IJEM Vol. 16, No. 5, 8 Oct. 2026
Cover page and Table of Contents: PDF (size: 1171KB)
PDF (1171KB), PP.238-254
Views: 0 Downloads: 0
PV cell, Dual-Axis System, ATMEGA 328, Renewable Energy, Internet of Things
Solar energy is a widely utilized renewable source, yet the performance of photovoltaic (PV) systems is significantly affected by temperature rise, dust accumulation, and improper panel orientation. While many approaches, such as temperature management, water cooling, and active tracking, whether used alone or in combination, have been adopted to improve PV cell efficiency, they have provided only limited enhancement. This study presents a low-cost solar PV module performance-enhancement prototype incorporating threshold-based active cooling, LDR-driven dual-axis solar tracking, automated surface cleaning, and monitoring functionality. The proposed system employs a reliable ATMEGA328 controller well suited for hybrid intelligent function of regulation of DC fan and water-cooling mechanisms based on real-time temperature data, ensuring activation when the panel temperature exceeds the limit of 35°C. Dual-axis tracking using LDR sensors and servo motors optimizes solar irradiance absorption, while IoT intelligence connectivity enables remote monitoring, data visualization, and system diagnostics. Additionally, Bluetooth support operation aids in manual operation control of the cooling system. The performance was evaluated against a conventional fixed PV configuration using the recorded daytime power-output profile. The proposed integrated configuration increased the cumulative measured power output by approximately 18.8% relative to the conventional reference, with the instantaneous enhancement reaching approximately 36% during the evaluated high-output operating period; the prototype temperature measurements ranged from approximately 35 to 44 °C under the recorded test conditions. The results demonstrate the potential of coordinated solar tracking and thermal management to improve PV power generation.
SriLakshmi Lavanya Kota, M. Raja Nayak, M. Sudheer Kumar, T. Vamsee Kiran, Pradeep Panthagani, B. Devulal, Harish Sesham, "Threshold-Based Active Cooling and LDR-Driven Dual-Axis Tracking for Low-Cost PV Performance Enhancement: Hardware Implementation and Experimental Evaluation", International Journal of Engineering and Manufacturing (IJEM), Vol.16, No.5, pp. 238-254, 2026. DOI:10.5815/ijem.2026.05.13
[1]M. Angel Pérez García, J. C. Á. Antón, J. Carlos Granda Candás, C. Carleos Artime, A. Isabel Suárez and L. Pérez Castaño, "An IoT-Based Instrumentation System for Mechanical Stress Monitoring in Solar Plants," in IEEE Sensors Journal, vol. 26, no. 4, pp. 6253-6266, 15 Feb.15, 2026.
[2]B. Devulal, I. Gollapudi, M. R. Nayak, K. Srikanth, V. V. I and N. Kyathieshwar, "Design of PV System with Battery Backup Using Different Hybrid MPPT Techniques," IEEE International Conference on Information Technology, Electronics and Intelligent Communication Systems, pp. 1-6, Bangalore, India, 2025.
[3]M. Raja Nayak et al., "Modified PV Panel Design Configurations for Enhancement of Panel Efficiency," International Conference on Circuits, Power and Intelligent Systems, pp. 1-5, Bhubaneswar, India, 2023.
[4]S. U. M. Reddy, N. Venkatesh, N. S. Nagendra, P. R. Prasad and M. R. Nayak, "Study on New Design Techniques for Enhancement of Solar Panel Efficiency," International Conference on Computing Sciences, pp. 70-75, Phagwara, India, 2021.
[5]M. R. Nayak, Y. Srikanth, M. Padmavathi and S. R. Khasim, "Enhancement of Solar PV Cell Efficiency Using Instantaneous Light Reflection Technique," International Conference on Computational Intelligence and Sustainable Engineering Solutions, pp. 202-208, Greater Noida, India, 2022.
[6]T. S. Kumar, M. R. Nayak, R. V. Krishna and K. P. Rao, "Enhanced Performance of Solar PV Array-Based Machine Drives Using Zeta Converter," IEEE International Conference on Advances and Developments in Electrical and Electronics Engineering, pp. 1-5, Coimbatore, India, 2020.
[7]M. Raja Nayak et al., "Alternative Design Modifications for Enhancement of PV Panel Efficiency," IEEE International Conference on Sustainable Energy and Future Electric Transportation, pp. 1-6 Hyderabad, India, 2022.
[8]Syed Abdul Mujeer, Ramesh Jayaraman, Puchanuthala Siva Krishna, Sivaprasad Kollati, M Raja Nayak, "FOPID and state space analysis-based PSS for damping of oscillation in multi machine system," Materials Today: Proceedings, Volume 80, pp. 2480-2488, 2023.
[9]A. Alam Khan, S. Mohd Yahya, B. Mohamed Mrabet and M. S. B. Arif, "Temperature Regulation and Efficiency Enhancement in PV/T Systems Using Nano-PCM: Experimental Validation," in IEEE Access, vol. 13, pp. 183283-183295, 2025.
[10]K. Velmurugan et al., "Experimental Studies on PV Module Cooling With Radiation Source PCM Matrix," in IEEE Access, vol. 8, pp. 145936-145949, 2020.
[11]R. S. G, A. B, G. B, H. M and K. P, "Solar Panel Fault Detection Using Internet of Things," 2024 International Conference on IoT Based Control Networks and Intelligent Systems (ICICNIS), Bengaluru, India, 2024, pp. 727-731, doi: 10.1109/ICICNIS64247.2024.10823354.
[12]K. E. O. Glorioso, N. G. Miranda, J. R. A. Rondilla, Z. P. Mabunga, M. C. Panergo and R. R. Maaliw, "Comparative Analysis of Energy Output in Solar Tracking Systems," 2026 International Conference on Frontiers of Engineering and Emerging Technologies (FET), Sakhir, Bahrain, 2026, pp. 1-6, doi: 10.1109/FET68771.2026.11601442.
[13]S. O. Obatola and T. Junjie, "Power Flow Optimization and Voltage Stability Using DSTATCOM With Deep Learning Techniques in PV-Connected Grids Under Varying Load Conditions," IEEE Sensors Journal, vol. 26, no. 4, pp. 5654-5669, 15 Feb.15, 2026.
[14]P. Naveen, K. Ravi Teja, K. Sahithi Reddy, S. Melikis Sam, M. Dinesh Kumar and M. Saravanan, "ATMEGA 328-based Gas Leakage Monitoring and Alerting IoT System with SMS Notification," International Conference on Advanced Computing and Communication Systems, pp. 1300-1305Coimbatore, India, 2023,
[15]K. Mounika, S. V. Akram and S. Gupta, "Real-Time Heart Rate Monitoring and Analysis for Different Age Groups Using Integration of Cloud and ML," in IEEE Internet of Things Journal, vol. 12, no. 20, pp. 42613-42623, 15 Oct.15, 2025.
[16]M. A. Eissa, M. M. Samy, A. M. El-Rifaie, A. A. F. Youssef and M. Said, "Hybrid Energy System Resilience Investigations and Techno-Economic Study," IEEE Access, vol. 14, pp. 21907-21919, 2026.
[17]P. K. Pathak, D. G. Roy, A. K. Yadav, S. Padmanaban, F. Blaabjerg and B. Khan, "A State-of-the-Art Review on Heat Extraction Methodologies of Photovoltaic/Thermal System," IEEE Access, vol. 11, pp. 49738-49759, 2023.
[18]Z. M. Alaas, "The Effects of Temperature on Photovoltaic and Different Mitigation Techniques: A Review," IEEE Access, vol. 12, pp. 180309-180327, 2024.
[19]S. I. Palomino-Resendiz, F. A. Ortiz-Martínez, I. V. Paramo-Ortega, J. M. González-Lira and D. A. Flores-Hernández, "Optimal Selection of the Control Strategy for Dual-Axis Solar Tracking Systems," IEEE Access, vol. 11, pp. 56561-56573, 2023.
[20]N. Zhang et al., "Deep Fusion of Clear-Sky Physics and a Multimodal Transformer for Solar Irradiance Forecasting," IEEE Access, vol. 14, pp. 10424-10435, 2026.
[21]Y. R. Al-Saadi, M. S. Tapou, A. A. Badi, S. Abdulla and M. Diykh, "Developing Smart Self Orienting Solar Tracker for Mobile PV Power Generation Systems," IEEE Access, vol. 10, pp. 79090-79099, 2022.
[22]Z. -H. Shen et al., "Improving the Energy-Conversion Efficiency of a PV–TE System with an Intelligent Power-Track Switching Technique and Efficient Thermal-Management Scheme," in IEEE Transactions on Components, Packaging and Manufacturing Technology, vol. 11, no. 6, pp. 963-973, June 2021,
[23]A. Roy, P. Das and R. Das, "Temperature and humidity monitoring system for storage rooms of industries," International Conference on Computing and Communication Technologies for Smart Nation, pp. 99-103 Gurgaon, India, 2017.