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Overview and performance of CCITT/ANSI embedded ADPCM algorithms

机译:CCITT / ANSI嵌入式ADPCM算法的概述和性能

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Embedded adaptive differential pulse coded modulation (ADPCM) algorithms quantize the differences between the input signal and the estimated signal into core bits and enhancement bits. CCITT Recommendation G.727, which describes embedded ADPCM encoding algorithms with 5, 4, 3, and 2 core bits, is virtually identical to the corresponding ANSI standard T1.310. The main features of G.727 and T1.310 and performance results are presented. A formal subjective evaluation of the speech performance of embedded ADPCM algorithms indicates that a midrise quantizer provides better voice transmission performance than its midtread counterpart when two core bits are used. The subjective data also show that the performance of the 40-kb/s midrise ADPCM algorithm with two feedback bits is indistinguishable from that of 64-kb/s pulse code modulation (PCM) for up to four tandem encodings. Embedded algorithms are therefore recommended for flexible congestion control of integrated traffic in multinode networks.
机译:嵌入式自适应差分脉冲编码调制(ADPCM)算法将输入信号和估计信号之间的差异量化为核心位和增强位。 CCITT建议G.727描述了具有5、4、3和2个核心位的嵌入式ADPCM编码算法,实际上与相应的ANSI标准T1.310相同。介绍了G.727和T1.310的主要功能以及性能结果。对嵌入式ADPCM算法语音性能的正式主观评估表明,当使用两个核心位时,中层量化器比中层量化器提供更好的语音传输性能。主观数据还表明,对于多达四个串联编码,具有两个反馈位的40-kb / s中层ADPCM算法的性能与64-kb / s脉冲编码调制(PCM)的性能是无法区分的。因此,建议使用嵌入式算法对多节点网络中的集成流量进行灵活的拥塞控制。

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