Implementación de un Control Activo de Ruido en Configuración Feedback basado en un Microcontrolador

Pablo Tomás Bernadí, Pablo Gomez

Resumen


Este trabajo describe la implementación de un sistema de control activo de ruido sobre la plataforma EDU-CIAA-NXP con hardware reducido y de bajo costo. Se hace una revisión del algoritmo filtered-X LMS en configuraciones feedforward y feedback, y se detalla el diseño de filtros anti-alias y de reconstrucción. Se describe el software que corre sobre la plataforma, y se muestran resultados de ensayos con la configuración feedback. Usando un tono puro como señal perturbadora se logró una atenuación de 30dB, que es adecuada según requerimientos de performance en aplicaciones de control activo de ruido.

Palabras clave


acústica; audio; control; filtered-X LMS; EDU-CIAA-NXP

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Referencias


R. P. King and J. R. Davis, “Community noise: Health effects and management,” International Journal of Hygiene and Environmental Health, vol. 206, no. 2, pp. 123 – 131, 2003.

P. Lueg, “Process of silencing sound oscillations,” U.S. Patent 2 043 416, June 9, 1936.

S. M. Kuo and D. R. Morgan, “Active Noise Control: A Tutorial Review,” in Proceedings of the IEEE, vol. 87, no. 6, Jun. 1999, pp. 943–973.

L. Wu, X. Qiu, and Y. Guo, “A simplified adaptive feedback active noise control system,” vol. 81, pp. 40–46, 07 2014.

S. O. Haykin, Adaptive Filter Theory. Prentice Hall, 1995.

Stéphane Boucher, Martı́n Bouchard, André L’esperance and Bruno Paillard, “Implementing a Single Channel Active Adaptive Noise Canceller with the TMS320C50 DSP Starter Kit,” Department of Electrical and Computer Engineering, Faculty of Applied Sciences, University of Sherbrooke, Sherbrooke, Quebec, Application Report, Nov. 1997.

S. M. Kuo, X. Kong, and W. S. Gan, “Applications of adaptive feedback active noise control system,” IEEE Transactions on Control Systems Technology, vol. 112, no. 2, pp. 216–2202, March 2003.

P. Peretti, S. Cecchi, L. Romoli, and F. Piazza, “Adaptive feedback active noise control for yacht enviuronments,” IEEE Transactions on Control Systems Technology, vol. 22, no. 2, pp. 737-744, 2014.

C. K. Chen, T.-D. Chiueh, and J.-H. Chen, “Active cancellation system of acoustic noise in mr imaging,” IEEE Transactions on Biomedical Engineering, vol. 46, no. 2, pp. 186–191, Feb 1999.

B. Widrow and M. E. Hoff, “Neurocomputing: Foundations of Research,” J. A. Anderson and E. Rosenfeld, Eds. Cambridge, MA, USA: MIT Press, 1988, ch. Adaptive Switching Circuits, pp. 123–134.

A. Goldstein, “Ons Steepest Descent,” Journal of the Society for Industrial and Applied Mathematics Series A Control, vol. 3, no. 1, pp. 147–151, 1965.

J. C. Burgess, “Active adaptive sound control in a duct: A computer simulation,” vol. 70, 09 1981.

Proyecto CIAA. [Online]. Available: http://www.proyecto-ciaa.com.ar/

J. Caldwell, “Single Supply, Electret Microphone Pre-Amplifier Reference Design,” Texas Instruments, Sherbrooke, Quebec, Application Report, Jan. 2015.

“Improving ADC Resolution by Oversampling and Averaging AN118,” Silicon Labs, Application Report, 2013.

Why is the rand() function not the least bit random in the LPC11u24 MBED? [Online]. Available: http://os.mbed.com/questions/2886/Why-is-the-rand-function-not-the-least-b/

LPCOpen Libraries and Examples. [Online]. Available: http://www.nxp.com/support/developer-resources/software-development-tools/lpc-developer-resources-/lpcopen-libraries-and-examples:LPC-OPEN-LIBRARIES

CMSIS DSP Software Library. [Online]. Available: http://arm-software.github.io/CMSIS 5/DSP/html/index.html




DOI: https://doi.org/10.37537/rev.elektron.2.2.49.2018

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Copyright (c) 2018 Pablo Gomez

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