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Desai, R.R. (author), Cvetković, M. (author), Papaioannou, G. (author), Happee, R. (author)
Due to the complexity of the human body and its neuromuscular stabilization, it has been challenging to efficiently and accurately predict human motion and capture posture while being driven. Existing simple models of the seated human body are mostly two-dimensional and developed in the mid-sagittal plane exposed to in-plane excitation. Such...
conference paper 2023
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Messiou, C. (author), Papaioannou, G. (author), Happee, R. (author)
The goal of this paper is to contribute to the accurate prediction of human body motion by proposing a novel head-neck model for dynamic driving scenarios with complex vehicle motions. While automated vehicles are considered a potential solution to several transportation issues, there are still significant challenges that need to be addressed...
conference paper 2023
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Desai, R.R. (author), Cvetković, M. (author), Papaioannou, G. (author), Happee, R. (author)
Active muscles are crucial for maintaining postural stability when seated in a moving vehicle. Advanced active 3D non-linear full body models have been developed for impact and comfort simulation, including large numbers of individual muscle elements, and detailed non-linear models of the joint structures. While such models have an apparent...
conference paper 2023