Design and Construction of a Controlled Temperature Food Product Dryer Based on a Programmable Logic Controller (PLC)

Authors

  • Kurniawati Naim
  • Sarma Thaha
  • Muhammad Noor Ichwal
  • Muhammad Akbar
  • Muhammad Taufik Iman

DOI:

https://doi.org/10.31963/elekterika.v21i1.4802

Keywords:

Drying Machine, Programmable Logic Controller (PLC), Controlled Temperature

Abstract

Drying food products using traditional methods relying on sunlight takes a relatively long time, especially with unpredictable weather conditions. Essentially, artificial drying using heat-based equipment provides several advantages, including: independence from weather conditions, adjustable drying capacity, controlled temperature, no need for extensive space, controlled drying conditions, and guaranteed and uniform drying quality. Therefore, this design aims to create a food drying apparatus with PLC control. PLC is used as the controller for this drying apparatus, allowing automatic drying of certain types of food. In this design, we connect a DC motor to rotate the drying cylinder with a PLC device by creating a ladder diagram and determining the inputs and outputs in the CX-Programmer application. The design utilizes three inputs and two outputs. It is important that the I/O is readable by the PLC so that the system operates according to the programmed instructions.

References

Ali, M. DC Motor Speed Control Using a PID Controller Tuned with the Firefly Algorithm. Intake Journal: Journal of Engineering and Applied Science Research , 3 (2), 1-10, 2012.

Aprilyani, ST, Irianto, I., & Sunarno, E. Design and Comparison of DC Motor Speed Control. Ecotype Journal (Electronic, Control, Telecommunication, Information, and Power Engineering), 7(2), 127-134, 2020.

Ashar, A., & Putera, I. POST HARVEST HANDLING OF VARIETIES OF RICE WITH RICE MILLING UNITS (RMU). Tropical Galung Journal. 2013.

Bahar. How to Connect a Power Supply . Retrieved 2022, from baharelectronic: https://www.bahar electronic.com/ , 2018.

Daulay, SB Rice drying (methods and equipment). Medan: University of North Sumatra, 2005.

Desrosier, Norman. Food Preservation Technology. Jakarta: UI Press. Sutijahartini, S. 1985. Drying. FATETA Agricultural Industrial Technology Department. Bogor Agricultural Institute. Bogor, 1988.

Hadiutomo, K. Agricultural Mechanization . PT Publisher IPB Press. Bogor: Bogor Agricultural Institute, 2012.

Hidayat, Mulyadi, Dian, & Eko. Design of Controlled Temperature Food Dryer Equipment. Makassar: Ujung Pandang State Polytechnic, 2010.

McCabe, WL, Smith, JL, and Harriot, P. Unit Operations of Chemical Engineering, 4 th ed. McGraw Hill International Book Co: Singapore, 2002.

Payunglangi, J., & Nasri, M. Design and Development of Controlling the Use of Electrical Power Loads Using PLC and Touchscreen. Makassar, 2019.

Robith, M. Working Principles of Single Phase Induction Motors . Retrieved 2022, from Insinyoer: https://www.insinyoer.com/ , 2015.

Sugiyanto, H., Paronda, AH, & Samsiana, S. DESIGN AND DESIGN OF THE USE OF THERMOELECTRIC AS A COOLANT IN THE CONTROL OF A 450 TON STORK PLASTIC INJECTION MACHINE . JREC (Journal of Electrical and Electronics) , 5 (2), 125-138, 2017.

Suprianto. Understanding PLC . Retrieved February 2022, from blog.unnes.ac.id/antosupri/pengertian-plc-programmable-logic-control/: http://blog.unnes.ac.id , 2015.

Downloads

Published

2024-05-01

Issue

Section

Articles