This paper is published in Volume-5, Issue-2, 2019
Area
IoT
Author
Dinesh Kumar S., Prem Kumar R., Venkatesan G., Vinston Raja R.
Org/Univ
Panimalar Institute of Technology, Chennai, Tamil Nadu, India
Pub. Date
16 March, 2019
Paper ID
V5I2-1304
Publisher
Keywords
IoT, Zigbee, Sound vibration detecting sensor, Arduino

Citationsacebook

IEEE
Dinesh Kumar S., Prem Kumar R., Venkatesan G., Vinston Raja R.. Automatic opening and closing of railway gates and signaling in railways using IoT, International Journal of Advance Research, Ideas and Innovations in Technology, www.IJARIIT.com.

APA
Dinesh Kumar S., Prem Kumar R., Venkatesan G., Vinston Raja R. (2019). Automatic opening and closing of railway gates and signaling in railways using IoT. International Journal of Advance Research, Ideas and Innovations in Technology, 5(2) www.IJARIIT.com.

MLA
Dinesh Kumar S., Prem Kumar R., Venkatesan G., Vinston Raja R.. "Automatic opening and closing of railway gates and signaling in railways using IoT." International Journal of Advance Research, Ideas and Innovations in Technology 5.2 (2019). www.IJARIIT.com.

Abstract

The Internet of Things (IoT) is a group of devices which are connected together in the network. It is used in sound vibrator and ZigBee transceiver which will receive frequency of the vibration and the time from which the train reaches the sensor from the server. In this, we are using a sound vibrator which will detect vibrations from the track and the signal is transferred to the gear motor and the gate will get closed automatically. When the train passes the gate another sound vibration sensor is fixed at another end and it will transfer the signal to the gate and gate will open automatically. Here the additional features added are we can calculate the current speed of the train and we can also track the track damage. The main objective of this work is to provide automatic closing and the opening of gates and railway system. We can avoid careless mistakes done by the gatekeeper and we can reduce manpower in the railway system.