Intelligent Vehicular System with Speed Limit

Authors

  • D Laxma Reddy

  • T S. Arulanth

  • K Nehru

  • N Nagaraju

  • G Ramesh Reddy

How to Cite

Laxma Reddy, D., S. Arulanth, T., Nehru, K., Nagaraju, N., & Ramesh Reddy, G. (2018). Intelligent Vehicular System with Speed Limit. International Journal of Engineering and Technology, 7(3.27), 20-23. https://doi.org/10.14419/ijet.v7i3.27.17645

Received date: August 16, 2018

Accepted date: August 16, 2018

Published date: August 15, 2018

DOI:

https://doi.org/10.14419/ijet.v7i3.27.17645

Keywords:

Arm LPC 2148 microcontroller, zigbee Module, IR Sensors, gas sensor, temperature sensor, vehicle unit, Sim900 GSM/GPRS modem.

Abstract

In the scholarly world and the car business vehicular communication is one of the important point. The point of this developing interest is to build up a compelling communication network to the Intelligent Transportation System. Here in the proposed paper we exhibited remote base station model with a great put assessment. The auto movement demonstrate and lining framework with variable solicitations are used remote to get point display. The wireless networks performance may be compact from a spread of parameters, equivalent to radio communication vary, the quantity of shoppers may vary and speed of the vehicle. Some of the parameters are analyzed and displayed.

 

 

 

References

  1. [1] IEEE Part 11: Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY) Specifications Amendment 6: Wireless Access in Vehicular Environments, (2010).

    [2] IEEE 802.11, The Working Group for WLAN Standards, (2006).

    [3] IEEE Part 11: Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY) Specifications Amendment 5: Enhancements for Higher Throughput, (2009).

    [4] Singh JP, Bambos N, Srinivassan B & Clawin D, “Wireless LAN performance under varied stress conditions in vehicular traffic scenariosâ€, IEEE Conference on Vehicular Technology, Vol.2, (2002), pp.24-28.

    [5] Ott J &Kutscher D, “Drive–thru Internet: IEEE 802.11b for Automobile Usersâ€, IEEE Infocom, (2004).

    [6] Gass R, Scott J & Diot C, “Measurements of In–Motion 802.11 Networkingâ€, Proceedings of WMCSA, (2006), pp.69-74.

    [7] Wellens M, Westphal B & Mähönen P, “Performance Evaluation of IEEE 802.11–based WLANs in Vehicular Scenariosâ€, Proceedings of VTC Spring, 2007, pp.1167–1171.

    [8] Rubinstein M, Ben Abdesslem F, Rodrigues Cavalcanti S, Elias Mitre Campista M, Alves dos Santos R, Costa L, Dias de Amorim M & Duarte O, “Measuring the capacity of in–car to in–car vehicular networksâ€, IEEE Communications Magazine, Vol.47, No.11, (2009), pp.128–136.

    [9] Arun V, Naresh KD, Ravinder T, Karthik R, Sankit KR & Nagarjuna T, “Implementation of High-Speed Digital Reconfigurable FIR filter using Low Power Carry Look Ahead adder – Reviewâ€, Journal of Advanced Research in Dynamical and Control Systems, Vol.3S, (2018), pp.1217-1221.

    [10] Vijetha T & Karthik R, “Design and Simulation of a new Reconfigurable Antenna with Meandered line structureâ€, Journal of Advanced Research in Dynamical and Control Systems, Vol.3S, (2018), pp.1222-1224.

    [11] Karthik R, Ranjith S, Shreyas S & Kumar P, “Automatic Border Alert System for Fishermen using GPS and GSM techniquesâ€, Indonesian Journal of Electrical Engineering and Computer Science, Vol.7, No.1, (2017), pp.84-89.

    [12] Karthik R, Nagaraju J & Vucha M, “Distributed Optimal Relay Selection in Wireless Sensor Networksâ€, Indonesian Journal of Electrical Engineering and Computer Science, Vol.7, No.1, (2017), pp.71-74.

    [13] A Mukanbetkaliyev, S Amandykova, Y Zhambayev, Z Duskaziyeva, A Alimbetova (2018). The aspects of legal regulation on staffing of procuratorial authorities of the Russian Federation and the Republic of Kazakhstan Opción, Año 33. 187-216.

    [14] Villalobos Antúnez, JV (2017). Karl R. Popper, Heráclito y la invención del logos. Un contexto para la Filosofía de las Ciencias Sociales. Opción Vol. 33, Núm. 84. 5-11

Downloads

How to Cite

Laxma Reddy, D., S. Arulanth, T., Nehru, K., Nagaraju, N., & Ramesh Reddy, G. (2018). Intelligent Vehicular System with Speed Limit. International Journal of Engineering and Technology, 7(3.27), 20-23. https://doi.org/10.14419/ijet.v7i3.27.17645

Received date: August 16, 2018

Accepted date: August 16, 2018

Published date: August 15, 2018