Abstract
The automotive industry has been emerging with a very fast rate and still, it is growing day by day. Internet of Things (IoT) is one of the reasons behind these changes in the automobile business. The prospects and potential of this innovation are extraordinary. The main enabling factor which provide promising paradigm is the integration of several technologies and communication solution. In this paper, a device is built which can generate an immediate response from the hospital if the vehicle get into the accident and driver is helpless to call the Ambulance. The aim of this work is to build a device which can increase the safety of driver and passenger. IoT technology helps us to achieve this target of building the device successfully. This project will reduce the lead time between accident occurred and information received by hospital about the accident.
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- IOT:
-
Internet of Things
- RFID:
-
Radio frequency identification
- ITS:
-
Intelligent transportation system
- V2V:
-
Vehicle to vehicle communication
- V2I:
-
Vehicle to infrastructure communication
- CAN:
-
Control area network
- MQTT:
-
Message line telemetry transport
- SAAS:
-
Software as a service
- SOA:
-
Service-oriented architecture
- PAAS:
-
Platform as a service
- VANET:
-
Vehicular ad hoc networks
- OBD:
-
On-board diagnostic
- WIFI:
-
Wireless fidelity
References
Devi, Y.U., Rukmini, M.S.S.: IoT in connected vehicles: challenges and issues—a review. In: 2016 International Conference on Signal Processing, Communication, Power and Embedded System (SCOPES), pp. 1864–1867. IEEE (2016)
Kirk, R.: Cars of the future: the Internet of Things in the automotive industry. Netw. Secur. 9, 16–18 (2015)
Yu, M., Zhang, D., Cheng, Y., Wang, M.: An RFID electronic tag based automatic vehicle identification system for traffic IOT applications. In: Proceedings of the Control and Decision Conference (CCDC), 2011 Chinese, pp. 4192–4197. IEEE (2011)
Kawthankar, S., Raut, C.: A survey on smart automobiles using Internet of Things for digital India. Transportation (2017). https://doi.org/10.3390/electronics8070768
Priyanka, S.: RFID based vehicle access control and tracking with IoT. Int. J. Eng. Tech. 3, 5 (2017)
Qin, E., Long, Y., Zhang, C., Huang, L.: Cloud computing and the internet of things: Technology innovation in automobile service. In: International Conference on Human Interface and the Management of Information, pp. 173–180. Springer, Berlin (2013)
Anand, T.M., Banupriya, K., Deebika, M., Anusiya, A., Anand, T.M., Banupriya, K., Anusiya, A.: Intelligent transportation systems using iot service for vehicular data cloud. Int. J. Innov. Res. Sci. Technol. 2(02), 80–86 (2015)
Nusser, R., Pelz, R.M. Bluetooth-based wireless connectivity in an automotive environment. In: Proceedings of the 52nd Vehicular Technology Conference, 2000. IEEE-VTS Fall VTC 2000. vol. 4, pp. 1935–1942. IEEE (2000)
Viereckl, R., Ahlemann, D., Koster, A., Jursch, S.: Connected car study 2015: racing ahead with autonomous cars and digital innovation. Strategy. http://www.strategyand.pwc.com/reports/connected-car-2015-study. Accessed 7 March 2016
Shutterstock jamesteohart: The internet of cars—IoT technology in the automotive sector. https://www.azosensors.com/article.aspx?ArticleID=703. (2016)
Dhall, R., Solanki, V.: An IoT based predictive connected car maintenance. Int. J. Interact. Multimedia Artif. Intell. 4, 30 (2017)
Macauley, M.: Driverless cars and their relation to the IoT. RFID J. (2016)
Sundmaeker, H., Guillemin, P., Friess, P., Woelfflé, S.: Vision and challenges for realising the Internet of Things. Clust. Eur. Res. Proj. Internet Things Eur. Comm. 3, 34–36 (2010)
Gora, P., Rüb, I.: Traffic models for self-driving connected cars. Transp. Res. Proc. 14, 2207–2216 (2016)
Albert, A.: Comparison of event-triggered and time-triggered concepts with regard to distributed control systems. Robert Bosch GmbH Embedded World, Nürnberg (2004)
Van Geem, C., Bellen, M., Bogaerts, B., Beusen, B., Berlmont, B., Denys, T., Hellinckx, P.: Sensors on vehicles (SENSOVO)—proof-of-concept for road surface distress detection with wheel accelerations and ToF camera data collected by a fleet of ordinary vehicles. Transp. Res. Proc. 14, 2966–2975 (2016)
Briante, O., Campolo, C., Iera, A., Molinaro, A., Paratore, S.Y., Ruggeri, G.: Supporting augmented floating car data through smartphone-based crowd-sensing. Veh. Commun. 1(4), 181–196 (2014)
Hamid, A.F.A., Rahman, M.T.A., Khan, S.F., Adom, A.H., Rahim, M.A., Rahim, N.A., Norizan, A.: Connected car: engines diagnostic via Internet of Things (IoT). J. Phys. 908, 012079 (2017)
Chen, S., Xu, H., Liu, D., Hu, B., Wang, H.: A vision of IoT: applications, challenges, and opportunities with china perspective. IEEE Internet Things J. 1(4), 349–359 (2014)
Smolnicki, P.M., Sołtys, J.: Driverless mobility: the impact on metropolitan spatial structures. Proc. Eng. 161, 2184–2190 (2016)
Krasniqi, X., Hajrizi, E.: Use of IoT technology to drive the automotive industry from connected to full autonomous vehicles. IFAC-PapersOnLine 49(29), 269–274 (2016)
Speed, C., Shingleton, D.: An internet of cars: connecting the flow of things to people, artefacts, environments and businesses. In: Proceedings of the 6th ACM workshop on Next generation mobile computing for dynamic personalised travel planning, pp. 11–12. ACM (2012)
Kim, Y., Oh, H., Kang, S.: Proof of concept of home IoT connected vehicles. Sensors 17(6), 1289 (2017)
Huang, K. S., & Tang, S. M. RFID applications strategy and deployment in bike renting system. In: Proceedings of the 10th International Conference on Advanced Communication Technology, 2008. ICACT 2008, vol. 1, pp. 660–663. IEEE (2008)
Liu, T., Yuan, R., Chang, H.: Research on the Internet of Things in the Automotive Industry. In: Proceedings of the 2012 International Conference on Management of e-Commerce and e-Government (ICMeCG), pp. 230–233. IEEE (2012)
Jia, X., Feng, Q., Fan, T., Lei, Q.: RFID technology and its applications in Internet of Things (IoT). In: 2012 2nd International Conference on Consumer Electronics, Communications and Networks (CECNet). pp. 1282–1285. IEEE (2012)
Bandyopadhyay, D., Sen, J.: Internet of Things: applications and challenges in technology and standardization. Wireless Pers. Commun. 58(1), 49–69 (2011)
Jayendra, G., Kumarawadu, S., Meegahapola, L.: RFID-based anti-theft auto security system with an immobilizer. In: Proceedings of the Second International Conference on Industrial and Information Systems, ICIIS 2007, Sri Lanka, 8–11 August 2007
Wu, F.J., Kao, Y.F., Tseng, Y.C.: From wireless sensor networks towards cyber physical systems. Pervasive Mob. Comput. 7(4), 397–413 (2011)
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Dashora, C., Sudhagar, P.E. & Marietta, J. IoT based framework for the detection of vehicle accident. Cluster Comput 23, 1235–1250 (2020). https://doi.org/10.1007/s10586-019-02989-z
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DOI: https://doi.org/10.1007/s10586-019-02989-z