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    • 1. 发明授权
    • Reduced complexity converter SNR calculation
    • 降低复杂度转换器SNR计算
    • US09208789B2
    • 2015-12-08
    • US14184961
    • 2014-02-20
    • Dolby Laboratories Licensing CorporationDolby International AB
    • Michael SchugPhillip WilliamsLuca Baradel
    • G10L19/02G10L19/008G10L19/032G10L19/16
    • G10L19/008G10L19/02G10L19/032G10L19/173
    • An audio encoder configured to encode an audio signal to generate a bitstream having E-AC-3 format, including by determining a first control parameter indicative of an allocation of available mantissa bits for quantized audio content of the signal. The encoder is configured to perform transcoding simulation to determine a second control parameter in a manner based at least in part on statistical analysis of results of E-AC-3 bit allocation processing of audio data assuming a first target data rate, and of AC-3 bit allocation processing of the data assuming a second target data rate, and to include the second control parameter in the bitstream for use by a converter to convert the bitstream into a second bitstream having AC-3 format at the second target data rate. Other aspects are converters configured to perform transcoding on a bitstream using such a second control parameter, and methods performed by any embodiment of the inventive encoder or converter.
    • 音频编码器被配置为对音频信号进行编码以生成具有E-AC-3格式的比特流,包括通过确定指示信号的量化音频内容的可用尾数位的分配的第一控制参数。 编码器被配置为执行代码转换模拟,以至少部分地基于假定第一目标数据速率的音频数据的E-AC-3位分配处理的结果的统计分析和AC- 假设第二目标数据速率的数据的3比特分配处理,并且将第二控制参数包括在比特流中以供转换器使用以将比特流转换为具有第二目标数据速率的具有AC-3格式的第二比特流。 其他方面是被配置为使用这样的第二控制参数在比特流上执行代码转换的转换器,以及由本发明的编码器或转换器的任何实施例执行的方法。
    • 3. 发明申请
    • Reduced Complexity Converter SNR Calculation
    • US20150269950A1
    • 2015-09-24
    • US14439795
    • 2013-11-11
    • DOLBY INTERNATIONAL ABDOLBY LABORATORIES LICENSING CORPORATION
    • Michael SchugPhillip Williams
    • G10L19/008G10L19/032G10L19/16G10L19/02
    • G10L19/008G10L19/02G10L19/032G10L19/173
    • The present document relates to audio encoding/decoding. In particular, the present document relates to a method and system for reducing the complexity of a bit allocation process used in the context of audio encoding/decoding. An audio encoder (300) configured to encode an audio signal according to a first audio codec system is described. The audio encoder (300) comprises a transform unit (302) configured to determine a set of spectral coefficients (312) based on the audio signal. Furthermore, the encoder (300) comprises a floating-point encoding unit (304) configured to determine a set of scale factors and a set of scaled values (314), based on the set of spectral coefficients (312); and to encode the set of scale factors to yield a set of encoded scale factors (313). In addition, the encoder (300) comprises a bit allocation and quantization unit (305, 306) configured to determine a total number of available bits for quantizing the set of scaled values (314), based on a first target data-rate and based on the number of bits used for the set of encoded scale factors (313); to determine a first control parameter (315) indicative of an allocation of the total number of available bits for quantizing the scaled values of the set of scaled values (314); and to quantize the set of scaled values (314) in accordance to the first control parameter (315) to yield a set of quantized scaled values (317). Furthermore, the encoder (300) comprises a transcoding simulation unit (320) configured to determine a second control parameter (321) based on the first control parameter (315); wherein the second control parameter (321) enables a transcoder to convert the first bitstream into a second bitstream at a second target data-rate; wherein the second bitstream accords to a second audio codec system different from the first audio codec system; and wherein the first bitstream comprises the second control parameter.
    • 4. 发明申请
    • Reduced Complexity Converter SNR Calculation
    • 降低复杂度转换器SNR计算
    • US20140188488A1
    • 2014-07-03
    • US14184961
    • 2014-02-20
    • Dolby International ABDolby Laboratories Licensing Corporation
    • Michael SchugPhillip WilliamsLuca Baradel
    • G10L19/008
    • G10L19/008G10L19/02G10L19/032G10L19/173
    • An audio encoder configured to encode an audio signal to generate a bitstream having E-AC-3 format, including by determining a first control parameter indicative of an allocation of available mantissa bits for quantized audio content of the signal. The encoder is configured to perform transcoding simulation to determine a second control parameter in a manner based at least in part on statistical analysis of results of E-AC-3 bit allocation processing of audio data assuming a first target data rate, and of AC-3 bit allocation processing of the data assuming a second target data rate, and to include the second control parameter in the bitstream for use by a converter to convert the bitstream into a second to bitstream having AC-3 format at the second target data rate. Other aspects are converters configured to perform transcoding on a bitstream using such a second control parameter, and methods performed by any embodiment of the inventive encoder or converter.
    • 音频编码器被配置为对音频信号进行编码以生成具有E-AC-3格式的比特流,包括通过确定指示信号的量化音频内容的可用尾数位的分配的第一控制参数。 编码器被配置为执行代码转换模拟,以至少部分地基于假定第一目标数据速率的音频数据的E-AC-3位分配处理的结果的统计分析和AC- 假设第二目标数据速率的数据的3比特分配处理,并且将第二控制参数包括在比特流中以供转换器使用以将比特流转换为具有第二目标数据速率的具有AC-3格式的第二比特流。 其他方面是被配置为使用这样的第二控制参数在比特流上执行代码转换的转换器,以及由本发明的编码器或转换器的任何实施例执行的方法。
    • 6. 发明授权
    • Reduced complexity converter SNR calculation
    • 降低复杂度转换器SNR计算
    • US09378748B2
    • 2016-06-28
    • US14439795
    • 2013-11-04
    • DOLBY INTERNATIONAL ABDOLBY LABORATORIES LICENSING CORPORATION
    • Michael SchugPhillip Williams
    • G10L19/00G10L19/008G10L19/02G10L19/032G10L19/16
    • G10L19/008G10L19/02G10L19/032G10L19/173
    • The present document relates to audio encoding/decoding. In particular, the present document relates to a method and system for reducing the complexity of a bit allocation process used in the context of audio encoding/decoding. An audio encoder (300) configured to encode an audio signal according to a first audio codec system is described. The audio encoder (300) comprises a transform unit (302) configured to determine a set of spectral coefficients (312) based on the audio signal. Furthermore, the encoder (300) comprises a floating-point encoding unit (304) configured to determine a set of scale factors and a set of scaled values (314), based on the set of spectral coefficients (312); and to encode the set of scale factors to yield a set of encoded scale factors (313).
    • 本文件涉及音频编码/解码。 特别地,本文件涉及用于降低在音频编码/解码的上下文中使用的比特分配处理的复杂度的方法和系统。 描述了被配置为根据第一音频编解码器系统对音频信号进行编码的音频编码器(300)。 音频编码器(300)包括被配置为基于音频信号确定一组频谱系数(312)的变换单元(302)。 此外,编码器(300)包括浮点编码单元(304),其被配置为基于频谱系数集合(312)确定一组缩放因子和一组缩放值(314); 并编码一组比例因子以产生一组编码比例因子(313)。