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Published in: Microsystem Technologies 9/2017

27-02-2017 | Technical Paper

Real-time monitoring of vehicle’s movement and damage avoidance cum repair system using Web Service Negotiation

Authors: S. S. Thakur, J. K. Sing

Published in: Microsystem Technologies | Issue 9/2017

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Abstract

The use of the automobiles increased tremendously in the last two decades, hence the vehicle collision and its impact emerged as the major problem, as safety of human’s life is concerned. In this paper, anti-collision system is proposed in order to avoid vehicular head to back collision which are running under heavy traffic conditions. The developed system works in two stages: In the first stage work has been done on Damage Avoidance System (DAS) which continuously measures the distance between two vehicles using ultrasonic sensor i.e. the range finder, which is fed as an input to Atmega16 microcontroller, and these distance values are displayed in the LCD panel. If any vehicle comes within the unacceptable limit specified, it will glow the LED lamp and put the sound buzzer on, which acts as a indication for danger. In the second stage, work has been done on implementation of Damage Repair Services (DRS) for vehicles when accident takes place. Additionally implementation of Web Service Negotiation take place, which negotiates between insurance companies and repair companies using Damage Secure Service Software (DSSS). These characteristics enable the vehicle anti-collision system to avoid accidents, and can be effectively used in local traffic conditions. This system is reliable, cost-efficient and fault tolerable.

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Literature
go back to reference Ammoun S, Nashashibi F, Laurgeau C (2006) Real-time crash avoidance system on crossroads based on 802.11 devices and GPS receivers. In: IEEE intelligent transportation systems conference, Canada, 17–20 September 2006, 1707356, pp 1023–1028 Ammoun S, Nashashibi F, Laurgeau C (2006) Real-time crash avoidance system on crossroads based on 802.11 devices and GPS receivers. In: IEEE intelligent transportation systems conference, Canada, 17–20 September 2006, 1707356, pp 1023–1028
go back to reference Bahl P, Padmanabhan V (2000) RADAR: An in-building RF-based user location and tracking system. In: Proc. IEEE INFOCOM Tel-Aviv, Israel, March 2000, pp 775–784 Bahl P, Padmanabhan V (2000) RADAR: An in-building RF-based user location and tracking system. In: Proc. IEEE INFOCOM Tel-Aviv, Israel, March 2000, pp 775–784
go back to reference DrKeskar AG, Dorle SS, Mundewadikar RS, Chakole MB (2008) Intersection collision detection and warning protocol: design approach, In: Proc. IEEE ICETET, July 2008, pp 869–872. doi:10.1109/ICETET.2008.50 DrKeskar AG, Dorle SS, Mundewadikar RS, Chakole MB (2008) Intersection collision detection and warning protocol: design approach, In: Proc. IEEE ICETET, July 2008, pp 869–872. doi:10.​1109/​ICETET.​2008.​50
go back to reference Durresi M, Durresi A and Barolli L (2005) Sensor inter-vehicle communication for safer highways. In: Proc. advanced information networking and applications, 28–30 March 2005, 8530246, pp 599–604. doi:10.1109/AINA.2005.308 Durresi M, Durresi A and Barolli L (2005) Sensor inter-vehicle communication for safer highways. In: Proc. advanced information networking and applications, 28–30 March 2005, 8530246, pp 599–604. doi:10.​1109/​AINA.​2005.​308
go back to reference Gamester A, Singhai R and Sahoo A (2007) IntelliCarTS: intelligent car transportation system. In: Proc. IEEE LANMAN, Jun 2007 Gamester A, Singhai R and Sahoo A (2007) IntelliCarTS: intelligent car transportation system. In: Proc. IEEE LANMAN, Jun 2007
go back to reference Gehring O, Fritz H (1997) Practical results of a longitudinal control concept for truck platooning with vehicle to vehicle communication. In: Proc. IEEE conference on intelligent transportation system (ITSC’97), pp. 117–122, October 1997 doi:10.1109/ITSC.1997.660461 Gehring O, Fritz H (1997) Practical results of a longitudinal control concept for truck platooning with vehicle to vehicle communication. In: Proc. IEEE conference on intelligent transportation system (ITSC’97), pp. 117–122, October 1997 doi:10.​1109/​ITSC.​1997.​660461
go back to reference Gumaste A, Sahoo A (2006) VehACol: vehicular anti-collision mechanism. Technical Report, ITB/KReSIT/2006/April/2, April 2006 Gumaste A, Sahoo A (2006) VehACol: vehicular anti-collision mechanism. Technical Report, ITB/KReSIT/2006/April/2, April 2006
go back to reference Kephart J, Walsh W (2004) An artificial intelligence perspective on autonomic computing policies, In: Proc. IEEE international workshop on policies for distributed systems and networks, pp 3–12 January 2004 doi: 10.1109/POLICY.2004.1309145 Kephart J, Walsh W (2004) An artificial intelligence perspective on autonomic computing policies, In: Proc. IEEE international workshop on policies for distributed systems and networks, pp 3–12 January 2004 doi: 10.​1109/​POLICY.​2004.​1309145
go back to reference Lamparter S, Oberle D and Eberhart A (2005) Approximating service utility from policies and value function patterns. In: Proc. IEEE international workshop on policies for distributed systems and networks, 6–8 June 2005, pp 159–168 doi:10.1109/POLICY.2005.7 Lamparter S, Oberle D and Eberhart A (2005) Approximating service utility from policies and value function patterns. In: Proc. IEEE international workshop on policies for distributed systems and networks, 6–8 June 2005, pp 159–168 doi:10.​1109/​POLICY.​2005.​7
go back to reference Minami K, Yasuma T, Okabayashi S, Sakata M, Muramoto I, Kohzu T (1988) A collision-avoidance warning system using Laser Radar. SAE Technical Paper 881859. doi:10.4271/881859 Minami K, Yasuma T, Okabayashi S, Sakata M, Muramoto I, Kohzu T (1988) A collision-avoidance warning system using Laser Radar. SAE Technical Paper 881859. doi:10.​4271/​881859
go back to reference Morioka Y, Sota T, Nakagawa M (2000) An Anti-car Collision System Using GPS and 5.8 GHz Inter-vehicle Communication at an Off-sight Intersection. In: Proc. IEEE 52nd vehicular technology conference 2000 (IEEE VTS-Fall VTC 2000), Boston, USA, vol. 5, September 2000, pp 2019–2024. doi: 10.1109/VETECF.2000.883230 Morioka Y, Sota T, Nakagawa M (2000) An Anti-car Collision System Using GPS and 5.8 GHz Inter-vehicle Communication at an Off-sight Intersection. In: Proc. IEEE 52nd vehicular technology conference 2000 (IEEE VTS-Fall VTC 2000), Boston, USA, vol. 5, September 2000, pp 2019–2024. doi: 10.​1109/​VETECF.​2000.​883230
go back to reference Mutoh N, Sasaki Y (2007) A driver assisting system for eco-vehicles with motor drive systems which avoids collision with running vehicles by using inter-vehicle communications, In: Proc. on intelligent transportation systems conference, 2007. (IEEE ITSC 2007), Seattle, Washington, Sep-Oct 2007, pp 508–513. doi: 10.1109/ITSC.2007.4357730 Mutoh N, Sasaki Y (2007) A driver assisting system for eco-vehicles with motor drive systems which avoids collision with running vehicles by using inter-vehicle communications, In: Proc. on intelligent transportation systems conference, 2007. (IEEE ITSC 2007), Seattle, Washington, Sep-Oct 2007, pp 508–513. doi: 10.​1109/​ITSC.​2007.​4357730
go back to reference Qiang J, Zhiwei Z, Lan P (2004) Real-time nonintrusive monitoring and prediction of driver fatigue. In: Proc. IEEE Trans. Veh. Technol., vol. 53, Jul. 2004, pp 1052–1068 Qiang J, Zhiwei Z, Lan P (2004) Real-time nonintrusive monitoring and prediction of driver fatigue. In: Proc. IEEE Trans. Veh. Technol., vol. 53, Jul. 2004, pp 1052–1068
go back to reference Takatori Y, Yashima H (2011) A study of driving assistance system based on a fusion network of inter-vehicle communication and in-vehicle external sensors. In: Proc. IEEE Conf. intelligent transportation systems (ITSC), 5–7 October 2011, pp 254–259 Takatori Y, Yashima H (2011) A study of driving assistance system based on a fusion network of inter-vehicle communication and in-vehicle external sensors. In: Proc. IEEE Conf. intelligent transportation systems (ITSC), 5–7 October 2011, pp 254–259
go back to reference Tsugawa S (2005) Issues and recent trends in vehicle safety communication systems. IATTS Res 29(1):7–15CrossRef Tsugawa S (2005) Issues and recent trends in vehicle safety communication systems. IATTS Res 29(1):7–15CrossRef
go back to reference U.S. Dept. of Transportation (2005) Advanced vehicle collision safety systems. Intelligent Transportation Systems, 2005 U.S. Dept. of Transportation (2005) Advanced vehicle collision safety systems. Intelligent Transportation Systems, 2005
go back to reference U.S. Dept. of Transportation (2008) Intelligent transportation systems—benefits, costs, deployment, and lessons learned. Intelligent Transportation Systems U.S. Dept. of Transportation (2008) Intelligent transportation systems—benefits, costs, deployment, and lessons learned. Intelligent Transportation Systems
go back to reference Yang X, Liu J, Zhao F, Vaidya N (2004) A vehicle-to-vehicle communication protocol for cooperative collision warning. In: Proc. international conference on mobile and ubiquitous systems (MOBIQUITOUS’04), August 2004, pp 114–123 Yang X, Liu J, Zhao F, Vaidya N (2004) A vehicle-to-vehicle communication protocol for cooperative collision warning. In: Proc. international conference on mobile and ubiquitous systems (MOBIQUITOUS’04), August 2004, pp 114–123
go back to reference Zhang Z, Zhang J (2009) A novel vehicle safety model: vehicle speed controller under driver fatigue. Int J Comput Sci Netw Secur (IJCSNS) 9(1):355–362MathSciNet Zhang Z, Zhang J (2009) A novel vehicle safety model: vehicle speed controller under driver fatigue. Int J Comput Sci Netw Secur (IJCSNS) 9(1):355–362MathSciNet
go back to reference Zhu H, Singh G (2010) A communication protocol for a vehicle collision warning system. In: Proceedings of IEEE/ACM international conference on green computing and communications and international conference on cyber, physical and social computing, December 2010, pp 636–644 Zhu H, Singh G (2010) A communication protocol for a vehicle collision warning system. In: Proceedings of IEEE/ACM international conference on green computing and communications and international conference on cyber, physical and social computing, December 2010, pp 636–644
Metadata
Title
Real-time monitoring of vehicle’s movement and damage avoidance cum repair system using Web Service Negotiation
Authors
S. S. Thakur
J. K. Sing
Publication date
27-02-2017
Publisher
Springer Berlin Heidelberg
Published in
Microsystem Technologies / Issue 9/2017
Print ISSN: 0946-7076
Electronic ISSN: 1432-1858
DOI
https://doi.org/10.1007/s00542-017-3337-5

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