PLC Based Automated Packaging and Delivery System

Authors

  • K. D. Patel Professor, Department of Electronics Engineering, Birla Vishwakarma Mahavidyalaya Engineering College, Vallabh Vidyanagar, Gujarat
  • D. M. Patel Professor, Department of Electronics Engineering, Birla Vishwakarma Mahavidyalaya Engineering College, Vallabh Vidyanagar, Gujarat
  • Pahini Shah Student, Department of Electronics Engineering, Birla Vishwakarma Mahavidyalaya Engineering College, Vallabh Vidyanagar, Gujarat
  • Sunanda Karan Student, Department of Electronics Engineering, Birla Vishwakarma Mahavidyalaya Engineering College, Vallabh Vidyanagar, Gujarat

DOI:

https://doi.org/10.37591/rtpl.v6i1.2164

Abstract

The very clear objective of this article is to introduce awareness about automation of traditional/conventional techniques of packaging and delivering used in the automation industries. The small models are designed precisely which are then automated individually with the help of Programmable Logic Controller programming. This article defines method to automate the process of placing various materials inside a box, detecting it and counting the items, examination of damaged products and delivery. This process includes design and fabrication of small and simple conveyor belt system and automates the process for packaging. Sensors are used to provide the information to the controller. DC motor is used as output actuator for the system to move conveyor belts after getting the orders from the control system. Siemens PLC S7-200 was used to control and automate the system by ladder logic diagram software. The results obtained show that system is able to decrease production time and increase the productivity, as compared with traditional/conventional manual system.

Keywords: Packaging and delivery system, automated, PLC, palletizing, proximity sensor

Cite this Article

K.D. Patel, D.M. Patel, Pahini Shah, Sunanda Karan. PLC Based Automated Packaging and Delivery System. Recent Trends in Programming Languages 2019; 6(1): 21–26p.

Published

2019-06-12

Issue

Section

Research Articles