Self-Activated Commuting of Train Allying Between Stations
G. Srinivasa Rao1, S.V. Jagdeesh Chandra2, A. Narendra Babu3, E.V. Krishna Rao G. Lakshmi Teja4, G. Likitha5, Y. Arun Kumar Reddy6
1G. Srinivasa Rao, Department of Electronics & Communication Engg, Lakireddy Balireddy College of Engineering, Mylavaram, Andhra Pradesh, India.
2S.V. Jagdeesh Chandra, Department of Electronics & Communication Engg, Lakireddy Balireddy College of Engineering, Mylavaram, Andhra Pradesh, India.
3A. Narendra Babu, Department of Electronics & Communication Engg, Lakireddy Balireddy College of Engineering, Mylavaram, Andhra Pradesh, India.
4E.V. Krishna Rao G. Lakshmi Teja, Department of Electronics & Communication Engg, Lakireddy Balireddy College of Engineering, Mylavaram, Andhra Pradesh, India.
4G. Likitha, Department of Electronics & Communication Engg, Lakireddy Balireddy College of Engineering, Mylavaram, Andhra Pradesh, India.
5Arun Kumar Reddy, Department of Electronics & Communication Engg, Lakireddy Balireddy College of Engineering, Mylavaram, Andhra Pradesh, India.
Manuscript received on 29 May 2019 | Revised Manuscript received on 05 June 2019 | Manuscript published on 30 June 2019 | PP: 1853-1856 | Volume-8 Issue-8, June 2019 | Retrieval Number: H6873058719/19©BEIESP
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© The Authors. Blue Eyes Intelligence Engineering and Sciences Publication (BEIESP). This is an open access article under the CC-BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/)

Abstract: The main aim of proposed work is to illustrate the driverless Metro train module. A driverless prototype train is designed using arm7 microcontroller that permits the operation of the train from one station to other. The proposed system aims in lowering the human intervention in Metro trains to as minimum as possible which in flip reduces the opportunity of human mistakes. In this work LPC2148 microcontroller has been used as CPU. The automatic stopping of the train is carried by RFID reader, which permits the train to stop while the RFID reader senses the RFID tags located inside the stations. The train is geared up with an obstacle detecting unit using ULTRSONIC sensor which stops the train when it senses the distance between obstacle and the train is less and results are displayed on an liquid crystal display.
Keywords: LPC2148 Microcontroller, RFID, Ultrasonic Sensor, DC Motor, LCD.

Scope of the Article: Logic, Functional programming and Microcontrollers for IoT