A mixed harmonic excitation linear predictive speech coding for low bit rate applications
Suat Yeldner, M. Baraniecki
Abstract
Suat Yeldner, M. Baraniecki
Abstract
The mixed harmonic excitation linear predictive speech coder (MHE-LPC) is based on a technique derived from the multi-band excitation (MBE) and multi-band linear predictive coding (MB-LPC) types of speech coding algorithms. The MHE-LPC coder has the potential of producing high quality speech at 4.8 kb/s and below. This coder employs a new pitch estimation and a mixed voicing technique that utilizes a number of bands within the 4 kHz speech bandwidth (6-8 bands), each band having a voicing probability that defines voiced and unvoiced portions of the excitation spectrum. In addition to these, a new DCT based LPC and residual amplitude quantization technique has been developed and is described in this paper. The 3.6 kb/s MHE-LPC coder with 14th order LPC filter was found to produce better speech quality than various other low rate speech coding standards. During an informal listening test, the 3.6 kb/s MHE-LPC vocoder produced better performance than the 3.6 kb/s INMARSAT Mini-M coder. The MHE-LPC algorithm can be easily extended to bit rates between 1.2 and 8 kb/s depending on the applications.
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The mixed harmonic excitation linear predictive speech coder (MHE-LPC) is based on a technique derived from the multi-band excitation (MBE) and multi-band linear predictive coding (MB-LPC) types of speech coding algorithms. The MHE-LPC coder has the potential of producing high quality speech at 4.8 kb/s and below. This coder employs a new pitch estimation and a mixed voicing technique that utilizes a number of bands within the 4 kHz speech bandwidth (6-8 bands), each band having a voicing probability that defines voiced and unvoiced portions of the excitation spectrum. In addition to these, a new DCT based LPC and residual amplitude quantization technique has been developed and is described in this paper. The 3.6 kb/s MHE-LPC coder with 14th order LPC filter was found to produce better speech quality than various other low rate speech coding standards. During an informal listening test, the 3.6 kb/s MHE-LPC vocoder produced better performance than the 3.6 kb/s INMARSAT Mini-M coder. The MHE-LPC algorithm can be easily extended to bit rates between 1.2 and 8 kb/s depending on the applications.
Key concepts: Linear predictive coding, Harmonic Vector Excitation Coding, Speech coding, Code-excited linear prediction, Linear prediction, Speech recognition, Computer science, Codec2