IEEE 1857.2无损音频压缩线性预测算法性能分析

Fathiah Abdul Muin, T. Gunawan, E. Elsheikh, M. Kartiwi
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引用次数: 3

摘要

除了商业消费市场外,高质量和多声道音频在许多其他领域也变得越来越重要。为了在不丢失数据的情况下减小原始音频比特流的大小,提出了更多的无损音频压缩标准和算法。本文有两个目的。首先,我们的目标是回顾和分析IEEE 1857.2标准的性能。重点是预测器和预处理块。该预测器采用线性预测编码(LPC)作为其主要机制。预处理块对线性预测编码器的误差残差进行归一化处理。第二个目标是展示实验不同声波文件类型输入的结果。对结果进行了讨论,并进行了比较,以确定无损编码器对压缩比的影响。在此基础上,对比分析了预测器和预处理输出的误差残差的熵平坦性,分析了线性预测编码机制中预测器顺序的变化。我们得出结论,预处理块可以很好地在所有声音类型的较低预测阶上平坦输出,但在改善音乐声音类型的剩余输出方面效果最好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance analysis of IEEE 1857.2 lossless audio compression linear predictor algorithm
In addition to commercial consumer market, high quality and multichannel audio has become more relevant in many other fields. More lossless audio compression standards and algorithm are proposed to tackle the problem of reducing the size of a raw audio bitstream without loss of data. This paper has two objectives. First, we aim to review and analyze the performance of the IEEE 1857.2 standard. Focus is on the predictor and the pre-processing block. The predictor utilizes Linear Predictive Coding (LPC) as its main mechanism. The pre-processing block normalizes the error residue of the Linear Predictive encoder. The second objective is to present results from experimenting different wave sound file type inputs. Results are discussed, and comparisons are made to identify the effect on compression ratio of the lossless encoder. As well as this, comparison is made to analyze the entropy flatness of the error residue from the predictor and pre-processing output the predictor order in the linear predictive coding mechanism varies. We concluded that pre-processing block works well to flatten the output at lower predictor order for all the sound types, but works best at improving the residual output for music sound type.
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