ANSI ATIS 0100005-2006 Auditory Non-Intrusive Quality Estimation Plus (ANIQUE+) Perceptual Model for Non-Intrusive Estimation of Narrowband Speech Quality (Includes Access to Addit.pdf
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1、 Access to Additional Content for ATIS-0100005, Dated: December 2006 (R2011) (Click here to view the publication) This Page is not part of the original publication This page has been added by IHS as a convenience to the user in order to provide access to additional content as authorized by the Copyr
2、ight holder of this document Click the link(s) below to access the content and use normal procedures for downloading or opening the files. ATIS-0100005 Information contained in the above is the property of the Copyright holder and all Notice of Disclaimer their existence does not in any respect prec
3、lude anyone, whether he has approved the standards or not, from manufacturing, marketing, purchasing, or using products, processes, or procedures not conforming to the standards. The American National Standards Institute does not develop standards and will in no circumstances give an interpretation
4、of any American National Standard. Moreover, no person shall have the right or authority to issue an interpretation of an American National Standard in the name of the American National Standards Institute. Requests for interpretations should be addressed to the secretariat or sponsor whose name app
5、ears on the title page of this standard. CAUTION NOTICE: This American National Standard may be revised or withdrawn at any time. The procedures of the American National Standards Institute require that action be taken periodically to reaffirm, revise, or withdraw this standard. Purchasers of Americ
6、an National Standards may receive current information on all standards by calling or writing the American National Standards Institute. Notice of Disclaimer n), which is the temporal envelope for the k-th critical band at the m-th frame. The modulation spectrum for each critical band is then estimat
7、ed by the magnitude of Fourier transform as: k(m,f) = |Fk(m;n)| where f denotes modulation frequency and Fx is the Fourier transform of x. The modulation spectrum is grouped into 7 bands by a modulation filterbank Wmod(i,f), i = 1, 2, , 7, which is implemented and applied in modulation frequency dom
8、ain, and one can obtain modulation band power of the k-th critical band at the m-th time frame as: = dffiWfmimkk),(),(),(2mod2. For discrete-time signals, the modulation spectrum is obtained by 2048-point FFT and the modulation band power can be approximated as . =102302mod2),(),(),(jkkjiWjmimFigure
9、 3 shows the frequency response of modulation filterbank Wmod(i,f). The quality factor of each filter is set 2 which is defined as the center frequency divided by the bandwidth of filter. 7 ATIS-0100005.2006 2 4 8 16 32 64 128 25600.20.40.60.81Modulation Frequency HzGainFigure 3 - Frequency response
10、 of modulation filterbank The average articulation power is defined as: =ALikAAkimLm1,),(1)( and reflects the amount of signal components relevant to natural human speech. In order to cover the frequency range of 2 30 Hz, corresponding to the movement speed of human articulation system, LAis set to
11、4. On the contrary, the average nonarticulation power represents the amount of perceptually annoying distortions produced at the rates beyond the speed of human articulation systems, and is defined as: +=)(1,),()(1)(kLLikANNkNAimLkLm Where: =221971814,6130,5)(kkkkLNspecifies the last modulation filt
12、er index to be considered in estimating the nonarticulation power. 8.3 Feature Extraction The logarithm of the DC-value of modulation spectrum is subtracted from the logarithms of average articulation power and the average nonarticulation power to represent normalized values as: 8 ATIS-0100005.2006
13、)1)0,(log( -1)(m)(log)(kAk,+= mmAkAnd: )1)0,(log( -1)(m)(log)(kNk,+= mmNk. Also, )1)0,(log(max)1)0,(log()0,(k+= mmmjjkis the normalized DC-value of modulation log-spectrum. The input to frame distortion model at the m-th frame is a 69-dimensional feature vector: (m) = A(m); N(m); (m,0) where A(m), N
14、(m), and (m,0) are row vector representations of k,A(m), k,N(m), and k(m,0), respectively. 9 DETECTION OF ACTIVE SPEECH AND AUDIBLE BACKGROUND NOISE The voice activity detection (VAD) is estimated every 16 msec based on frame power, its time-derivative, and estimated adaptive background noise power.
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