Metrika

  • citati u SCIndeksu: [11]
  • citati u CrossRef-u:[24]
  • citati u Google Scholaru:[]
  • posete u poslednjih 30 dana:11
  • preuzimanja u poslednjih 30 dana:11

Sadržaj

članak: 1 od 1  
2017, vol. 45, br. 3, str. 448-458
Pregled savremenih doprinosa u oblasti kontrole i unapređenja karakteristika buke i vibracija motornih vozila sa posebnim akcentom na dijagnostiku
aUniverzitet u Beogradu, Mašinski fakultet, Srbija + School of Electrical and Computer Engineering of Applied Studies, Belgrade
bUniverzitet u Beogradu, Mašinski fakultet, Srbija

e-adresadejanm@viser.edu.rs
Ključne reči: noise; vibration; harshness; diagnostics; analysis
Sažetak
U ovom radu prikazana su određena razmatranja vezana za karakteristike buke i vibracija savremenih motornih vozila. Pored naučnog, problematika se razmatra i sa praktičnog aspekta u cilju struktuiranja potrebnih znanja, neophodnih za pravilnu dijagnostiku problema. Takođe se razmatraju napredne analize signala buke i vibracija. Ova sinergija naučnog i praktičnog pristupa predstavlja osnovu za dalja napredna istraživanja.
Reference
*** (2011) SECTION 100-04: Noise, vibration and harshness: Service manual. Mustang, 2
Cohen, L. (1989) Time-frequency distributions-a review. Proceedings of the IEEE, 77(7): 941-981
Cvetković, D., Praščević, M. (2005) Noise and vibration. Niš: University of Niš, Faculty of Occupational Safety
Deulgaonkar, V.R., et al. Review and Diagnostics of noise and vibrations in automobiles. International Journal of Modern Engineering Research (IJMER), Vol.1, No.2, pp-242-246
Eisele, G., Wolff, K., Alt, N., Hüser, M. (2005) Application of Vehicle Interior Noise Simulation (VINS) for NVH Analysis of a Passenger Car. 400 Commonwealth Drive, Warrendale, PA, United States: SAE International
Girdhar, P., Scheffer, C. (2004) Predictive maintenance techniques. u: Practical Machinery Vibration Analysis and Predictive Maintenance, Elsevier BV, str. 1-10
Ilić, Z., Rašuo, B., Jovanović, M., Pekmezović, S., Bengin, A., Dinulović, M. (2014) Potential connections of cockpit floor: Seat on passive vibration reduction at Piston propelled airplane. Technical Gazette, Vol. 21; No. 3, pp. 471-478
Ilić, Z., Rašuo, B., Jovanović, M., Jovičić, S., Tomić, L., Janković, M., Petrašinović, D. (2017) The efficiency of passive vibration damping on the pilot seat of piston propeller aircraft. Measurement, 95: 21-32
Ilić, Z., Rašuo, B., Jovanović, M., Janković, D. (2013) Impact of changing quality of air/fuel mixture during flight of a piston engine aircraft with respect to vibration low frequency spectrum. FME Transactions, vol. 41, br. 1, str. 25-32
Janssens, K., Mas, P., Gielen, L., Gajdatsy, P., van der Auweraer, H. (2009) A Novel Transfer Path Analysis Method Delivering a Fast and Accurate Noise Contribution Assessment. 400 Commonwealth Drive, Warrendale, PA, United States: SAE International
Jovanović, M.M. (2010) Analiza niskofrekventnog spektra vibracija na elementima strukture helikoptera 'Gazela'. Vojnotehnički glasnik, vol. 58, br. 4, str. 17-36
Jurgen, R., Denenberg, J. (1999) Automotive electronics handbook. New York: McGraw-Hill, 2nd ed
Kim, S. J., Lee, S. K. (2008) Prediction of interior noise by excitation force of the powertrain based on hybrid transfer path analysis. International Journal of Automotive Technology, 9(5): 577-583
Kisić, E., et al. (2016) Application of T2 control charts on acoustic signals of internal combustion engines for fault detection. u: 3rd International Conference on Electrical, Electronic and Computing Engineering - IcEtran 2016, 13-16.06, Zlatibor, Serbia, Paper 5 in Session AUI2
Kuipers, J., Powel, N. Vehicle interior noise and vibration prediction using the Adams simulation tool. Great Britain: Ricardo Consulting Engineers Ltd
Lee, S.K. (2004) Identification of a vibration transmission path in a vehicle by measuring vibrational power flow. Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering, 218(2): 167-175
Lyon, R.H. (1975) Statistical energy analysis of dynamical systems: Theory and applications. Cambridge, MA: MIT Press
Lyon, R.H., Dejong, R.G. (1995) Theory and application of statistical energy analysis. Boston, MA: Butterworth-Heinemann, 2nd edition
Mićović, A. (2015) Integration and Evaluation of Influence of Comfort and Safety Parameters on Special-Purpose Vehicles. Belgrade: University of Belgrade, Faculty of Mechanical Engineering, Phd Thesis
Mitić, S.R., Rakićević, B.B., Stamenković, D.D., Popović, V.M. (2011) Teorijsko-eksperimentalna metoda za optimizaciju dinamičkog ponašanja modularnih nadgradnji vatrogasnih vozila. Istraživanja i projektovanja za privredu, vol. 9, br. 1, str. 267-275
Panda, K.C. (2016) Dealing with Noise and Vibration in Automotive Industry. Procedia Engineering, 144: 1167-1174
Panza, M.A. (2015) A Review of Experimental Techniques for NVH Analysis on a Commercial Vehicle. Energy Procedia, 82: 1017-1023
Plunt, J. (2005) Finding and Fixing Vehicle NVH Problems with Transfer Path Analysis. Sound & vibration, 39(11), pp. 12-17
Sakhaei, B., Durali, M. (2013) Vehicle Interior Vibration Simulation: A Tool for Engine Mount Optimization. International Journal of Automotive Engineering, Vol. 3, No. 4, pp. 541-554
Scarlett, A.J., Price, J.S., Stayner, R.M. (2007) Whole-body vibration: Evaluation of emission and exposure levels arising from agricultural tractors. Journal of Terramechanics, 44(1): 65-73
Sekulić, D., Dedović, V. (2011) Analiza uticaja vibracija na komfor korisnika međugradskog autobusa pomoću oscilatornog modela sa sedam stepeni slobode korišćenjem ADAMS/View softvera. Istraživanja i projektovanja za privredu, vol. 9, br. 3, str. 401-410
Selle, A., Pischinger, S., Fischer, M., Gunther, M. Engine noise components, Research Association for Combustion Engines (FVV, Frankfurt). MTZ Peer Review, Volume 75
Shangguan, W., Liu, X., Lv, Z., Rakheja, S. (2016) Design method of automotive powertrain mounting system based on vibration and noise limitations of vehicle level. Mechanical Systems and Signal Processing, 76-77: 677-695
Stamenković, D.D., Popović, V.M., Tirović, M.A. (2014) Operator's reaction time prolongation induced by whole-body vibration. FME Transactions, vol. 42, br. 4, str. 297-304
Svaricek, F., Fueger, T., Karkosch, H.J., Marienfeld, P., Bohn, C. Automotive applications of active vibration control. u: Lallart Mickael [ur.] Vibration Control, ISBN 978-953-307-117-6, pp. 303-318
Svetina, T., Zajc, L., Popović, V. (2012) The influence of Slovenian traffic safety agency on motor vehicle legislation. Journal of Applied Engineering Science, vol. 10, br. 2, str. 93-98
Šarić, M., Žuškin, E. (2002) Medicina rada i okoliša. Zagreb: Medicinska naklada, ISBN: 953-176-165-5
Van, der A.H., Mas, P., Dom, S., Vecchio, A., Janssens, K., Van, de P.P. (2007) Transfer Path Analysis in the Critical Path of Vehicle Refinement: The Role of Fast, Hybrid and Operational Path Analysis. 400 Commonwealth Drive, Warrendale, PA, United States: SAE International
van der Seijs, M.V., de Klerk, D., Rixen, D.J. (2016) General framework for transfer path analysis: History, theory and classification of techniques. Mechanical Systems and Signal Processing, 68-69: 217-244
Volkswagen of America, Inc (2005) Noise, vibration, and harshness. U.S.A, Self Study Program, Course Number 861503
Wang, X. (2010) Vehicle noise and vibration refinement. Cambridge: Woodhead Publishing Limited
Wellmann, T., Govindswamy, K., Braun, E., Wolff, K. (2007) Aspects of Driveline Integration for Optimized Vehicle NVH Characteristics. 400 Commonwealth Drive, Warrendale, PA, United States: SAE International
Yadav, S.K., Kalra, P.K. (2010) Automatic fault diagnosis of internal combustion engine based on spectrogram and artificial neural network. u: The 10th WSEAS Int. Conference on robotics, control and manufacturing technology, 11-13.04, Hangzhou, China, Proceedings of, pp. 101-107
 

O članku

jezik rada: engleski
vrsta rada: neklasifikovan
DOI: 10.5937/fmet1703448M
objavljen u SCIndeksu: 27.05.2017.
Creative Commons License 4.0

Povezani članci

Nema povezanih članaka