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The nonlinear properties of air with ultrasonic sound allows for the creation of a “virtual microphone,” which is the analog of the ultrasonic narrow-beam loudspeaker. When an ultrasonic wave (pump wave) mixes with a baseband audio sound, sidebands are created around the ultrasonic carrier, and these can be demodulated at the receiver. A preliminary investigation showed that the following technical requirements must be achieved: (a) generation of an ultrasonic wave with small phase noise; (b) reception of the wave over a wide dynamic range to allow for real-time demodulation; (c) a composite dynamic of 120 dB within the region around the 40-kHz carrier in order to achieve a microphone comparable to conventional microphones.
Author (s): Merkel, Tobias; Lühmann, Hans-G.; Ritter, Tom
Affiliation:
Beuth Hochschule für Technik Berlin, Lütronic GmbH, Berlin, Germany
(See document for exact affiliation information.)
Publication Date:
2013-09-06
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Permalink: https://aes2.org/publications/elibrary-page/?id=16934
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Merkel, Tobias; Lühmann, Hans-G.; Ritter, Tom; 2013; Using Ultrasonic Sound to Collect Audio Waves in Air [PDF]; Beuth Hochschule für Technik Berlin, Lütronic GmbH, Berlin, Germany; Paper ; Available from: https://aes2.org/publications/elibrary-page/?id=16934
Merkel, Tobias; Lühmann, Hans-G.; Ritter, Tom; Using Ultrasonic Sound to Collect Audio Waves in Air [PDF]; Beuth Hochschule für Technik Berlin, Lütronic GmbH, Berlin, Germany; Paper ; 2013 Available: https://aes2.org/publications/elibrary-page/?id=16934