EcoSonic: Auditory peripheral monitoring of fuel consumption for fuel-efficient driving

Displays - Tập 47 - Trang 40-50 - 2017
Jan Hammerschmidt1, Thomas Hermann1
1Ambient Intelligence Group, CITEC – Center of Excellence in Cognitive Interaction Technology, Bielefeld University, Germany

Tài liệu tham khảo

Transportation Sector Emissions in the United States, <http://www.epa.gov/climatechange/ghgemissions/sources/transportation.html> (last accessed: 19.08.2015). Barkenbus, 2010, Eco-driving: an overlooked climate change initiative, Energy Policy, 38, 762, 10.1016/j.enpol.2009.10.021 Romm, 2006, Hybrid vehicles gain traction, Sci. Am., 294, 72, 10.1038/scientificamerican0406-72 Young, 2011, Safe driving in a green world: a review of driver performance benchmarks and technologies to support ’smart’ driving, Appl. Ergonom., 42, 533, 10.1016/j.apergo.2010.08.012 Evans, 1979, Driver behavior effects on fuel consumption in urban driving, J. Human Factors Ergonom. Soc., 21, 389, 10.1177/001872087902100401 M. Manser, M. Rakauskas, J. Graving, J. Jenness, Fuel economy driver interfaces: develop interface recommendation. report on task 3, Fuel economy driver interfaces, 2010. Brooks, 2005, In-vehicle technologies, advanced driver assistance systems and driver distraction: research challenges B.S. Jensen, M.B. Skov, N. Thiruravichandran, Studying driver attention and behaviour for three configurations of gps navigation in real traffic driving, CHI ’10, 2010. Jeon, 2009, Enhanced auditory menu cues improve dual task performance and are preferred with in-vehicle technologies, 91 Wickens, 2002, Multiple resources and performance prediction, Theor. Issues Ergonom. Sci., 3, 159, 10.1080/14639220210123806 M. Jeon, J. Hammerschmidt, T. Hermann, P. Bazilinskyy, S. Landry, K.A.E. Wolf, Report on the in-vehicle auditory interactions workshop: taxonomy, challenges, and approaches, Automotive’UI 15, 2015. Gonder, 2012 Sullman, 2015, Eco-driving training of professional bus drivers–does it work?, Transport. Res. Part C: Emerg. Technol., 58, 749, 10.1016/j.trc.2015.04.010 Hammerschmidt, 2014, EcoSonic: towards an auditory display supporting a fuel-efficient driving style, 56 Tulusan, 2011, Which eco-feedback types prefer drivers most?, 1 Jamson, 2015, Interface design considerations for an in-vehicle eco-driving assistance system, Transport. Res. Part C: Emerg. Technol., 58, 642, 10.1016/j.trc.2014.12.008 Hellier, 2011, The influence of auditory feedback on speed choice, violations and comfort in a driving simulation game, Transport. Res. Part F: Traffic Psychol. Behav., 14, 591, 10.1016/j.trf.2011.07.004 Gable, 2013, Advanced auditory cues on mobile phones help keep drivers’ eyes on the road, 66 Powell, 2015, Exploring novel auditory displays for supporting accelerated skills acquisition and enhanced performance in motorsport Larsson, 2013, Emotional and behavioural responses to auditory interfaces in commercial vehicles, Int. J. Vehicle Noise Vibration, 10.1504/IJVNV.2013.053818 Tünnermann, 2013, Blended sonification: sonification for casual interaction Gustafsson, 2009, Evaluation of a pervasive game for domestic energy engagement among teenagers, Comput. Entertain., 7, 1, 10.1145/1658866.1658873 J. Hammerschmidt, R. Tünnermann, T. Hermann, EcoSonic: Auditory Displays supporting Fuel-Efficient Driving, NordiCHI ’14, 2014. Engine’s Torque Map, <http://f1framework.blogspot.de/2013/03/f1-engine-maps_28.html>, used with permission from the author. Brake specific fuel consumption, <https://en.wikipedia.org/wiki/Brake_specific_fuel_consumption>, released under the CC BY-SA 3.0 (http://creativecommons.org/licenses/by-sa/3.0/). Hammerschmidt, 2013, InfoDrops: sonification for enhanced awareness of resource consumption in the shower Logan, 1988, Toward an instance theory of automatization, Psychol. Rev., 95, 492, 10.1037/0033-295X.95.4.492