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Towards Understanding Motivational and Emotional Factors in Driver Behaviour: Comfort Through Satisficing

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Modelling Driver Behaviour in Automotive Environments

Abstract

The early’ skill models’ of driver behaviour and safety posited that the safety of a driver is mainly determined by the level of his or her perceptual and motor skills in relation to the task demands: a crash — a failure in driver performance —occurs when task demands exceed driver capabilities (e.g., Blumenthal, 1968). Consequently, improving driver skills and reducing task demands would make traffic safer. Obviously, however, this early concept was too simple. A good piece of counterevidence, among others, came from (1974), who showed that classified U.S. race drivers have more crashes per exposure than average drivers — and also more speeding tickets. At least the advanced skills which make those drivers competitive in race track did not save them from crashes, as they obviously traded skills for speed on ordinary roads, too. Theorists and road safety people indeed forgot that driving is a self-paced task and drivers themselves do determine their task demands to a large extent (Näätänen and Summala, 1974). The behavioural adaptation concept is now one of basic tenets in traffic psychology, here defined by (1996): ‘the driver is inclined to react to changes in the traffic system, whether they be in the vehicle, in the road environment, in road and weather conditions, or in his/her own skills or states, and that this reaction occurs in accordance with his/her motives’.

This is an extension of the author’s earlier paper presented in the symposium on traffic psychology theories in the 3rd International Congress of Traffic and Transport Psychology (see Summala, 2005).

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References

  • Ajzen, I. (1991). The theory of planned action. Organizational Behavior and Human Deision Processes, 50, 179–211.

    Article  Google Scholar 

  • Baguley, C.J. (1988). ‘Running the red’ at signals on high-speed roads. Traffic Engineering and Control, 29, 415–420.

    Google Scholar 

  • Bechara, A., Damasio, H., Tranel, D. and Damasio, A.R. (1997). Deciding advantageously before knowing the advantageous strategy. Science, 275(5304), 1293–1295.

    Article  Google Scholar 

  • Black, S. (1966). Man and motor cars. Seeker & Warburg, London.

    Google Scholar 

  • Blumenthal, M. (1968). Dimensions of the traffic safety problem. Traffic Safety Research Review, 12, 7–12.

    Google Scholar 

  • Brown, I.D. (1980). Error-correction probability as a determinant of drivers’ subjective risk. In D.J. Oborne and J.A. Levis(Eds.). Human factors in transport research (Vol. 2, pp. 311–319). Academic Press, London.

    Google Scholar 

  • Canudas-de-Wit, C., Bechart, H., Claeys, X., Dolcini, P. and Martinez, J.J. (2005). Fun-to-drive by feedback. European Journal of Control, 11(4/5), 353–383.

    Article  MathSciNet  Google Scholar 

  • Connolly, T. and Åberg, L. (1993). Some contagion models of speeding. Accident Analysis and Prevention, 25(1), 57–66.

    Article  Google Scholar 

  • Damasio, A.R. (1994). Descartes’ error: Emotion, reason, and the human brain. G. P. Putnam’s Sons, New York.

    Google Scholar 

  • De Vos, A.P., Theeuwes, J., Hoekstra, W. and Coëmet, M.J. (1997). Behavioral aspects of automatic vehicle guidance. Relationship between headway and driver comfort. Transportation Research Record, 1573, 17–22.

    Article  Google Scholar 

  • Donges, E. (1978). A two-level model of driver steering behavior. Human Factors, 20, 691–707.

    Google Scholar 

  • Evans, L. (1991). Traffic safety and the driver. Van Nostrand Reinhold, New York.

    Google Scholar 

  • Fajen, B.R. (2005). Calibration, information, and control strategies for braking to avoid a collision. Journal of Experimental Psychology — Human Perception and Performance, 31(3), 480–501.

    Article  Google Scholar 

  • Finucane, M.L., Alhakami, A., Slovic, P. and Johnson, S.M. (2000). The affect heuristic in judgments of risks and benefits. Journal of Behavioral Decision Making, 13(1), 1–17.

    Article  Google Scholar 

  • Fischhoff, B., Slovic, P., Lichtenstein, S., Read, S. and Combs, B. (1978). How safe is safe enough? A psychometric study of attitudes towards technological risks and benefits. Policy Sciences, 9, 127–152.

    Article  Google Scholar 

  • Fuller, R. (2000). The task-capability interface model of the driving process. Journal Recherche-Transport-Sécurité (RTS), 66, 47–59.

    Google Scholar 

  • Fuller, R. (2004). Zero risk versus target risk: Can they both be right? Paper presented at the 3rd International Conference on Traffic and Transport Psychology 2004, Symposium on Traffic Psychology Theories. Nottingham, UK.

    Google Scholar 

  • Fuller, R. (2005). Towards a general theory of driver behaviour. Accident Analysis and Prevention, 37, 461–472.

    Article  Google Scholar 

  • Gameiro da Silva, M.C. (2002). Measurements of comfort in vehicles. Measurement Science and Technology, 13, R41–R60.

    Article  Google Scholar 

  • Gibson, J.J. (1979). The ecological approach to visual perception. Houghton Mifflin, Boston.

    Google Scholar 

  • Gibson, J.J. and Crooks, L.E. (1938). A theoretical field-analysis of automobile driving. American Journal of Psychology, 51, 453–471.

    Article  Google Scholar 

  • Godthelp, H. (1988). The limits of path error-neglecting in straight lane driving. Ergonomics, 31, 609–619.

    Article  Google Scholar 

  • Godthelp, H., Milgram, P. and Blaauw, G.J. (1984). The development of a time-related measure to describe driving strategy. Human Factors, 26, 257–268.

    Google Scholar 

  • Goodrich, M.A., Stirling, W.C. and Boer, E.R. (2000). Satisficing revisited. Minds and Machines, 10(1), 79–110.

    Article  Google Scholar 

  • Greeno, J.G. (1994). Gibson’s Affordances. Psychological Review, 101(2), 336–342.

    Article  Google Scholar 

  • Groeger, J. (2000). Understanding Driving. Psychology Press, Hove.

    Google Scholar 

  • Haglund, M. and Åberg, L. (2000). Speed choice in relation to speed limit and influences from other drivers. Transportation Research Part F: Traffic Psychology and Behaviour, 3(1), 39–51.

    Article  Google Scholar 

  • Hall, E.T. (1966). The hidden dimension. Doubleday, Garden City.

    Google Scholar 

  • Hancock, P.A. and Caird, J.K. (1993). Experimental evaluation of a model of mental workload. Human Factors, 35, 413–429.

    Google Scholar 

  • Hancock, P.A. and Warm, J.S. (1989). A dynamic model of stress and sustained attention. Human Factors, 31, 519–537.

    Google Scholar 

  • Harms, L. (1991). Variation in drivers’ cognitive load: Effects of driving through village areas and rural junctions. Ergonomics, 34, 151–160.

    Article  Google Scholar 

  • Hart, S.G. and Staveland, L.E. (1988). Development of the NASA-TLX (Task Load Index): Results of empirical and theoretical research. In P.A. Hancock and N. Meshkati (Eds.). Human mental workload (pp. 139–183). Elsevier, Amsterdam.

    Chapter  Google Scholar 

  • Hollnagel, E. (2002). Time and time again. Theoretical Issues in Ergonomics Science, 3(2), 143–158.

    Article  Google Scholar 

  • Hollnagel, E. and Woods, D.D. (2005). Joint cognitive systems. CRC Press, Boca Raton, FL.

    Book  Google Scholar 

  • Jiang, Z.Y., Streit, D.A. and El-Gindy, M. (2001). Heavy vehicle ride comfort: Literature survey. Heavy Vehicle Systems — International Journal of Vehicle Design, 8(3/4), 258–284.

    Article  Google Scholar 

  • Lawton, R., Parker, D., Stradling, S.G. and Manstead, A.S.R. (1997). Predicting road traffic accidents: The role of social deviance and violations. British Journal of Psychology, 88, 249–262.

    Google Scholar 

  • Lee, D.N. (1976). A theory of visual control of braking based on information about time-to-collision. Perception, 5, 437–459.

    Article  Google Scholar 

  • McKenna, F.P. (1982). The human factor in driving accidents: An overview of approaches and problems. Ergonomics, 25, 867–877.

    Article  Google Scholar 

  • Näätänen, R. and Summala, H. (1974). A model for the role of motivational factors in drivers’ decision-making. Accident Analysis and Prevention, 6, 243–261.

    Article  Google Scholar 

  • Näätänen, R. and Summala, H. (1976). Road-user behavior and traffic accidents. North-Holland/American Elsevier, Amsterdam/New York.

    Google Scholar 

  • Niittymäki, J. and Pursula, M. (1994). Valoohjattujen liittymien simulointi ja ajodynamiikka (Simulation of signalized intersections and driving dynamics) (Publication No. 81). Helsinki University of Technology, Transportation Engineering.

    Google Scholar 

  • Ohta, H. (1993). Individual differences in driving distance headway. In A.G. Gale et al. (Eds.). Vision in vehicles (Vol. 4, pp. 91–100). Elsevier, Amsterdam.

    Google Scholar 

  • Olson, P.L. and Sivak, M. (1984). Discomfort glare from automobile headlights. Journal of the Illuminating Engineering Society, 13, 296–303.

    Google Scholar 

  • Ouellette, J.A. and Wood, W. (1998). Habit and intention in everyday life: The multiple processes by which past behavior predicts future behavior. Psychological Bulletin, 124, 54–74.

    Article  Google Scholar 

  • Räsänen, M. and Summala, H. (2000). Car drivers’ adjustments to cyclists at roundabouts. Transportation Human Factors, 2, 1–17.

    Article  Google Scholar 

  • Reymond, G., Kemeny, A., Droulez, J. and Berthoz, A. (2001). Role of lateral acceleration in curve driving: Driver model and experiments on a real vehicle and a driving simulator. Human Factors, 43(3), 483–495.

    Article  Google Scholar 

  • Robertson, L.S. and Pless, I.B. (2002). For and against: Does risk homoeostasis theory have implications for road safety. British Medical Journal, 324, 1151–1152.

    Google Scholar 

  • Rothengatter, T. (1988). Risk and the absence of pleasure: A motivational approach to modelling road user behaviour. Ergonomics, 31, 599–607.

    Article  Google Scholar 

  • Roufs, J.A.J. and Boschman, M.C. (1997). Text quality metrics for visual display units. 1. Methodological aspects. Displays, 18(1), 37–43.

    Article  Google Scholar 

  • Rumar, K. (1988). Collective risk but individual safety. Ergonomics, 31, 507–518.

    Article  Google Scholar 

  • Rumar, K., Berggrund, U., Jernberg, P. and Ytterbom, U. (1976). Driver reaction to a technical safety measure: Studded tires. Human Factors, 18, 443–454.

    Google Scholar 

  • Russell, J.A. and Barrett, L.F. (1999). Core affect, prototypical emotional episodes, and other things called emotion: Dissecting the elephant. Journal of Personality and Social Psychology, 76(5), 805–819.

    Article  Google Scholar 

  • Simon, H. (1955). A behavioral model of rational choice. Quarterly Journal of Economics, 69, 99–118.

    Article  Google Scholar 

  • Sivak, M., Flannagan, M., Ensing, M. and Simmons, C.J. (1991). Discomfort glare is task dependent. International Journal of Vehicle Design, 12, 152–159.

    Google Scholar 

  • Slovic, P., Finucane, M.L., Peters, E. and MacGregor, D.G. (2004). Risk as analysis and risk as feelings: Some thoughts about affect, reason, risk, and rationality. Risk Analysis, 24(2), 311–322.

    Article  Google Scholar 

  • Smeed, R.J. (1949). Some statistical aspects of road safety research. Journal of the Royal Statistical Society, Series A (General), 112, 1–34.

    Article  Google Scholar 

  • Summala, H. (1985). Modeling driver task: A pessimistic prediction? In L. Evans and R.C. Schwing (Eds.). Human behavior and traffic safety (pp. 43–65). Plenum, New York.

    Google Scholar 

  • Summala, H. (1988). Risk control is not risk adjustment: The zero-risk theory of driver behaviour and its implications. Ergonomics, 31, 491–506.

    Article  Google Scholar 

  • Summala, H. (1996). Accident risk and driver behaviour. Safety Science, 22, 103–117.

    Article  Google Scholar 

  • Summala, H. (1997). Hierarchical model of behavioural adaptation and traffic accidents. In T. Rothengatter and E. Carbonell Vaya(Eds.). Traffic and transport psychology (pp. 41–52). Pergamon, Amsterdam.

    Google Scholar 

  • Summala, H. (2000). Brake reaction times and driver behavior analysis. Transportation Human Factors, 2, 217–226.

    Article  Google Scholar 

  • Summala, H. (2005). Traffic psychology theories: Towards understanding driving behaviour and safety efforts. In G. Underwood (Ed.). Traffic and transport psychology (pp. 383–394). Elsevier, Oxford.

    Chapter  Google Scholar 

  • Summala, H. and Koivisto, I. (1990). Unalerted drivers’ brake reaction times: Older drivers compensate their slower reactions by driving more slowly. In T. Benjamin (Ed.). Driving behaviour in a social context (pp. 680–683). Paradigme, Caen.

    Google Scholar 

  • Summala, H. and Merisalo, A. (1980). A psychophysical method for determining the effect of studded tires on safety. Scandinavian Journal of Psychology, 21, 193–199.

    Article  Google Scholar 

  • Summala, H. and Räsänen, M. (2000). Top-down and bottom-up processes in driver behavior at roundabouts and crossroads. Transportation Human Factors, 2, 29–37.

    Article  Google Scholar 

  • Sylwan, C. (1919). Trafiksäkerheten på gata och landsväg (Traffic safety on streets and highways). Industritidningen i Norden (No. 50), 357–364.

    Google Scholar 

  • Taieb-Maimon, M. and Shinar, D. (2001). Minimum and comfortable driving headways: Reality versus perception. Human Factors, 43(1), 159–172.

    Article  Google Scholar 

  • Taylor, D.H. (1964). Drivers’ galvanic skin response and the risk of accident. Ergonomics, 7, 253–262.

    Article  Google Scholar 

  • Theeuwes, J., Alferdinck, J. and Perel, M. (2002). Relation between glare and driving performance. Human Factors, 44(1), 95–107.

    Article  Google Scholar 

  • Vaa, T. (2004). Developing a driver behaviour model based on emotions and feelings: Proposing building blocks and interrelationships. Paper presented at the 3rd International Conference on Traffic and Transport Psychology 2004, Symposium on Traffic Psychology Theories. Nottingham, UK.

    Google Scholar 

  • Van der Horst, R. and Wilmink, A. (1986). Drivers’ decision making at signalized intersections: An optimization of the yellow timing. Traffic Engineering & Control, 27, 615–622.

    Google Scholar 

  • Van der Horst, A.R.A. (1990). A Time-Based Analysis of Road User Behaviour in Normal and Critical Encounters. TNO Institute for Perception, Soesterberg.

    Google Scholar 

  • Verplanken, B., Aarts, H., van Knippenberg, A. and Moonen, A. (1998). Habit versus planned behaviour: A field experiment. British Journal of Social Psychology, 37, 111–128.

    Google Scholar 

  • Warren, W.H. (1984). Perceiving affordances — Visual guidance of stair climbing. Journal of Experimental Psychology — Human Perception and Performance, 10(5), 683–703.

    Article  Google Scholar 

  • Warren, W.H. and Whang, S. (1987). Visual guidance of walking through Apertures — Body-scaled information for affordances. Journal of Experimental Psychology ? Human Perception and Performance, 13(3), 371–383.

    Article  Google Scholar 

  • Wikman, A.-S., Laakso, M. and Summala, H. (1997). Time sharing of car drivers as a function of driving speed and task eccentricity. In The 13th Triennial Congress of International Ergonomics Association. Tampere, Finland, June 29–July 4, 1997.

    Google Scholar 

  • Wikman, A.S., Nieminen, T. and Summala, H. (1998). Driving experience and time-sharing during in-car tasks on roads of different width. Ergonomics, 41(3), 358–372.

    Article  Google Scholar 

  • Wikman, A.S. and Summala, H. (2005). Aging and time-sharing in highway driving. Optometry and Vision Science, 82(8), 716–723.

    Article  Google Scholar 

  • Wilde, G.J.S. (1982). The theory of risk homeostasis: Implications for safety and health. Risk Analysis, 2, 209–225.

    Article  Google Scholar 

  • van Winsum, W. and Heino, A. (1996). Choice of time-headway in car-following and the role of time-to-collision information in braking. Ergonomics, 39(4), 579–592.

    Article  Google Scholar 

  • Williams, A.F. and O’Neill, B. (1974). On-the-road driving records of licensed race drivers. Accident Analysis and Prevention, 6, 263–270.

    Article  Google Scholar 

  • Wong, Y.D. and Nicholson, A. (1992). Driver behavior at horizontal curves — risk compensation and the margin of safety. Accident Analysis and Prevention, 24(4), 425–436.

    Article  Google Scholar 

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Summala, H. (2007). Towards Understanding Motivational and Emotional Factors in Driver Behaviour: Comfort Through Satisficing. In: Cacciabue, P.C. (eds) Modelling Driver Behaviour in Automotive Environments. Springer, London. https://doi.org/10.1007/978-1-84628-618-6_11

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  • DOI: https://doi.org/10.1007/978-1-84628-618-6_11

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