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Fixed-Location Pulse Linear Prediction Coding Vocoder Model for Low Bit Rate Speech Coding

机译:低比特率语音编码的固定位置脉冲线性预测编码声码器模型

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An arbitrary-location pulse determination algorithm based on multipulse linear prediction coding (MP-LPC) is presented. This algorithm can determine all the amplitudes of the pulses at a time according to given pulse locations without the use of analysis-by-synthesis. This ensures that the pulses are optimal in a least-square sense, providing the theoretical foundation to improve the quality of synthesized speech. A fixed-location pulse linear prediction coding (FLP-LPC) method is proposed based on the arbitrary-location pulse determination algorithm. Simulation of the algorithm in MATLAB showed the superior quality of the speech synthesized using pulses in different locations and processed using the arbitrary-location pulse determination algorithm. The algorithm improved speech quality without affecting coding time, which was approximately 1.5% of the coding time for MP-LPC. Pulse locations in FLP-LPC are fixed and do not need to be transmitted, with only LSF, gain, and 16 pulse amplitudes requiring coding and transmission. FLP-LPC allows the generation of synthesized speech similar to G.729 coded speech at a rate of 2.5 kbps.
机译:提出了一种基于多脉冲线性预测编码(MP-LPC)的任意位置脉冲确定算法。该算法可以根据给定的脉冲位置一次确定所有脉冲幅度,而无需使用合成分析。这确保了脉冲在最小二乘意义上是最优的,为提高合成语音的质量提供了理论基础。提出了一种基于任意位置脉冲确定算法的固定位置脉冲线性预测编码(FLP-LPC)方法。在MATLAB中对该算法的仿真表明,使用不同位置的脉冲合成并使用任意位置的脉冲确定算法进行处理后,语音的质量更高。该算法在不影响编码时间的情况下提高了语音质量,这大约是MP-LPC编码时间的1.5%。 FLP-LPC中的脉冲位置是固定的,不需要传输,仅LSF,增益和16个脉冲幅度需要编码和传输。 FLP-LPC允许以2.5 kbps的速率生成类似于G.729编码语音的合成语音。

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