DocumentCode :
3037497
Title :
On the Performance of Active Noise Control FX-LMS and FBFX-LMS Algorithms for Duct Network Noise Attenuation
Author :
Flotte-Hernandez, O.R. ; Pineda-Olivares, Alejandro ; Dieck-Assad, Graciano ; Avila-Ortega, Alfonso ; Martinez-Chapa, S.O. ; Bouchereau-Lara, Frantz
Author_Institution :
Electr. Eng. Dept., Tecnol. de Monterrey, Monterrey
fYear :
2008
fDate :
Sept. 30 2008-Oct. 3 2008
Firstpage :
575
Lastpage :
581
Abstract :
This paper develops an active noise control system (ANC) prototype to be used over a duct network model. The FX-LMS and FBFX-LMS algorithms were implemented using the TMS320C50 fixed point DSP system. Test results show that the FX-LMS algorithm achieves attenuations of up to 43 dB (at 300 Hz) and a mean attenuation of 38.72 dB for frequencies from 100 to 450 Hz. On the other hand, the FBFX-LMS algorithm achieves a mean attenuation of 31.52 dB for the frequency range from 100 to 450 Hz. Moreover, the step size parameter mu was optimized experimentally to obtain the maximum possible attenuation in the frequency range from 100 to 500 Hz. The best possible value for mu was 2048 and the optimized number of filter coefficients was M=128. Finally, the performance analysis illustrates the simplicity of the fixed point DSP solution in the ANC duct network noise cancellation systems.
Keywords :
active noise control; digital signal processing chips; filters; FBFX-LMS algorithms; TMS320C50 fixed point DSP system; active noise control; duct network noise attenuation; duct network noise cancellation systems; fixed point DSP solution; frequency 100 Hz to 500 Hz; mean attenuation; noise figure 38.72 dB; Active noise reduction; Attenuation; Control system synthesis; Digital signal processing; Ducts; Filters; Frequency; Performance analysis; Prototypes; Testing; Active noise control; FBFX-LMS algorithms; FX-LMS algorithms; digital signal processors; duct network noise attenuation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electronics, Robotics and Automotive Mechanics Conference, 2008. CERMA '08
Conference_Location :
Morelos
Print_ISBN :
978-0-7695-3320-9
Type :
conf
DOI :
10.1109/CERMA.2008.30
Filename :
4641134
Link To Document :
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