Alexander Eriksson, Neville A. Stanton
Driver Reactions to Automated Vehicles (eBook, PDF)
A Practical Guide for Design and Evaluation
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Alexander Eriksson, Neville A. Stanton
Driver Reactions to Automated Vehicles (eBook, PDF)
A Practical Guide for Design and Evaluation
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This book covers the importance of considering driver variability when designing systems for human use.
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This book covers the importance of considering driver variability when designing systems for human use.
Dieser Download kann aus rechtlichen Gründen nur mit Rechnungsadresse in A, B, BG, CY, CZ, D, DK, EW, E, FIN, F, GR, HR, H, IRL, I, LT, L, LR, M, NL, PL, P, R, S, SLO, SK ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Taylor & Francis
- Seitenzahl: 176
- Erscheinungstermin: 4. Juli 2018
- Englisch
- ISBN-13: 9781351207508
- Artikelnr.: 56838458
- Verlag: Taylor & Francis
- Seitenzahl: 176
- Erscheinungstermin: 4. Juli 2018
- Englisch
- ISBN-13: 9781351207508
- Artikelnr.: 56838458
Dr. Alexander Eriksson, PhD, is a researcher at The Swedish National Road and Transport Research Institute (VTI) in Gothenburg, Sweden. He has a MSc and a BSc in Cognitive Science from Linköping University, Sweden and received his PhD degree within the Marie Curie ITN HF-Auto from the Faculty of Engineering and the Environment at the University of Southampton, where he is currently a visiting Research Fellow. During his PhD he was seconded to Jaguar Land Rover ltd. and the Technical University Munich (TUM). He was also tasked with running the Southampton University Driving Simulator lab facility during his PhD research. Alexanders' research interests lies within traffic safety, human performance, vehicle automation and how interaction between humans and technical systems may be facilitated.
Professor Neville Stanton, PhD, DSc, is a Chartered Psychologist, Chartered Ergonomist and Chartered Engineer. He holds the Chair in Human Factors Engineering in the Faculty of Engineering and the Environment at the University of Southampton in the UK. He has degrees in Occupational Psychology, Applied Psychology and Human Factors Engineering and has worked at the Universities of Aston, Brunel, Cornell and MIT. His research interests include modelling, predicting, analysing and evaluating human performance in systems as well as designing the interfaces and interaction between humans and technology. Professor Stanton has worked on design of automobiles, aircraft, ships and control rooms over the past 30 years, on a variety of automation projects. He has published 40 books and over 300 journal papers on Ergonomics and Human Factors. In 1998 he was presented with the Institution of Electrical Engineers Divisional Premium Award for research into System Safety. The Institute of Ergonomics and Human Factors in the UK awarded him The Otto Edholm Medal in 2001, The President's Medal in 2008 and The Sir Frederic Bartlett Medal in 2012 for his contributions to basic and applied ergonomics research. The Royal Aeronautical Society awarded him and his colleagues the Hodgson Prize in 2006 for research on design-induced, flight-deck, error published in The Aeronautical Journal. The University of Southampton has awarded him a Doctor of Science in 2014 for his sustained contribution to the development and validation of Human Factors methods.
Professor Neville Stanton, PhD, DSc, is a Chartered Psychologist, Chartered Ergonomist and Chartered Engineer. He holds the Chair in Human Factors Engineering in the Faculty of Engineering and the Environment at the University of Southampton in the UK. He has degrees in Occupational Psychology, Applied Psychology and Human Factors Engineering and has worked at the Universities of Aston, Brunel, Cornell and MIT. His research interests include modelling, predicting, analysing and evaluating human performance in systems as well as designing the interfaces and interaction between humans and technology. Professor Stanton has worked on design of automobiles, aircraft, ships and control rooms over the past 30 years, on a variety of automation projects. He has published 40 books and over 300 journal papers on Ergonomics and Human Factors. In 1998 he was presented with the Institution of Electrical Engineers Divisional Premium Award for research into System Safety. The Institute of Ergonomics and Human Factors in the UK awarded him The Otto Edholm Medal in 2001, The President's Medal in 2008 and The Sir Frederic Bartlett Medal in 2012 for his contributions to basic and applied ergonomics research. The Royal Aeronautical Society awarded him and his colleagues the Hodgson Prize in 2006 for research on design-induced, flight-deck, error published in The Aeronautical Journal. The University of Southampton has awarded him a Doctor of Science in 2014 for his sustained contribution to the development and validation of Human Factors methods.
Introduction. The Chatty Co
Driver: A Linguistics Approach Applying Lessons Learnt from Aviation Incidents. A toolbox for automated driving. Take
over time in highly automated vehicles. Contrasting simulated with on
road transition of control. After
effects of driver
paced transitions of control. Augmented reality guidance for control transitions in automated driving. Conclusion.
Driver: A Linguistics Approach Applying Lessons Learnt from Aviation Incidents. A toolbox for automated driving. Take
over time in highly automated vehicles. Contrasting simulated with on
road transition of control. After
effects of driver
paced transitions of control. Augmented reality guidance for control transitions in automated driving. Conclusion.
Introduction. The Chatty Co
Driver: A Linguistics Approach Applying Lessons Learnt from Aviation Incidents. A toolbox for automated driving. Take
over time in highly automated vehicles. Contrasting simulated with on
road transition of control. After
effects of driver
paced transitions of control. Augmented reality guidance for control transitions in automated driving. Conclusion.
Driver: A Linguistics Approach Applying Lessons Learnt from Aviation Incidents. A toolbox for automated driving. Take
over time in highly automated vehicles. Contrasting simulated with on
road transition of control. After
effects of driver
paced transitions of control. Augmented reality guidance for control transitions in automated driving. Conclusion.