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Ultra-low delay lossy audio coding using DPCM and block companded quantization

机译:使用DPCM和块压扩量化的超低延迟有损音频编码

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Real-time audio transmission requires good quality for a restricted channel capacity and minimum latency. An ultra-low delay audio coding scheme based on differential pulse code modulation (DPCM) and block companded quantization is presented. The prediction filter of the base backward DPCM codec is attained as a FIR filter in lattice structure. The proposed block based audio coding introduces an algorithmic latency below one millisecond and an overhead of less than a half bit per sample. The advantage of the block companded quantization with DPCM is the capability to follow rapid changes in the signal. Therefore, it significantly improves the perceptual audio quality compared to a plain DPCM coding scheme with an adaptive quantizer.
机译:实时音频传输要求高质量,以实现有限的通道容量和最小的延迟。提出了一种基于差分脉冲编码调制(DPCM)和块压扩量化的超低延迟音频编码方案。基本后向DPCM编解码器的预测滤波器作为格结构的FIR滤波器获得。所提出的基于块的音频编码引入了小于一毫秒的算法等待时间,并且每个样本的开销小于一半。用DPCM进行块扩展的量化的优点是能够跟踪信号的快速变化。因此,与具有自适应量化器的普通DPCM编码方案相比,它显着改善了感知音频质量。

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