Vocoder based on residual signal spectrum reconfiguration

A technology of residual signal and vocoder, which is applied in the field of vocoder based on spectral reconstruction of residual signal, can solve problems such as loss of fine spectrum structure, loss of high-frequency band energy, and low voice quality, so as to reduce complexity and The degree of artificial participation, high naturalness, and the effect of improving sound quality

Active Publication Date: 2012-10-24
中科极限元(杭州)智能科技股份有限公司
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Problems solved by technology

Due to the strong periodicity of the pulse train, the sound quality of the synthesized speech using this excitation model is not high
[0004] In addition, the traditional periodic spectrum calculation method based on spectral parameters can only fit the formant structure of the spectrum, resulting

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  • Vocoder based on residual signal spectrum reconfiguration

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[0033] In order to make the object, technical solution and advantages of the present invention clearer, the present invention will be described in further detail below in conjunction with specific embodiments and with reference to the accompanying drawings.

[0034] It should be noted that, in the drawings or descriptions of the specification, similar or identical parts all use the same figure numbers. And in the accompanying drawings, it is marked for simplicity or convenience. Furthermore, implementations not shown or described in the accompanying drawings are forms known to those of ordinary skill in the art. Additionally, while illustrations of parameters including particular values ​​may be provided herein, it should be understood that the parameters need not be exactly equal to the corresponding values, but rather may approximate the corresponding values ​​within acceptable error margins or design constraints.

[0035] In the vocoder based on the spectral reconstruction...

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Abstract

The invention provides a vocoder based on residual signal spectrum reconfiguration. The vocoder based on residual signal spectrum reconfiguration comprises a parameter extracting module, an inverse filtering module, a periodic signal branch, a nonperiodic signal branch and a parameter voice synthesizer module. The parameter extracting module is used for receiving to-be-analyzed voice data and calculating fundamental frequency parameters and frequency spectrum parameters. The inverse filtering module is used for designing an inverse filter according to the frequency spectrum parameters to inversely filter the voice data to obtain residual signals. The periodic signal branch is connected with the inverse filtering module and used for generating periodic excitation signals according to the fundamental frequency parameters and the residual signals after inverse filtering. The nonperiodic signal branch is connected with the inverse filtering module and used for generating nonperiodic excitation signals according to the fundamental frequency parameters and the residual signals after inverse filtering. The parameter voice synthesizer module is connected with the periodic signal branch and the nonperiodic signal branch and used for calling a voice synthesizer to synthesize voices according to the periodic frequency spectrum parameters, the periodic excitation signals and the nonperiodic excitation signals. The residue signals after inverse filtering is modeled to enable the excitation signals to be higher in accuracy, and quality of synthesized voice is improved.

Description

technical field [0001] The invention relates to the technical field of signal processing in the electronic industry, in particular to a vocoder based on spectral reconstruction of a residual signal. Background technique [0002] Vocoder technology is an important part of harmonious human-computer interaction technology. It can process a person's voice so that it can synthesize natural and smooth speech. Its research results have important implications for speech coding technology, parametric speech synthesis technology, The development of human-computer interaction technology is of great significance. [0003] However, the current vocoder technology uses a pulse plus white noise excitation model, which uses a pulse train or Gaussian white noise to construct an excitation signal. Due to the strong periodicity of the pulse train, the sound quality of the synthesized speech using this excitation model is not high. [0004] In addition, the traditional periodic spectrum calcul...

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Application Information

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IPC IPC(8): G10L19/12
Inventor 陶建华温正棋
Owner 中科极限元(杭州)智能科技股份有限公司
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