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Zheng, Y. (author), Shyrokau, B. (author), Keviczky, T. (author)
The acceptance of automated driving is under the potential threat of motion sickness. It hinders the passengers' willingness to perform secondary activities. In order to mitigate motion sickness in automated vehicles, we propose an optimization-based motion planning algorithm that minimizes the distribution of acceleration energy within the...
journal article 2024
document
Rajesh, Nishant (author), Zheng, Y. (author), Shyrokau, B. (author)
Automated vehicles promise numerous advantages to their users. The proposed benefits could however be overshadowed by a rise in the susceptibility of passengers to motion sickness due to their engagement in non-driving tasks. Increasing attention is paid to designing vehicle motion to mitigate motion sickness. In this work, the deep...
journal article 2023
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Zheng, Y. (author), Shyrokau, B. (author), Keviczky, T. (author), Sakka, Monzer Al (author), Dhaens, Miguel (author)
The benefits of automated driving can only be fully realized if the occupants are protected from motion sickness. Active suspensions hold the potential to raise the comfort level in automated passenger vehicles by enabling new functionalities in chassis control. One example is to actively lean the vehicle body toward the center of the corner...
journal article 2022
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Zheng, Y. (author), Shyrokau, B. (author), Keviczky, T. (author)
Motion comfort is the basis of many societal benefits promised by automated driving and motion planning is primarily responsible for this. By planning the spatial trajectory and the velocity profile, motion planners can significantly enhance motion comfort, ideally without sacrificing time efficiency. Active suspensions can push the boundary...
conference paper 2022
document
Yu, Chuanyang (author), Zheng, Y. (author), Shyrokau, B. (author), Ivanov, Valentin (author)
Many studies have been recently exploited to discuss the path following control algorithms for automated vehicles using various control techniques. However, path following algorithm considering the possibility of automated vehicles with rear wheel steering (RWS) is still less investigated. In this study, we implemented nonlinear model...
conference paper 2021
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Zheng, Y. (author), Shyrokau, B. (author), Keviczky, T. (author)
The public acceptance of automated driving is influenced by multiple factors. Apart from safety being of top priority, comfort and time efficiency also have an impact on the popularity of automated vehicles. These two factors contradict each other as optimizing for one results in the degradation of the other. We investigate in this paper how...
conference paper 2021
document
Chatrath, Karan (author), Zheng, Y. (author), Shyrokau, B. (author)
Advanced passenger vehicles are complex dynamic systems that are equipped with several actuators, possibly including differential braking, active steering, and semi-active or active suspensions. The simultaneous use of several actuators for integrated vehicle motion control has been a topic of great interest in literature. To facilitate this, a...
journal article 2020
document
Zheng, Y. (author), Shyrokau, B. (author)
Loss of lateral stability remains a major cause of road accidents in recent years. Further improvement of passenger vehicle's active safety requires a more efficient utilization of the tire-road friction. Nonlinear model predictive control (NMPC) is expected to fulfill such a role, as the nonlinear characteristics of the vehicle are included...
conference paper 2019
document
Ferranti, L. (author), Ferreira de Brito, B.F. (author), Pool, E.A.I. (author), Zheng, Y. (author), Ensing, R.M. (author), Happee, R. (author), Shyrokau, B. (author), Kooij, J.F.P. (author), Alonso-Mora, J. (author), Gavrila, D. (author)
This paper presents our research platform SafeVRU for the interaction of self-driving vehicles with Vulnerable Road Users (VRUs, i.e., pedestrians and cyclists). The paper details the design (implemented with a modular structure within ROS) of the full stack of vehicle localization, environment perception, motion planning, and control, with...
conference paper 2019
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