A novel approach to excitation coding in low-bit-rate high-quality CELP coders
V. Cuperman, A. Gersho, J. Linden, A. Rao, Tung-Chiang Yang, Sassan Ahmadi, R. Heidari, Fenghua Liu
Abstract
V. Cuperman, A. Gersho, J. Linden, A. Rao, Tung-Chiang Yang, Sassan Ahmadi, R. Heidari, Fenghua Liu
Abstract
A significant improvement in the efficiency of excitation coding with CELP at low bit rates is achieved by a new paradigm for encoding the fixed excitation. In the proposed scheme, the non-zero fixed-codebook excitation elements are substantially localized in a set of windows, with positions adaptive to the pitch peaks. Highly efficient coding is thus achieved by allocating most of the available excitation bits to capture the essential excitation events. The paradigm is validated by computer simulation of a variable-rate speech codec. The performance of the codec is evaluated by informal subjective tests and compared with TIA standard variable rate speech codecs. The results indicate that the proposed scheme can be used to reproduce speech at average bit rates from 2.3 to 3.4 kbps (i.e., in a two-way communication scenario) with very high quality and intelligibility.
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A significant improvement in the efficiency of excitation coding with CELP at low bit rates is achieved by a new paradigm for encoding the fixed excitation. In the proposed scheme, the non-zero fixed-codebook excitation elements are substantially localized in a set of windows, with positions adaptive to the pitch peaks. Highly efficient coding is thus achieved by allocating most of the available excitation bits to capture the essential excitation events. The paradigm is validated by computer simulation of a variable-rate speech codec. The performance of the codec is evaluated by informal subjective tests and compared with TIA standard variable rate speech codecs. The results indicate that the proposed scheme can be used to reproduce speech at average bit rates from 2.3 to 3.4 kbps (i.e., in a two-way communication scenario) with very high quality and intelligibility.
Key concepts: Code-excited linear prediction, Codec2, Codec, Computer science, Codebook, Harmonic Vector Excitation Coding, Speech coding, Adaptive Multi-Rate audio codec