DİŞÇİ DELGİSİ GÜRÜLTÜSÜ İÇİN AKTİF GÜRÜLTÜ DENETLEYİCİ TASARIMI VE UYGULAMASI

Dişçi delgileri yüksek frekanslı, hastaları rahatsız eden ve gürültü olarak adlandırılabilecek bir ses çıkartırlar. Dişçi delgisi sesi, rahatsız edici olmasının yanı sıra insan sağlığı üzerinde olumsuz etkilere sahiptir, bu nedenle gürültü kontrol yöntemleriyle bastırılması gereklidir. Bu çalışmada dişçi delgi sesi, mikrofonlar, hoparlör ve sayısal işleme kartından oluşan bir Aktif Gürültü Kontrol (AGK) sistemiyle açık alanda bastırılmaya çalışılmıştır. Çalışma, kullanılan yordam ve yüksek frekanslı bir gürültünün AGK yöntemiyle açık alanda bastırılmaya çalışılması yönlerinden yazında yer alan AGK çalışmalarından farklılık göstermektedir. Uygulama sonuçlarına göre önerilen AGK sisteminin başarımı tatmin edicidir

ACTIVE NOISE CONTROLLER DESIGN AND IMPLEMENTATION FOR DENTAL DRILL NOISE

Dental drills produce a high frequency sound that disturbs the patients and can be called as noise. The sound of dentist drill is not only disturbing but also has adverse effects on human health so it is needed to be suppressed with noise control methods. In this study, the dentist drill noise has tried to be suppressed in open field with an Active Noise Control (ANC) system that consists of microphones, speaker and a digital signal processing card. The study differs from the ANC studies in the literature in terms of the algorithm used and the attempt to suppress a high frequency noise with ANC method in an open field. According to the implementation results, the performance of the proposed ANC system is satisfactory

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  • Zubick H.H., Tolentino, A.T., Boffa, J. 1980. Hearing Loss and the High Speed Dental Handpiece, American Journal of Public Health, Cilt.70, no:6, s. 633-635.
  • Theodoroff, S. M., Folmer, R. L. 2013. Hearing Loss Associated with Long-Term Exposure to High- Speed Dental Handpieces, General Dentistry.
  • Rotter, K. R. G. R., Atherton, M. A., Kaymak, E., ve Millar, B. J. 2008. Noise reduction of dental drill noise. Mechatronics 2008, 23-25 Haziran, İrlanda, 1-5.
  • Kaymak, E., Atherton M. 2006. Active Noise Control at Higher Frequencies.
  • International Congress on Sound and Vibration, 2-6 Temmuz, Viyana, Avusturya, 275-281.
  • DOI: 10.13140/RG.2.1.4621.2886
  • Kuo, S. M., Morgan, D. 1995. Active Noise Control Systems: Algorithms and DSP Implementations. John Wiley & Sons, Inc. 389s.
  • Thanigai, P., Kuo, S. M., Yenduri, R. 2007. Nonlinear Active Noise Control For Infant Incubators in Neo-Natal İntensive Care Units. IEEE International Conference on Acoustics, Speech and Signal Processing, ICASSP 2007, 16-20 Nisan, Honolulu Amerika 109-112. DOI: 10.1109/ICASSP.2007.36662 8.
  • Vemuri, S. H. K., Ganguly, A., Panahi, I. 2014. Real-Time Active Noise Control Of Multi-Tones And MRI Acoustic Noise in FMRI Bore with Signal Decomposition and Parallel Adaptive
  • IEEE Circuits and Systems Conference, 12-13 Ekim, Dallas, Amerika, 1-4.
  • DOI:10.1109/DCAS.2014.6965339 [8] Wang, L., Gan, W. S., Kuo, S. M. Integration 2008.
  • Enhancement and Active Noise Control System in Automobile Cabin. Advances in Acoustics and Vibration, Article ID 869130. DOI:10.1155/2008/869130
  • Zou G., Antilla M., Lankila A. , Kataja J. 2009. Equalized Algorithm for A Truck Cabin Active Noise Control. http://www.akustinenseura.fi/wp- content/uploads/2013/08/44_Zou. pdf
  • (Erişim Tarihi: 09.10.2017)
  • Homma K. 2004. Compact Integrated Active - Passive Approach for Axial Fan Noise Control,
  • Institute and State Üniversitesi, Doktora Tezi, 212 s. Virginia.
  • Ardekani, I. T., Abdulla, W. H. 2011. FxLMS-based Active Noise Control: A Quick Review. Asia- Pasific Signal and Information Processing Association Annual Summit and Conference APSIPA ASC 2011, 18-21 Ekim, Xi’an, Çi,. 10s.
  • Dixit, S.,, Nagaria, D. 2017. LMS Filters Adaptive Cancellation:
  • International Journal of Electrical and Computer Engineering, Cilt. 7, no:5,
  • 11591/ijece.v7i5.pp2520-2529 DOI: [13] Deb, A., Kar, A., Chandra, M. 2014. A Technical Review On Adaptive Algorithms For Acoustic Echo International Communications
  • Processing (ICCSP), 3-5 Nisan, Melmaruvathur, Hindistan, 41-45. [14] Fang, Y., Zhu, X., Liu, H., & Gao, Z. 2017. Hybrid Fx-NLMS Algorithm for Active Vibration Control of Flexible Beam with Piezoelectric Stack Actuator. In Advanced Computational Methods in Life System Modeling and Simulation Springer, Singapur, 273-281. DOI: 10.1007/978-981-10-6370-1_27
  • Chung, I. J. 2016. Multi-channel normalized FxLMS algorithm for active noise control, Journal of The Acoustical Society of Korea, Cilt. 35, No.4, s. 280-287.
  • DOI: 10.7776/ASK.2016.35.4.280 Budati, A. N., Rao, B. B. 2014. Performance Feedforward
  • Canceller Using Nfxlms Algorithm, International Journal of Innovative Research in Electrical, Electronics, Instrumentation
  • Engineering, Cilt. 2, s. 1940-1944. Control [17] Eriksson L. J., Allie M. C. 1989. Use of Random Noise for On-Line Transducer Modeling in An Adaptive
  • System. J. Acoust.Soc. Am., Cilt. 85, s. 797–802.
Dokuz Eylül Üniversitesi Mühendislik Fakültesi Fen ve Mühendislik Dergisi-Cover
  • ISSN: 1302-9304
  • Yayın Aralığı: Yılda 3 Sayı
  • Başlangıç: 1999
  • Yayıncı: Dokuz Eylül Üniversitesi Mühendislik Fakültesi