DocumentCode :
3566352
Title :
Hybrid RLS-NLMS algorithm for real-time remote active noise control using directional ultrasonic loudspeaker
Author :
Venturi, Sri Hari Krishna ; Panahi, Issa
Author_Institution :
Dept. of Electr. Eng., Univ. of Texas at Dallas, Richardson, TX, USA
fYear :
2014
Firstpage :
2418
Lastpage :
2424
Abstract :
This paper presents a Hybrid RLS-NLMS adaptive algorithm for remote cancellation of multi-tone noise signals using a directional ultrasonic loudspeaker. It combines the stable and computationally efficient but slow converging traditional Normalized Least Mean Squares (NLMS) algorithm with a fast converging yet computationally complex Recursive Least Squares (RLS) algorithm. This gives a fast converging, stable and less computationally complex Hybrid RLS-NLMS algorithm, which gives lesser residual error than compared to a NLMS algorithm and lower overall computational complexity than a RLS algorithm individually. The anti-noise signal generated by proposed algorithm modulates the 60 kHz carrier frequency of the directional ultrasonic loudspeaker which serves as the noise canceling loudspeaker. Automatic demodulation of the ultrasonic output signal cancels the noise signal at a distant target point within the loudspeaker output pattern. Experimental results for real time implementation of the Hybrid algorithm to cancel various multi-tone noise signals using the ultrasonic loudspeaker are presented.
Keywords :
acoustic signal processing; active noise control; adaptive filters; computational complexity; least squares approximations; loudspeakers; signal denoising; adaptive filtering; anti-noise signal; automatic ultrasonic output signal demodulation; computational complexity; directional ultrasonic loudspeaker; frequency 60 kHz; hybrid RLS-NLMS adaptive algorithm; loudspeaker output pattern; multitone noise signal remote cancellation; noise canceling loudspeaker; noise signal cancellation; normalized least mean squares algorithm; real-time remote active noise control; recursive least squares algorithm; DH-HEMTs; Active Noise control; Ultrasonic Loudspeaker; adaptive filtering; adaptive signal processing; remote noise cancellation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Industrial Electronics Society, IECON 2014 - 40th Annual Conference of the IEEE
Type :
conf
DOI :
10.1109/IECON.2014.7048844
Filename :
7048844
Link To Document :
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