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 Vehicle Dynamics and Control
AEB Simulation Method Based on Vehicle Test Data for Accident Analysis of ADAS Vehicles
Jonghyuk Kim , Jaehyeong Lee , Jihun Choi , woojeong jeon
Int J Automot Technol. 2024;25(2):261-277.    DOI: https://doi.org/10.1007/s12239-024-00019-5
      
 Body and Safety, Manufacturing, Materials and Recycling
A METHOD FOR PREDICTING HIC15, CHEST G’S AND CHEST DEFLECTION BASED ON RESULTS OF USNCAP FRONTAL IMPACT TESTS
Jae Moon Lim
Int J Automot Technol. 2021;22(3):657-663.    DOI: https://doi.org/10.1007/s12239-021-0061-z
      
 Intelligent Vehicle / Transportation Systems
CYCLIST TARGET AND TEST SETUP FOR EVALUATION OF CYCLIST-AUTONOMOUS EMERGENCY BRAKING
Olaf Op den Camp, Sjef van Montfort, Jeroen Uittenbogaard, Joke Welten
Int J Automot Technol. 2017;18(6):1085-1097.    DOI: https://doi.org/10.1007/s12239-017-0106-5
         Cited By 21
 Automobile Body and Safety
LUMPED MASS-SPRING MODEL CONSTRUCTION FOR CRASH ANALYSIS USING FULL FRONTAL IMPACT TEST DATA
Jae Moon Lim
Int J Automot Technol. 2017;18(3):463-472.    DOI: https://doi.org/10.1007/s12239-017-0046-0
         Cited By 9
 Automobile Body and Safety
MINIMIZING PEDESTRIAN LOWER-LEG INJURY CONSIDERING RATE DEPENDENCE OF THE PLASTIC ENERGY ABSORBER
H. M. GIL, Y. D. KWON, D. H. KIM, Y. S. KIM
Int J Automot Technol. 2016;17(5):829-841.    DOI: https://doi.org/10.1007/s12239-016-0081-2
         Cited By 6
 Automobile Body and Safety
DESIGN METHODOLOGY TO REDUCE THE CHEST DEFLECTION IN US NCAP AND EURO NCAP TESTS
W.-M. CHOI, H.-Y. JEONG
Int J Automot Technol. 2012;13(5):765-773.    DOI: https://doi.org/10.1007/s12239-012-0076-6
         Cited By 7
 Automobile Body and Safety
OPTIMUM SUV BUMPER SYSTEM DESIGN CONSIDERING PEDESTRIAN PERFORMANCE
D. K. PARK, C. D. JANG
Int J Automot Technol. 2010;11(6):819-824.    DOI: https://doi.org/10.1007/s12239-010-0097-y
         Cited By 10
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