15.3.8.4.1 Driving Simulator, Simulated driving

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Driver Assistance. Driver Simulation. Driving Simulator. 2504

Yamada, K., Kuchar, J.K.,
Preliminary study of behavioral and safety effects of driver dependence on a warning system in a driving simulator,
SMC-A(36), No. 3, May 2006, pp. 602-610.
IEEE DOI 0606
BibRef

Fuller, H.J.A., Reed, M.P., Liu, Y.[Yili],
Integration of Physical and Cognitive Human Models to Simulate Driving With a Secondary In-Vehicle Task,
ITS(13), No. 2, June 2012, pp. 967-972.
IEEE DOI 1206
BibRef

Berthoz, A., Bles, W., Bulthoff, H.H., Correia Gracio, B.J., Feenstra, P., Filliard, N., Huhne, R., Kemeny, A., Mayrhofer, M., Mulder, M., Nusseck, H.G., Pretto, P., Reymond, G., Schlusselberger, R., Schwandtner, J., Teufel, H., Vailleau, B., van Paassen, M.M., Vidal, M., Wentink, M.,
Motion Scaling for High-Performance Driving Simulators,
HMS(43), No. 3, May 2013, pp. 265-276.
IEEE DOI 1305
BibRef

Gouy, M., Diels, C., Reed, N., Stevens, A., Burnett, G.,
Do drivers reduce their headway to a lead vehicle because of the presence of platoons in traffic? a conformity study conducted within a simulator,
IET-ITS(7), No. 2, 2013, pp. -.
DOI Link 1307
BibRef

Lanata, A., Valenza, G., Greco, A., Gentili, C., Bartolozzi, R., Bucchi, F., Frendo, F., Scilingo, E.P.,
How the Autonomic Nervous System and Driving Style Change With Incremental Stressing Conditions During Simulated Driving,
ITS(16), No. 3, June 2015, pp. 1505-1517.
IEEE DOI 1506
Biomedical monitoring BibRef

Oeltze, K., Schießl, C.,
Benefits and challenges of multi-driver simulator studies,
IET-ITS(9), No. 6, 2015, pp. 618-625.
DOI Link 1509
behavioural sciences computing BibRef

Valero-Mora, P.M., Pareja, I., Pons, D., Sánchez, M., Montes, S.A., Ledesma, R.D.,
Mindfulness, inattention and performance in a driving simulator,
IET-ITS(9), No. 7, 2015, pp. 690-693.
DOI Link 1509
cognition BibRef

Gruber, T.[Thierry], Larue, G.S.[Grégoire S.], Rakotonirainy, A.[Andry], Poulsen, N.K.[Niels K.],
Developing a simulation framework for safe and optimal trajectories considering drivers' driving style,
IET-ITS(11), No. 10, December 2017, pp. 624-631.
DOI Link 1711
BibRef

Bruschetta, M., Cenedese, C., Beghi, A., Maran, F.,
A Motion Cueing Algorithm With Look-Ahead and Driver Characterization: Application to Vertical Car Dynamics,
HMS(48), No. 1, February 2018, pp. 6-16.
IEEE DOI 1801
Acceleration, Automobiles, Optimization, Real-time systems, Solid modeling, Dynamic driving simulator, virtual reality BibRef

Cleij, D., Venrooij, J., Pretto, P., Pool, D.M., Mulder, M., Bülthoff, H.H.,
Continuous Subjective Rating of Perceived Motion Incongruence During Driving Simulation,
HMS(48), No. 1, February 2018, pp. 17-29.
IEEE DOI 1801
Atmospheric measurements, Current measurement, Motion measurement, Particle measurements, virtual reality BibRef

Shi, B., Xu, L., Meng, W.,
Applying a WNN-HMM Based Driver Model in Human Driver Simulation: Method and Test,
ITS(19), No. 11, November 2018, pp. 3431-3438.
IEEE DOI 1812
driver information systems, fuel economy, hidden Markov models, neural nets, road vehicles, steering systems, three-term control, neural network BibRef

Markkula, G., Romano, R., Jamson, A.H., Pariota, L., Bean, A., Boer, E.R.,
Using Driver Control Models to Understand and Evaluate Behavioral Validity of Driving Simulators,
HMS(48), No. 6, December 2018, pp. 592-603.
IEEE DOI 1812
closed loop systems, driver information systems, position control, road vehicles, steering systems, simulator validation BibRef

Xu, J., Shu, H., Shao, Y.,
Modeling of Driver Behavior on Trajectory-Speed Decision Making in Minor Traffic Roadways With Complex Features,
ITS(20), No. 1, January 2019, pp. 41-53.
IEEE DOI 1901
Trajectory, Roads, Integrated circuit modeling, Automobiles, Decision making, Computational modeling, Driving simulation, target trajectory BibRef

Zhu, L.[Lei], Li, S.G.[Shu-Guang], Li, Y.H.[Yao-Hua], Wang, M.[Min], Zhang, C.Y.[Chen-Yang], Li, Y.Y.[Yan-Yu], Yao, J.[Jin], Ji, H.[Hao],
Analysis of braking intention based on fNIRS in driving simulation experiments,
IET-ITS(13), No. 7, July 2019, pp. 1181-1189.
DOI Link 1906
BibRef

Fan, X.M.[Xin-Miao], Pan, G.F.[Gao-Feng], Mao, Y.[Yan], He, W.[Wu],
A personalized traffic simulation integrating emotion using a driving simulator,
VC(36), No. 6, June 2020, pp. 1203-1218.
WWW Link. 2005
BibRef

Spyridakos, P.D.[Panagiotis D.], Merat, N.[Natasha], Boer, E.R.[Erwin R.], Markkula, G.M.[Gustav M.],
Behavioural validity of driving simulators for prototype HMI evaluation,
IET-ITS(14), No. 6, June 2020, pp. 601-610.
DOI Link 2005
BibRef

Cheng, S.[Shuai], Song, J.[Jian], Fang, S.N.[Sheng-Nan],
A Universal Control Scheme of Human-Like Steering in Multiple Driving Scenarios,
ITS(22), No. 5, May 2021, pp. 3135-3145.
IEEE DOI 2105
Safety, Vehicles, Decision making, Trajectory, Process control, Wheels, Human-like steering control, driving simulator BibRef

Lee, H.[Hojin], Kim, H.[Hyoungkyun], Choi, S.[Seungmoon],
Driving Skill Modeling Using Neural Networks for Performance-Based Haptic Assistance,
HMS(51), No. 3, June 2021, pp. 198-210.
IEEE DOI 2106
Haptic interfaces, Artificial neural networks, Wheels, Torque, Brakes, Vehicles, Performance evaluation, simulated driving BibRef

Zhang, K.P.[Kun-Peng], Chang, C.[Cheng], Zhong, W.Q.[Wen-Qin], Li, S.[Shen], Li, Z.H.[Zhi-Heng], Li, L.[Li],
A Systematic Solution of Human Driving Behavior Modeling and Simulation for Automated Vehicle Studies,
ITS(23), No. 11, November 2022, pp. 21944-21958.
IEEE DOI 2212
Trajectory, Predictive models, Data models, Computational modeling, Vehicles, Analytical models, Uncertainty, Automated vehicles, vehicle simulation BibRef

Jiang, Z.H.[Zhi-Han], He, X.[Xin], Lu, C.[Chenhui], Zhou, B.B.[Bin-Bin], Fan, X.L.[Xiao-Liang], Wang, C.[Cheng], Ma, X.J.[Xiao-Juan], Ngai, E.C.H.[Edith C.H.], Chen, L.B.[Long-Biao],
Understanding Drivers' Visual and Comprehension Loads in Traffic Violation Hotspots Leveraging Crowd-Based Driving Simulation,
ITS(23), No. 12, December 2022, pp. 23369-23383.
IEEE DOI 2212
Vehicles, Visualization, Load modeling, Environmental factors, Solid modeling, Point cloud compression, Traffic violation, driving simulation BibRef

Large, D.R.[David R.], Pampel, S.M.[Sanna M.], Merriman, S.E.[Siobhan E.], Burnett, G.[Gary],
A validation study of a fixed-based, medium fidelity driving simulator for human-machine interfaces visual distraction testing,
IET-ITS(17), No. 6, 2023, pp. 1104-1117.
DOI Link 2307
distraction testing, driving simulator, human-computer interaction, on-road, pointing, touchscreen, visual demand BibRef

Sadid, H.[Hashmatullah], Antoniou, C.[Constantinos],
Modelling and simulation of (connected) autonomous vehicles longitudinal driving behavior: A state-of-the-art,
IET-ITS(17), No. 6, 2023, pp. 1051-1071.
DOI Link 2307
automated driving and intelligent vehicles, autonomous driving, transport modeling and microsimulation BibRef

Löckel, S.[Stefan], Ju, S.W.[Si-Wei], Schaller, M.[Maximilian], van Vliet, P.[Peter], Peters, J.[Jan],
An Adaptive Human Driver Model for Realistic Race Car Simulations,
SMCS(53), No. 11, November 2023, pp. 6718-6730.
IEEE DOI 2310
BibRef

Jami, A.[Ahura], Razzaghpour, M.[Mahdi], Alnuweiri, H.[Hussein], Fallah, Y.P.[Yaser P.],
Augmented driver behavior models for high-fidelity simulation study of crash detection algorithms,
IET-ITS(18), No. 3, 2024, pp. 436-449.
DOI Link 2403
driver behavior model, driver reaction, intelligent transportation systems, traffic simulation, vehicular safety simulation BibRef

Kolff, M.[Maurice], Venrooij, J.[Joost], Schwienbacher, M.[Markus], Pool, D.M.[Daan M.], Mulder, M.[Max],
Reliability and Models of Subjective Motion Incongruence Ratings in Urban Driving Simulations,
HMS(54), No. 6, December 2024, pp. 634-645.
IEEE DOI 2412
Reliability, Predictive models, Prediction algorithms, Human-machine systems, Parametric statistics, Urban areas, urban driving BibRef

Haselberger, J.[Johann], Böhle, M.[Maximilian], Schick, B.[Bernhard], Müller, S.[Steffen],
Exploring the Influence of Driving Context on Lateral Driving Style Preferences: A Simulator-Based Study,
ITS(26), No. 4, April 2025, pp. 5448-5466.
IEEE DOI Code:
WWW Link. 2504
Vehicles, Meteorology, Driver behavior, Safety, Roads, Autonomous vehicles, Trajectory, Vehicle dynamics, User experience, transportation BibRef


Suo, S.[Simon], Wong, K.[Kelvin], Xu, J.[Justin], Tu, J.[James], Cui, A.[Alexander], Casas, S.[Sergio], Urtasun, R.[Raquel],
MIXSIM: A Hierarchical Framework for Mixed Reality Traffic Simulation,
CVPR23(9622-9631)
IEEE DOI 2309
BibRef

Landry, S.[Steven], Wang, Y.G.[Yu-Guang], Lautala, P.[Pasi], Nelson, D.[David], Jeon, M.[Myounghoon],
Driver Behavior at Simulated Railroad Crossings,
DHM18(599-609).
Springer DOI 1807
BibRef

Alyuz, N., Aslan, S., Healey, J., Alvarez, I.J., Esme, A.A.,
Towards Understanding Emotional Reactions of Driver-Passenger Dyads in Automated Driving,
FG18(585-592)
IEEE DOI 1806
Automation, Cameras, Data collection, Labeling, Roads, Vehicles, affective computing, automated driving, drive simulation, labeling BibRef

Chapter on Active Vision, Camera Calibration, Mobile Robots, Navigation, Road Following continues in
Lane Departure Detection, Lane Keeping, Lane Control Assistance .


Last update:Jul 7, 2025 at 14:35:55