出多个正弦波。 正弦曲线由频率,振幅和相位表示。 本发明使用相位的轨道相关量化。 轨道用适当的初始(例如频率相关)量化网格进行编码,该量化网格可以从一个可能的初始网格中选择,该组可以从精细到粗略地变化。 如果在一系列时间段中,特定轨道中的频率变化小于预定值,则使用更精细的量化网格量化轨道。 本发明在解码信号质量方面给出了显着的改进,特别是对于低比特率量化器。
    • 4. 发明申请
    • ENCODING AND DECODING OF MULTI-CHANNEL AUDIO SIGNALS
    • 多通道音频信号的编码和解码
    • US20090055194A1
    • 2009-02-26
    • US11718241
    • 2005-10-31
    • Gerard Herman HothoFrancois Philippus MyburgDirk Jeroen Breebaart
    • Gerard Herman HothoFrancois Philippus MyburgDirk Jeroen Breebaart
    • G10L19/00
    • G10L19/008G10L21/028
    • An encoding device (1) for converting a first number (M) of input audio channels into a second, smaller number (N) of output audio channels comprises at least one conversion unit (12) for converting a first signal (Lf; Rf; Co) and a second signal (Lr; Rr; Le) into a third signal (L; R; C) and a fourth signal (Ls; Rs; Cs). The third, dominant signal contains most of the signal energy of the first and second signals, while the fourth, residual signal contains the remainder of said signal energy. The encoding device is arranged for using the third signal (L; R; C) to produce an output signal and for outputting the fourth signal (Ls; Rs; Cs). A decoding device (2) for converting a first number (N) of input audio channels into a second, larger number (M) or output audio channels comprises at least one conversion unit (24) for converting a first signal (L; R; C) and a second signal (Ld; Rd; Ld) into a third signal (Lf, Rf; Co) and a fourth signal (Lr; Rr; Le). The first, dominant signal contains most of the signal energy of the third and fourth signal, while the second, residual signal contains the remainder of said signal energy. The encoding device is arranged for receiving at least one-second signal (Ld; Rd; Cd).
    • 用于将输入音频通道的第一数量(M)转换为第二较小数量(N)个输出音频通道的编码设备(1)包括用于将第一信号(Lf; Rf; Co)和第二信号(Lr; Rr; Le)转换成第三信号(L; R; C)和第四信号(Ls; Rs; Cs)。 第三个主要信号包含第一和第二信号的大部分信号能量,而第四个残差信号包含所述信号能量的剩余部分。 编码装置被配置为使用第三信号(L; R; C)产生输出信号并输出​​第四信号(Ls; Rs; Cs)。 用于将第一数量(N)个输入音频通道转换为第二较大数量(M)或输出音频通道的解码装置(2)包括用于转换第一信号(L; R; R)的至少一个转换单元(24) C)和第二信号(Ld; Rd; Ld)转换成第三信号(Lf,Rf; Co)和第四信号(Lr; Rr; Le)。 第一个主要信号包含第三和第四信号的大部分信号能量,而第二个残差信号包含所述信号能量的剩余部分。 编码装置被布置成用于接收至少一秒信号(Ld; Rd; Cd)。
    • 6. 发明授权
    • Multi-channel audio coding
    • 多声道音频编码
    • US08346564B2
    • 2013-01-01
    • US11909730
    • 2006-03-16
    • Gerard Herman HothoDirk Jeroen BreebaartErik Gosuinus Petrus SchuijersAlbertus Cornelis Den BrinkerLars Falck VillemoesHeiko PurnhagenKarl Jonas Roden
    • Gerard Herman HothoDirk Jeroen BreebaartErik Gosuinus Petrus SchuijersAlbertus Cornelis Den BrinkerLars Falck VillemoesHeiko PurnhagenKarl Jonas Roden
    • G10L19/00G10L21/04
    • G10L19/008H04R2420/07H04S3/008
    • A multi-channel audio encoder (10) for encoding a multi-channel audio signal (101), e.g. a 5.1 channel audio signal, into a spatial down-mix (102), e.g. a stereo signal, and associated parameters (104, 105). The encoder (10) comprises first and second units (110, 120). The first unit (110) encodes the multi-channel audio signal (101) into the spatial down-mix (102) and parameters (104). These parameters (104) enable a multi-channel decoder (20) to reconstruct the multi-channel audio signal (203) from the spatial down-mix (102). The second unit (120) generates, from the spatial down-mix (102), parameters (105) that enable the decoder to reconstruct the spatial down-mix (202) from an alternative down-mix (103), e.g. a so-called artistic down-mix that has been manually mixed in a sound studio. In this way, the decoder (20) can efficiently deal with a situation in which an alternative down-mix (103) is received instead of the regular spatial, down-mix (102). In the decoder (20), first the spatial down-mix (202) is reconstructed from the alternative down-mix (103) and the parameters (105). Next, the spatial down-mix (202) is decoded into the multi-channel audio signal (203).
    • 一种用于对多声道音频信号(101)进行编码的多声道音频编码器(10)。 5.1声道音频信号转换成空间缩混(102)。 立体声信号和相关参数(104,105)。 编码器(10)包括第一和第二单元(110,120)。 第一单元(110)将多声道音频信号(101)编码成空间缩混(102)和参数(104)。 这些参数(104)使得多声道解码器(20)能够从空间缩混(102)重建多声道音频信号(203)。 第二单元(120)从空间缩混(102)生成参数(105),使参数(105)能够使解码器从替代的下混合(103)重构空间缩混(202)。 所谓的艺术混合,已经在一个健全的工作室手工混合。 以这种方式,解码器(20)可以有效地处理接收替代的下混合(103)而不是常规的空间,混合(102)的情况。 在解码器(20)中,首先,从替代的下混合(103)和参数(105)重构空间缩混(202)。 接下来,空间缩混(202)被解码为多声道音频信号(203)。
    • 7. 发明申请
    • Method, Device, Encoder Apparatus, Decoder Apparatus and Audio System
    • 方法,设备,编码器装置,解码装置和音频系统
    • US20110058679A1
    • 2011-03-10
    • US12882849
    • 2010-09-15
    • Machiel Willem Van LoonDirk Jeroen BreebaartGerard Herman HothoErik Gosuinus Petrus SchuijersHeiko PurnhagenKarl Jonas Roeden
    • Machiel Willem Van LoonDirk Jeroen BreebaartGerard Herman HothoErik Gosuinus Petrus SchuijersHeiko PurnhagenKarl Jonas Roeden
    • H04R5/00
    • H04S3/02G10L19/008H04S1/007H04S2400/03H04S2420/03
    • A method and a device are described for processing a stereo signal obtained from an encoder, which encodes an N-channel audio signal into spatial parameters (P) and a stereo down-mix comprising first and second stereo signals (L0, R0). A first signal and a third signal are added in order to obtain a first output signal (Low), wherein the first signal (L0wL) comprises the first stereo signal (L0) modified by a first complex function (g1), and the third signal (L0wR) comprises the second stereo signal (R0) modified by a third complex function (g3). A second signal and a fourth signal are added to obtain a second output signal (R0w). The fourth signal (R0wR) comprises the second stereo signal (R0) modified by a fourth complex function (g4), and the second signal (R0wL) comprises the first stereo signal (L0) modified by a second complex function (g2). The complex functions (g1, g2, g3, g4) are functions of the spatial parameters (P) and are chosen to be such that an energy value of the difference (L0wL,R0wL) between the first signal and the second signal is larger than or equal to the energy value of the sum (L0wL+R0wL) of the first and the second signal, and the energy value of the difference (R0wR−L0wR) between the fourth signal and the third signal is larger than or equal to the energy value of the sum (R0wR+L0wR) of the fourth signal and the third signal.
    • 描述了一种用于处理从编码器获得的立体声信号的方法和装置,其将N声道音频信号编码为空间参数(P)和包括第一和第二立体声信号(L0,R0)的立体声缩混混音。 添加第一信号和第三信号以获得第一输出信号(Low),其中第一信号(L0wL)包括由第一复函数(g1)修改的第一立体声信号(L0)和第三信号 (L0wR)包括由第三复数函数(g3)修改的第二立体声信号(R0)。 添加第二信号和第四信号以获得第二输出信号(R0w)。 第四信号(R0wR)包括由第四复数函数(g4)修改的第二立体声信号(R0),第二信号(R0wL)包括由第二复函数(g2)修改的第一立体声信号(L0)。 复合函数(g1,g2,g3,g4)是空间参数(P)的函数,并且被选择为使得第一信号和第二信号之间的差值(L0wL,R0wL)的能量值大于 或等于第一和第二信号的和(L0wL + R0wL)的能量值,并且第四信号和第三信号之间的差值(R0wR-L0wR)的能量值大于或等于能量 第四信号和第三信号的和(R0wR + L0wR)的值。
    • 8. 发明申请
    • MULTI-CHANNEL AUDIO CODING
    • 多声道音频编码
    • US20100153097A1
    • 2010-06-17
    • US11909730
    • 2006-03-16
    • Gerard Herman HothoDirk Jeroen BreebartErik Gosuinus PetrusAlbertus Cornelis Den BrinkerLars Falck VillemoesHeiko PurnhagenKarl Jonas Roden
    • Gerard Herman HothoDirk Jeroen BreebartErik Gosuinus PetrusAlbertus Cornelis Den BrinkerLars Falck VillemoesHeiko PurnhagenKarl Jonas Roden
    • G10L19/00
    • G10L19/008H04R2420/07H04S3/008
    • A multi-channel audio encoder (10) for encoding a multi-channel audio signal (101), e.g. a 5.1 channel audio signal, into a spatial down-mix (102), e.g. a stereo signal, and associated parameters (104, 105). The encoder (10) comprises first and second units (110, 120). The first unit (110) encodes the multi-channel audio signal (101) into the spatial down-mix (102) and parameters (104). These parameters (104) enable a multi-channel decoder (20) to reconstruct the multi-channel audio signal (203) from the spatial down-mix (102). The second unit (120) generates, from the spatial down-mix (102), parameters (105) that enable the decoder to reconstruct the spatial down-mix (202) from an alternative down-mix (103), e.g. a so-called artistic down-mix that has been manually mixed in a sound studio. In this way, the decoder (20) can efficiently deal with a situation in which an alternative down-mix (103) is received instead of the regular spatial, down-mix (102). In the decoder (20), first the spatial down-mix (202) is reconstructed from the alternative down-mix (103) and the parameters (105). Next, the spatial down-mix (202) is decoded into the multi-channel audio signal (203).
    • 一种用于对多声道音频信号(101)进行编码的多声道音频编码器(10)。 5.1声道音频信号转换成空间缩混(102)。 立体声信号和相关参数(104,105)。 编码器(10)包括第一和第二单元(110,120)。 第一单元(110)将多声道音频信号(101)编码成空间缩混(102)和参数(104)。 这些参数(104)使得多声道解码器(20)能够从空间缩混(102)重建多声道音频信号(203)。 第二单元(120)从空间缩混(102)生成参数(105),使参数(105)能够使解码器从替代的下混合(103)重构空间缩混(202)。 所谓的艺术混合,已经在一个健全的工作室手工混合。 以这种方式,解码器(20)可以有效地处理接收替代的下混合(103)而不是常规的空间,混合(102)的情况。 在解码器(20)中,首先,从替代的下混合(103)和参数(105)重构空间缩混(202)。 接下来,空间缩混(202)被解码为多声道音频信号(203)。