Nova Patents
EP2829081B1

Conferencing device self test

Abstract

This record has no abstract on file.

EP2829081B1, drawing sheet 1
Sheet 1 of 14

Term

6.5 yearsleft in the term

Expires 21 March 2033.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

9 claims: 2 independent, 7 dependent

  1. 1
    A method of operating a plurality of acoustic sensors (111, 112. 113) arranged in a non-anechoic environment (102), the method comprising the steps of:exciting each acoustic sensor by producing, in the non-anechoic environment, an acoustic stimulus comprising a noise burst of finite duration, and concurrently sensing an output from each acoustic sensor only during a time period beginning a finite interval after the end of the acoustic stimulus;computing a frequency-dependent magnitude response function of each acoustic sensor based on at least a non-initial portion of the output from each acoustic sensor, said computation being based on the sensed output from the acoustic sensor and a spectral composition of the noise burst: and deriving a frequency-dependent calibration function based on a comparison of the magnitude response functions thus obtained and a target response function which is common to all acoustic sensors.
  2. 9
    A controller (200; 300) connectable to a plurality of acoustic sensors (111, 112, 113) arranged in a non-anechoic environment (102) and to at least one audio source (121, 122) in the non-anechoic environment, the controller comprising:a measuring section (201) configured to excite each acoustic sensor by causing the at least one audio source to produce an acoustic stimulus comprising a noise burst of finite duration and, concurrently herewith, to capture respective outputs from the acoustic sensors by activating the acoustic sensors;a windowing section (301) configured to extract a non-initial time segment from the output from each acoustic sensor during a time interval beginning a finite interval after the end of the acoustic stimulus;a magnitude response estimator (203;302) configured to estimate a frequency-dependent magnitude response function of each acoustic sensor based on at least a non-initial portion of the output from each acoustic sensor supplied by the windowing section and on a spectral composition of the noise burst;and a calibrator (206;306) configured to derive, for each acoustic sensor, a frequency-dependent calibration function based on a comparison of the magnitude response function of the sensor and a target response function which is common to all acoustic sensors.