Multi objective optimization of noise and vibration in passenger car cabin by using goal programming approach

Ahmad Kadri Junoh, Zulkifli Mohd Nopiah, Wan Zuki Azman Wan Muhamad, Mohd. Jailani Mohd Nor

Research output: Chapter in Book/Report/Conference proceedingConference contribution

3 Citations (Scopus)

Abstract

Car cabin acoustical comfort is one of the main points which may attract the customers to purchase a new vehicle. Basically the noise in passenger car cabin is closely related to generated vibration in the vehicle system. The amount of discomfort depends to magnitude, frequency, direction and also the duration of exposed vibration in the cabin. The comfort of the driving influences driving performance. Generally the vibration is caused by two main sources: engine transmission and interaction between tyre and road surface. In this study the effects of vibration to noise in passenger car cabin were studied. Vehicle acoustical comfort index (VACI) was used to evaluate the noise annoyance level and vibration dose value (VDV) was used to evaluate the vibration level. According to the changes trend of noise and vibration level depending to engine speeds, goal programming model was used to optimise the noise annoyance level in passenger car cabin. At the end of study, a multi objective model successfully built to optimize the noise annoyance levels by looking the required vibration dose value at certain engine speeds. The results of the study might be useful for automotive researchers to provide technical method to optimize acoustical comfort in manufacturing of vehicles.

Original languageEnglish
Title of host publicationAdvanced Materials Research
Pages976-983
Number of pages8
Volume383-390
DOIs
Publication statusPublished - 2012
Event2011 International Conference on Manufacturing Science and Technology, ICMST 2011 - Singapore
Duration: 16 Sep 201118 Sep 2011

Publication series

NameAdvanced Materials Research
Volume383-390
ISSN (Print)10226680

Other

Other2011 International Conference on Manufacturing Science and Technology, ICMST 2011
CitySingapore
Period16/9/1118/9/11

Fingerprint

Passenger cars
Multiobjective optimization
Engines
Tires
Railroad cars

Keywords

  • Goal programming
  • Sound quality
  • Vehicle acoustical comfort index (VACI)
  • Vibration

ASJC Scopus subject areas

  • Engineering(all)

Cite this

Junoh, A. K., Mohd Nopiah, Z., Muhamad, W. Z. A. W., & Mohd Nor, M. J. (2012). Multi objective optimization of noise and vibration in passenger car cabin by using goal programming approach. In Advanced Materials Research (Vol. 383-390, pp. 976-983). (Advanced Materials Research; Vol. 383-390). https://doi.org/10.4028/www.scientific.net/AMR.383-390.976

Multi objective optimization of noise and vibration in passenger car cabin by using goal programming approach. / Junoh, Ahmad Kadri; Mohd Nopiah, Zulkifli; Muhamad, Wan Zuki Azman Wan; Mohd Nor, Mohd. Jailani.

Advanced Materials Research. Vol. 383-390 2012. p. 976-983 (Advanced Materials Research; Vol. 383-390).

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Junoh, AK, Mohd Nopiah, Z, Muhamad, WZAW & Mohd Nor, MJ 2012, Multi objective optimization of noise and vibration in passenger car cabin by using goal programming approach. in Advanced Materials Research. vol. 383-390, Advanced Materials Research, vol. 383-390, pp. 976-983, 2011 International Conference on Manufacturing Science and Technology, ICMST 2011, Singapore, 16/9/11. https://doi.org/10.4028/www.scientific.net/AMR.383-390.976
Junoh AK, Mohd Nopiah Z, Muhamad WZAW, Mohd Nor MJ. Multi objective optimization of noise and vibration in passenger car cabin by using goal programming approach. In Advanced Materials Research. Vol. 383-390. 2012. p. 976-983. (Advanced Materials Research). https://doi.org/10.4028/www.scientific.net/AMR.383-390.976
Junoh, Ahmad Kadri ; Mohd Nopiah, Zulkifli ; Muhamad, Wan Zuki Azman Wan ; Mohd Nor, Mohd. Jailani. / Multi objective optimization of noise and vibration in passenger car cabin by using goal programming approach. Advanced Materials Research. Vol. 383-390 2012. pp. 976-983 (Advanced Materials Research).
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