Computationally Efficient Human Body Modelling for Real Time Motion Comfort Assessment

Author:

Desai Raj,Cvetković Marko,Wu Junda,Papaioannou Georgios,Happee Riender

Publisher

Springer Nature Switzerland

Reference17 articles.

1. Irmak, T., De Winkel, K., Pattanayak, A., Happee, R.: Motion sickness, motivation, workload and task performance in automate d vehicles. In: Comfort Congress (2021)

2. ISO-2631–1: Mechanical Vibration and Shock—Evaluation of Human Exposure to Whole-Body Vibration—Part 1: General Requirements. ISO standard, p. 2631 (1997)

3. Happee, R., Hoofman, M., van den Kroonenberg, A.J., Morsink, P., Wismans, J.: A mathematical human body model for frontal and rearward seated automotive impact loading. SAE Transactions, pp. 2720–2734 (1998)

4. Mirakhorlo, M., Kluft, N., Shyrokau, B., Happee, R.: Effects of seat back height and posture on 3D vibration transmission to pelvis, trunk and head. Int. J. Ind. Ergon. 91, 103327 (2022)

5. Iwamoto, M., Kisanuki, Y., Watanabe, I., Furusu, K., Miki, K., Hasegawa, J.: Development of a finite element model of the total human model for safety (THUMS) and application to injury reconstruction. In: Proceedings of the international IRCOBI Conference, pp. 18–20 (2002)

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