Submit your papersSubmit Now
For Enquiries: [email protected]
IIARD LogoIIARD

Design and Construction of a 5 KVA Automatic Voltage Regulator with Integrated Timer and GSM Control

Ezechi-Oriaku Favour Chiemewoya

Abstract

Voltage fluctuation remains a major challenge affecting the reliability, performance, and lifespan of electrical equipment in Nigeria and many other developing nations. This study presents the design and construction of a 5 kVA automatic voltage regulator (AVR) integrated with a timer and GSM-based control system for remote monitoring and operation. The proposed system employs a microcontroller to detect variations in input voltage and automatically activate the appropriate relay combination to maintain a stable output voltage within the range of 220–240 V. A built-in timer introduces a short delay at startup to protect connected appliances from surge currents, while the GSM module provides remote ON/OFF control and real-time feedback through short message service (SMS). The hardware implementation incorporates a step-down transformer, voltage sensing circuit, relays, and protection devices, whereas the control software was developed in embedded C and tested using Proteus simulation before construction. Experimental results showed that the AVR provided reliable voltage regulation and fast dynamic response across different loading conditions, maintaining its output within a ±5 percent deviation from the nominal voltage. The inclusion of timer and GSM functionalities improved safety, usability, and monitoring efficiency. The system therefore offers a cost-effective and practical alternative to conventional stabilizers, especially for domestic and small industrial applications in regions affected by unstable power supply.

Keywords

Voltage RegulationAutomatic Voltage RegulatorGSM ControlMicrocontroller

References

Ahmed, M. M., & Yusuf, A. A. (2021). Cost-Effective Design of IoT-Based Smart Household Distribution Board. Electronics, 10(9). Alayande, A. S., Hassan, A. O., Olobaniyi, F., Osokoya, S. O., Adebeshin, A. I., & Ogundare, A. B. (2024). L-Index-Based Technique for Voltage Collapse Prediction and Voltage Stability Enhancement in Electrical Power Systems. AJERD, 7(1), 260-277. Baggini, A. (2018). Handbook of Power Quality. John Wiley and Sons. Ekeng, L., Ahiakwo, C., Amadi, H., & Obuah, E. (2024). Voltage collapse in Nigeria power system: Causes and remedies. IOSR Journal of Electrical and Electronics Engineering (IOSR-JEEE), 19(1, Ser. 1), 54-63. Ezeruigbo, E. N., Ekwue, A. O., & Anih, L. U. (2021). Voltage stability analysis of Nigerian 330 kV power grid using static P-V plots. Nigerian Journal of Technology, 40(1), 70-80.. Hoque, M. M. (2014). Design, implementation and performance study of a programmable automatic voltage regulator. Journal of Electrical Systems, 10(4), 472-483. Ojo, T. P., Akinwumi, A. O., Ehiagwina, F. O., Ambali, J. M. and Olatinwo, I. S. (2022). Design and Implementation of a GSM-based Monitoring System for a Distribution Transformer. European Journal of Engineering and Technology Research, 7(2), 22-28. Tarchanidis, K. N., Lygouras, J. N., & Botsaris, P. (2013). Voltage stabilizer based on SPWM technique using microcontroller. Journal of Engineering Science and Technology Review, 6(1), 38-43.

More Articles from INTERNATIONAL JOURNAL OF ENGINEERING AND MODERN TECHNOLOGY