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The increasing demand for renewable energy has accelerated the adoption of solar power systems. However, conventional solar energy systems often suffer from inefficiencies due to lack of real-time monitoring and control. This paper presents the development of an efficient Internet of Things (IoT)-integrated Arduino-based system designed to enhance the performance of solar energy applications. The proposed system incorporates sensors to measure voltage, current, and temperature, and utilizes an Arduino microcontroller for data acquisition and processing. IoT technology enables real-time monitoring and remote access to system performance data through a cloud platform. Experimental results demonstrate improved efficiency, better energy utilization, and enhanced system reliability. The proposed approach offers a cost-effective and scalable solution for modern solar energy management systems.
Keywords:
Solar Energy, Internet of Things (IoT), Arduino, Energy Efficiency, Renewable Energy, Real-Time Monitoring, High-Performance Systems.
Cite Article:
"Development of an Efficient IoT-Integrated Arduino System for High-Performance Solar Energy Applications", International Journal for Research Trends and Innovation (www.ijrti.org), ISSN:2456-3315, Vol.11, Issue 4, page no.c165-c172, April-2026, Available :http://www.ijrti.org/papers/IJRTI2604293.pdf
Downloads:
000205522
ISSN:
2456-3315 | IMPACT FACTOR: 8.14 Calculated By Google Scholar| ESTD YEAR: 2016
An International Scholarly Open Access Journal, Peer-Reviewed, Refereed Journal Impact Factor 8.14 Calculate by Google Scholar and Semantic Scholar | AI-Powered Research Tool, Multidisciplinary, Monthly, Multilanguage Journal Indexing in All Major Database & Metadata, Citation Generator