Optimization of vehicle pulse index parameters based on validated vehicleoccupant finite element mode

Vehicle safety performance is important to reduce occupant injuries during accidents. In general, vehicle manufacturers are utilizing analytical models to predict the vehicle passive safety performance during the early design stage. The two popular methods are the Occupant Limit Criterion (OLC) and...

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Main Authors: Abdul Samad, M. S., Mohd Nor, M. K., Abdul Majid, M. M., Abu Kassim, K. K.
Format: Article
Language:English
Published: Taylor&francis 2023
Subjects:
Online Access:http://eprints.uthm.edu.my/9273/1/J15214_d9d0d9b1a3a6e82991a291de511f1add.pdf
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author Abdul Samad, M. S.
Mohd Nor, M. K.
Abdul Majid, M. M.
Abu Kassim, K. K.
author_facet Abdul Samad, M. S.
Mohd Nor, M. K.
Abdul Majid, M. M.
Abu Kassim, K. K.
author_sort Abdul Samad, M. S.
collection UTHM
description Vehicle safety performance is important to reduce occupant injuries during accidents. In general, vehicle manufacturers are utilizing analytical models to predict the vehicle passive safety performance during the early design stage. The two popular methods are the Occupant Limit Criterion (OLC) and Vehicle Pulse Index (VPI). In this paper, new VPI parameters are proposed to predict the driver 3 ms chest acceleration of Hybrid III 50th percentile (H350) in B-segment vehicle subjected to generic crash load cases. A good correlation between the newly optimized VPI parameters with the measured 3 ms chest acceleration is observed in this work. More refinement can be further included to improve the robustness of the new proposed parameters by adding more sampling data.
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spelling uthm.eprints-92732023-07-17T07:47:12Z http://eprints.uthm.edu.my/9273/ Optimization of vehicle pulse index parameters based on validated vehicleoccupant finite element mode Abdul Samad, M. S. Mohd Nor, M. K. Abdul Majid, M. M. Abu Kassim, K. K. T Technology (General) Vehicle safety performance is important to reduce occupant injuries during accidents. In general, vehicle manufacturers are utilizing analytical models to predict the vehicle passive safety performance during the early design stage. The two popular methods are the Occupant Limit Criterion (OLC) and Vehicle Pulse Index (VPI). In this paper, new VPI parameters are proposed to predict the driver 3 ms chest acceleration of Hybrid III 50th percentile (H350) in B-segment vehicle subjected to generic crash load cases. A good correlation between the newly optimized VPI parameters with the measured 3 ms chest acceleration is observed in this work. More refinement can be further included to improve the robustness of the new proposed parameters by adding more sampling data. Taylor&francis 2023 Article PeerReviewed text en http://eprints.uthm.edu.my/9273/1/J15214_d9d0d9b1a3a6e82991a291de511f1add.pdf Abdul Samad, M. S. and Mohd Nor, M. K. and Abdul Majid, M. M. and Abu Kassim, K. K. (2023) Optimization of vehicle pulse index parameters based on validated vehicleoccupant finite element mode. INTERNATIONAL JOURNAL OF CRASHWORTHINESS. pp. 1-8. https://doi.org/10.1080/13588265.2022.2074720
spellingShingle T Technology (General)
Abdul Samad, M. S.
Mohd Nor, M. K.
Abdul Majid, M. M.
Abu Kassim, K. K.
Optimization of vehicle pulse index parameters based on validated vehicleoccupant finite element mode
title Optimization of vehicle pulse index parameters based on validated vehicleoccupant finite element mode
title_full Optimization of vehicle pulse index parameters based on validated vehicleoccupant finite element mode
title_fullStr Optimization of vehicle pulse index parameters based on validated vehicleoccupant finite element mode
title_full_unstemmed Optimization of vehicle pulse index parameters based on validated vehicleoccupant finite element mode
title_short Optimization of vehicle pulse index parameters based on validated vehicleoccupant finite element mode
title_sort optimization of vehicle pulse index parameters based on validated vehicleoccupant finite element mode
topic T Technology (General)
url http://eprints.uthm.edu.my/9273/1/J15214_d9d0d9b1a3a6e82991a291de511f1add.pdf
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