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Improved Psychoacoustic Model for Efficient Perceptual Audio Codecs

机译:改进了高效感知音频编解码器的心理声学模型

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Since early perceptual audio coders such as mp3, the underlying psychoacoustic model that controls the encoding process has not undergone many dramatic changes. Meanwhile, modern audio coders have been equipped with semi-parametric or parametric coding tools such as audio bandwidth extension. Thereby, the initial psychoacoustic model used in a perceptual coder, just considering added quantisation noise, became partly unsuitable. We propose the use of an improved psychoacoustic excitation model based on an existing model devised by Dau et al. in 1997. This modulation based model is essentially independent from the precise input waveform by calculating an internal auditory representation. Using the example of MPEG-H 3D Audio and its semi-parametric Intelligent Gap Filling (IGF) tool, we demonstrate that we can successfully control the IGF parameter selection process to achieve overall improved perceptual quality.
机译:由于诸如MP3的早期感知音频编码器,控制编码过程的底层心理声学模型并未经历许多戏剧性的变化。同时,现代音频编码器已经配备了半导体或参数编码工具,如音频带宽扩展。因此,仅考虑增加量化噪声的感知编码器中使用的初始心理声学模型变得部分不合适。我们提出了基于Dau等人设计的现有模型的改进的心理声学励磁模型。在1997年。该基于调制的模型通过计算内部听觉表示基本上独立于精确输入波形。使用MPEG-H 3D音频及其半导体智能间隙填充(IGF)工具的示例,我们证明我们可以成功控制IGF参数选择过程,以实现整体提高的感知质量。

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