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R-TTT Module with Modified Residual Signal for Improving Multichannel Audio Signal Accuracy

机译:R-TTT模块具有修改的残余信号,用于提高多通道音频信号精度

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Spatial audio coding is a technique that capable of representing multichannel audio signals as a lower number of audio channels accompanied by spatial parameters and residual signal which will be useful for recreating the original multi-channel audio signals. Moving Picture Expert Group (MPEG) Surround, an international standard developed based on spatial audio coding, specifies Reverse Two-To-Three (R-TTT) module to extend stereo audio, consisted of left and right channels, into three audio channels: left, centre, and right channels based on Channel Prediction Coefficient (CPC) as spatial parameter and residual signal. In this paper, a modified residual signal is proposed to provide a better audio waveform reconstruction in the decoder side by minimising distortion caused by quantisation of CPC. Our experiments show that the waveform accuracy in terms of Signal-to-Noise Ratio (SNR) gets improved as high as 11 dB while the subjective test shows that the proposed method does not reduce perceptual quality, in terms of Subjective Difference Grade (SDG) score, of the reconstructed audio signals.
机译:空间音频编码是一种技术,其能够表示多通道音频信号作为伴随的空间参数和残差信号伴随着重新创建原始多通道音频信号的空间参数和残差信号。移动图片专家组(MPEG)Survent,一种基于空间音频编码开发的国际标准,指定了反向的二维(R-TTT)模块,以扩展立体声音频,由左右通道组成,分为三个音频通道:左基于信道预测系数(CPC)作为空间参数和残差信号,中心和右声道。在本文中,提出了一种修改的残余信号,通过最小化由CPC的量化引起的失真来在解码器侧提供更好的音频波形重建。我们的实验表明,在信噪比(SNR)方面的波形精度高达11 dB,而主观测试表明该方法在主观差异等级(SDG)方面不降低感知质量分数,重建音频信号。

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