Open Access

Mobile Phone Accidents - Experience Of India

Healey, J. A., Picard, R. W. (2005). Detecting stress during real-world driving tasks using physiological sensors. IEEE Transactions on Intelligent Transportation Systems, 6(2), 156-166.10.1109/TITS.2005.848368Search in Google Scholar

McCartt, A. T., Hellinga, L. A., Bratiman, K. A. (2006). Cell Phones and Driving: Review of Research. Traffic Injury Prevention, 7, 89-106.10.1080/1538958060065110316854702Search in Google Scholar

McEvoy, Suzanne P., Stevenson, Mark R., McCartt, Anne T. et al. (2005). Role of Mobile Phones in Motor Vehicle Crashes Resulting in Hospital Attendance: A Case-Crossover Study. British Medical Journal, 331(7514), 428-430.Search in Google Scholar

Walsha, Shari P., Whitea, Katherine M., Hydea Melissa K., Watsonb, Barry. (2008). Dialling and driving: factors influencing intentions to use a mobile phone while driving. Accident Analysis & Prevention, 40(6), 1893-1900.10.1016/j.aap.2008.07.00519068291Search in Google Scholar

Lee, John D., McGehee, Daniel V., Brown, Timothy L., Reyes, Michelle L. (2002). Collision warning timing, driver distraction, and driver response to imminent rear-end collisions in a high-fidelity driving simulator. Human Factors, 44(2), 314-334.10.1518/001872002449784412452276Search in Google Scholar

Shabeer, H. A., Wahidabanu, R. S. D. (2009). Automatic Switching of Mobile Phone Profile Based on Current Speed of the Vehicle and Mobile Phone Security. CiiT International Journal of Wireless Communication, August 2009, 78-86.Search in Google Scholar

Redelmeier, D. A., Tibshirani, R. J. Association between cellular-telephone calls and motor vehicle collisions. New England Journal of Medicine, 336, 453-458.10.1056/NEJM1997021333607019017937Search in Google Scholar

Jie Yang, Simon Sidhom, Gayathri Chandrasekaran, Tam Vu, Hongbo Liu, Nicolae Cecan, Yingying Chen, Gruteser, Marco, Martin, Richard P. (2011). Detecting driver phone use leveraging car speakers. In Proceedings of the International Conference on Mobile Computing and Networking, September 19-23 (pp. 97-108). Las Vegas, Nevada, USA.10.1145/2030613.2030625Search in Google Scholar

Hon Lung Chu, Vijay Raman, Jeffrey Shen, Romit Roy Choudhury, Aman Kansal and Bahl, Victor. (2011). In-Vehicle Driver Detection Using Mobile Phone Sensors. In Proceedings of the International Conference on Mobile Systems, Applications and Services, June 28th -July 1st. Washington, USA.Search in Google Scholar

Amardeep Sathyanarayana, Sandhya Nageswaren and Hassan Ghasemzadeh. (2008). Body sensor networks for driver distraction identification. In Proceedings of the IEEE International Conference on Vehicular Electronics and Safety, September 22-24 (pp. 120-125). Columbus Ohio, USA: IEEE.Search in Google Scholar

McCall, J. C., Mallick, S. P., Trivedi, M. M. (2003). Real-time Driver Affect Analysis and Televiewing System. In Proceedings of the IEEE Intelligent Vehicles Symposium, June 9-11 (pp. 372-377). Columbus Ohio, USA: IEEE.Search in Google Scholar

Huang, K, Trivedi, M. M. (2003). Driver Head Pose and View Estimation with Single Omnidirectional Video Stream. In Proceedings of the 3rd International Conference on Computer Vision Systems, April 3 (pp. 44-51). Graz, Austria: IEEE.Search in Google Scholar

Sharon, T., Selker, T, Wagner, L., Frank, A. J. (2005). Car Coach: A Generalized Layered Architecture for Educational Car Systems. In Proceedings of the IEEE International Conference on Software-Science, Technology, Engineering, February 22-23 (pp. 13-22). Herzelia, Israel: IEEE.Search in Google Scholar

McCall, J. C., Achler, O., Trivedi, M. M. (2004). Design of an Instrumented Vehicle Test Bed for Developing a Human Centered Driver Support System. In Proceedings of the IEEE Intelligent Vehicles Symposium, June 14-17 (pp. 483-488). Parma, Italy: IEEE.Search in Google Scholar

Harbluk, J. L., Noy, Y. I., Eizeman, M. (2002). The impact of cognitive distraction on driver visual behaviour and vehicle control. Canada: Road Safety Directorate and Motor Vehicle Regulation.Search in Google Scholar

Strayer, D. L., Drews, F. A. and Johnston, W. A. (2003). Cell phone-induced failures of visual attention during simulated driving. Journal of Experimental Psychology: Applied, 9(1), 23-32.Search in Google Scholar

Crundall, D., Bains, M., Chapman, P. and Underwood, G. (2005). Regulating conversation during driving: A problem for mobile telephone? Transport Research Part F, 8(3), 197-211.10.1016/j.trf.2005.01.003Search in Google Scholar

James, N. (2011). Don't Be Distracted about Distracted Driving. Quarterly Review of Advanced Risk Management Strategies, 25(3), 24-31.Search in Google Scholar

Azman, A., Meng, Q. and Edirisinghe, E. (2010). Correlation between eye movements and mouth movements to detect driver cognitive distraction. In Proceedings of the International Conference: Brain Inspired Cognitive Systems (BICS), 16th July 2010. Madrid, Spain.Search in Google Scholar

Rongben, W., Lie, G., Bingliang, T. and Lisheng, J. (2004). Monitoring mouth movement for driver fatigue or distraction with one camera. In IEEE Intelligent Transportation Systems, October 3-6, (pp. 314-319). Washington, D. C, USA: IEEE.Search in Google Scholar

Hayhoe, M. M. (2004). Advances in relating eye movements and cognition. Infancy, 6(2), 267-274.10.1207/s15327078in0602_733430534Search in Google Scholar

Liang, Y., Lee, J. D. and Reyes, M. L. (2007). Non-intrusive detection of driver cognitive distraction in real-time using Bayesian networks. Journal of the Transportation Research Board, 2018, 1-8.Search in Google Scholar

Fisher, L. D., Knodler, M. and Muttart, J. (2009). Driver-Eye-Movement-Based Investigation for Improving Work-Zone Safety. England: The New England Transportation Consortium.Search in Google Scholar

Pohl, J., Birk, W. and Westervall, L. (2007). A driver-distraction-based lane-keeping assistance system": Proceedings of the Institution of Mechanical Engineers, Part I. Journal of Systems and Control Engineering, 221(14), 541-552.Search in Google Scholar

Takemura, K., Ido, J., Matsumoto, Y. and Ogasawara, T. (2003). Development of Non-contact drive monitoring system for advanced safety vehicle: IEEE/ASME Proceedings of the International Conference ‘Advanced Intelligent Mechatronics’, July 20-24 (pp. 1119-1122). Kobe, Japan: IEEESearch in Google Scholar

Wesley, A., Shastri, D. and Pavlidis, I. (2010). A Novel method to monitor driver's distractions. In Proceedings of the International Conference: Human Factors in Computing Systems (CHI), April 10-15 (pp. 4273-4278). Atlanta, Georgia: ACM.Search in Google Scholar

Smith, P., Shah, M. and Vitoria, N. L. (2003). Determining driver visual attention with one camera. IEEE Transaction Intelligent Transportation Systems, 4(4), 2058-2218.10.1109/TITS.2003.821342Search in Google Scholar

Jannette, M. and Mark, V. (2009). Comparison of manual vs. speech-based interaction with in-vehicle information systems. Accident Analysis and Prevention, 41(5), 924-930.Search in Google Scholar

Gellatly, A. and Dingus, T. (1998). Speech Recognition and Automotive Applications: Using Speech to Perform In-Vehicle Tasks. In Proceedings of the International Conference: Human Factors '98, October 5-9 (pp. 1247-1251). Santa Monica, CA: Human Factors and Ergonomics.Search in Google Scholar

Liang, Y., Lee, J. D. and Reyes, M. L. (2007). Non-intrusive detection of driver cognitive distraction in real-time using Bayesian networks. Journal of the Transportation Research Board, 2018, 1-8.Search in Google Scholar

Liang, Y., Reyes, M. L. and Lee, J. D. (2007a). Real-time detection of driver cognitive distraction using Support Vector Machines. IEEE Intelligent Transportation Systems, 8(2), 340-350.10.1109/TITS.2007.895298Search in Google Scholar

Zhang, Y., Owechko, Y. and Zhang, J. (2007). Driver cognitive workload estimation: a data-driven perspective: IEEE Proceedings of the International Conference. In Intelligent Transportation Systems (pp. 642-647). Washington, D. C., USA: IEEE.Search in Google Scholar

Green, P. (1999). Visual and Task Demands of Driver Information Systems. Ann Arbor, Michigan, USA: University of Michigan, Transportation Research Institute.Search in Google Scholar

Abdul Shabeer, H. and Wahida Banu, R. S. D (2011). A Novel Approach to Avoid Mobile Phone Accidents While Driving and Cost- Effective Fatalities. International Journal of Interdisciplinary Telecommunication and Networking, 3(3), 29-39.10.4018/jitn.2011070103Search in Google Scholar

Janne, L. and Jason, H. (2011). Undistracted Driving: A Mobile Phone that Doesn't Distract. In Proceedings of the 12th Workshop on Mobile Computing Systems and Applications, March 1-2 (pp. 146-154). Phoenix, Arizona, USA: ACM.Search in Google Scholar

Stewart, Marie. (2010). Sensing motion in a mobile phone and limiting functionality of moving phones. USA: USA Distracted Driving Foundation.Search in Google Scholar

Klauer, S. G., Dingus, T. A., Neale, V. L., Sudweeks, J. D. and Ramsey, D. J. (2006). The impact of driver inattention on near-crash risk: An analysis using the 100-car naturalistic driving study data. Washington, DC: National Highway Traffic Safety Administration.Search in Google Scholar

Use of the mobile phone while driving. SWOV Fact Sheet. (2010). Leidschendam, the Netherlands.Search in Google Scholar

National Center for Statistics and Analysis. (2009). Driver electronic device use in 2008. Traffic Safety Facts Research Note (DOT HS 811 184). Washington, DC: National Highway Traffic Safety Administration.Search in Google Scholar

Scott, David A. Hands-free phones just as dangerous in Cars. Retrieved July 6, 2011, from http://www.health.am/ab/more/hands_free_phones_just_as_dangerous_in_carsSearch in Google Scholar

Ogg, Erica. Cell phones as dangerous as drunk driving. Retrieved July 1, 2006, from http://news.cnet.com/8301-10784_3-6090342-7.html#ixzz10HaYIDvxSearch in Google Scholar

Benton, Joe. Cell Phone No. 1 Driver Distraction Retrieved April 20, 2006, from http://www.consumeraffairs.com/news04/2006/04/cell_phones_distraction.html#ixzz10Hc71p00Search in Google Scholar

Times of India. Article. Road accidents cost India Rs 1 lakh crore a year. Retrieved October 4, 2011, from http://timesofindia.indiatimes.com/india/Road-accidents-cost-India-Rs-1-lakh-crore-ayear/articleshow/10224908.cmsSearch in Google Scholar

Kent, Peter. Cell Phone and Automobile Accidents on the Rise. Retrieved April 18, 2008, from http://www.articlesbase.com/automotive-articles/cell-phone-and-automobile-accidents-on-the-rise-390037.html#ixzz10HgLel8MSearch in Google Scholar

Thaindian News. Article. Strong link between mobile use and road accidents found. Retrieved September 15, 2008, from http://www.thaindian.com/newsportal/world-news/strong-link-betweenmobile-use-and-road-accidents-found_10096231.html#ixzz10HublokzSearch in Google Scholar

Deutsche Welle. India has the highest number of road accidents in the world. Retrieved April 30, 2010, from http://www.ethiopianreview.com/news/90301Search in Google Scholar

Dipak Kumar Dash. India leads world in road deaths: WHO. Retrieved August 17, 2009, from http://timesofindia.indiatimes.com/india/India-leads-world-in-road-deaths-WHO/articleshow/4900415.cmsSearch in Google Scholar

eISSN:
1407-6179
ISSN:
1407-6160
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Engineering, Introductions and Overviews, other