Nova Patents
EP2239733B1

Noise suppression method

Abstract

This record has no abstract on file.

EP2239733B1, drawing sheet 1
Sheet 1 of 39

Term

Term ended

Expired 28 March 2021, 5.5 years ago.

  1. Priority and filed
  2. Granted
  3. Expired
  4. Today

1 claim: 1 independent, 0 dependent

  1. 1
    A noise reduction method comprising:frequency-analyzing, by a time/frequency conversion means (2), an input signal on frame basis and converting the input signal to an input signal spectrum and a phase spectrum;calculating, by a noise likeness analysis means (3), a noise likeness signal, which an index of whether the frame of the input signal contains noise or speech;receiving, by a noise spectrum estimation means (4), the input signal spectrum obtained by the time/frequency conversion means (2), calculating, by the noise spectrum estimation means (4), an input signal average spectrum on subband basis from the input signal spectrum, and updating, by the noise spectrum estimation means (4), a subband-based estimated noise spectrum, which is estimated from past frames, on the basis of the calculated subband-based input signal average spectrum and on the noise likeness signal calculated by the noise likeness analysis means (3);receiving, by a subband SN ratio calculating means (5), the noise likeness signal calculated by the noise likeness analysis means (3), the input signal spectrum produced by the time/frequency conversion means (2) and the subband-based estimated noise spectrum updated by the noise spectrum estimation means (4), calculating, by the subband SN ratio calculating means (5), a subband-based input signal average spectrum from the received input signal spectrum, calculating, by the subband SN ratio calculating means (5), a subband-based mixture ratio of the received subband-based estimated noise spectrum to the calculated subband-based input signal average spectrum on the basis of the received subband-based noise likeness signal, and calculating, by the subband SN ratio calculating means (5), a subband-based SN ratio on the basis of the received subband-based estimated noise spectrum, the calculated subband-based input signal average spectrum and the calculated mixture ratio;calculating, by a spectral suppression amount calculation means (6), a subband-based spectral suppression amount with respect to the subband-based estimated noise spectrum updated by the noise spectrum estimation means (4), by using the subband-based. SN ratio calculated by the subband SN ratio calculation means (5);carrying out, by a spectral suppression means (7), spectral amplitude suppression on the input signal spectrum obtained by the time/frequency conversion means (2) by employing the subband-based spectral suppression amount calculated by the spectral suppression amount calculation means (6), and thereby presenting an output of noise removed spectrum;and converting, by a frequency/time conversion means (8), the noise removed spectrum fed from the spectral suppression means (7) to a noise suppressed signal in time domain by using the phase spectrum obtained by the time/frequency conversion means (2);performing, by an overlap and add means (9), overlap processing on the frame boundary portions of the noise suppressed signal converted by and fed from the frequency/time conversion means (8) and outputting, by the overlap and add means (9), a noise removed signal which has been subjected to noise reduction processing;wherein the subband-based SN ratio is calculated for subband i according to the following equation: SNR i = 20 * log 10 Sa i / 1 − m Na i + mSa i , if Sa i ≥ Na i ;or SNR i = 0 , if Sa i Na i , where SNR[i] is the subband-based SN ratio of subband i, Sa[i] is the calculated subband-based input signal average spectrum of subband i, Na[i] is the subband-based estimated noise spectrum of subband i, and m is the calculated mixture ratio.