Design and Implementation of an IoT Microcontroller Power Protection and Control System
Keywords:
IOT, Microcontroller, Low voltage, High voltage, 220 voltsAbstract
Unstable power supply is a persistent challenge in Nigeria, necessitating effective voltage regulation solutions. This study presents the design and implementation of an Internet of Things (IoT)-based microcontroller voltage stabilizer for power protection and control. The system automatically detects abnormal voltage levels—low, high, and over-voltage conditions—and corrects them to maintain a stable output of approximately 220 volts. Using a microcontroller and the Blynk application, the device enables real-time wireless monitoring of voltage levels. Experimental tests confirmed that the device could regulate input voltages ranging from 140 V to 250 V, ensuring a consistent output voltage near 220 V. The proposed solution offers a reliable, cost-effective, and efficient alternative to commercial stabilizers and demonstrates minimal thermal risk during operation
Downloads
Published
Issue
Section
Similar Articles
- Joseph Jacob, Paul Andrew P. Mamza, Mechanism of Water Absorption Behaviour in Groundnut Shell Powder Filled Waste HDPE Composites , Communication In Physical Sciences: Vol. 6 No. 1 (2020): VOLUME 6 ISSUE 1
- Ahmed Kehinde Usman, Yusuf Adigun Hassan, Geology of Northeastern Nigeria and Its Prospects for Geothermal Energy: A Review , Communication In Physical Sciences: Vol. 12 No. 4 (2025): VOLUME1 2 ISSUE 4
- Ajogwu Cordelia Odinaka, Aaron Auduson, Tope Alege, Yusuf Odunsanwo, Formation Evaluation Using Integrated Petrophysical Data Analysis of Maboro Field Niger Delta Sedimentary Basin, Nigeria , Communication In Physical Sciences: Vol. 11 No. 3 (2024): VOLUME 11 ISSUE 3
- Umar Dangoje Musa, Eloayi David Paul, Sani Uba, Nsikan Nwokem, Sani Danladi, Risk Assessment of Selected Metallic Pollutants in Fish from Zuru dam, Kebbi State, Nigeria , Communication In Physical Sciences: Vol. 12 No. 3 (2025): VOLUME 12 ISSUE 3
- Abubakar Tahiru, Oluwasanmi M. Odeniran, Shardrack Amoako, Developing Artificial Intelligence-Powered Circular Bioeconomy Models That Transform Forestry Residues into High-Value Materials and Renewable Energy Solutions , Communication In Physical Sciences: Vol. 8 No. 4 (2022): VOLUME 8 ISSUE 4
- Faith Osaretin Osabuohien, Green Analytical Methods for Monitoring APIs and Metabolites in Nigerian Wastewater: A Pilot Environmental Risk Study , Communication In Physical Sciences: Vol. 4 No. 2 (2019): VOLUME 4 ISSUE 2
- Yakubu Azeh, Spectroscopic Characterization of Acetylated Wood Flakes and Its High-Density Polyethylene Blends , Communication In Physical Sciences: Vol. 8 No. 1 (2022): VOLUME 8 ISSUE 1
- Musa M. Mbusube, Dahiru D. Muhammed, Saidu Abdullahi, Abdulaziz Bello, Hydraulic Modelling and Compression Design for High-Pressure Natural Gas Transmission: A Case Study of the Calabar–Ajaokuta Gas Pipeline System , Communication In Physical Sciences: Vol. 13 No. 2 (2026): VOLUME 13 ISSUE 2
- Obialo Solomon Onwuka, Elochukwu Pearl Echezona, Chimankpam Kenneth Ezugwu, Hydrogeology of Uburu and Environs, Southern Eastern, Nigeria , Communication In Physical Sciences: Vol. 3 No. 1 (2018): VOLUME 3 ISSUE 1
- Elijah Danladi, Paul. A.P. Mamza, S.A. Yaro, M.T. Isa, E. R. Sadiku, Tshwane, Dynamic Mechanical Properties and Surface Morphology of Glass/Jute/Kevlar Fibres reinforced Hybrid Composite , Communication In Physical Sciences: Vol. 7 No. 4 (2021): VOLUME 7 ISSUE 4
You may also start an advanced similarity search for this article.



