Improving the Efficiency of Solar Panel by Continuous Energy Generation
Ramprabu J1, Poovarasan V2, Karunamoorthy B3
1Ramprabu J, Assistant Professor II, Department of Electrical and Electronics Engineering, Kumaraguru College of Technology, Coimbatore (Tamil Nadu), India.
2Poovarasan V, UG Student, Department of Electrical and Electronics Engineering, Kumaraguru College of Technology, Coimbatore (Tamil Nadu), India.
3Karunamoorthy B, Assistant Professor, Department of Electrical and Electronics Engineering, Kumaraguru College of Technology, Coimbatore (Tamil Nadu), India.
Manuscript received on 13 December 2018 | Revised Manuscript received on 22 December 2018 | Manuscript Published on 30 December 2018 | PP: 431-434 | Volume-8 Issue-2S, December 2018 | Retrieval Number: 100.1/ijeat.B10911282S18/18©BEIESP
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Abstract: Solar energy is taking part in a significant role in compensating the electricity as there’s short fall during this energy because of a lot of demand and decline trends of typical source of energies exhaustion of fuels like coal, petroleum, natural gases associated constant of environmental and climatic changes to cope up this electrical phenomenon installation is being drained an electrical system to compensate and enhance the energy. Generation of electricity through renewable energy is drastically increasing day by day. The most commonly used renewable energy is solar energy. Energy can be only generate during day time, whenever sunlight is available. The problem is electricity cannot be generated during nighttime, when sunlight is not available. The proposed procedure utilizes incandescent lamp to create power from the sun oriented board amid evening time. The primary point of this undertaking is to control sunlight based board cover OPEN and CLOSE contingent on the sun light. To make it adaptable and a considerable measure of supportive for the parts more up to date patterns and advancements can encourage.
Keywords: Photo Voltaic Panel, Halogen Bulb, Maximum Power Point Tracking.
Scope of the Article: Energy Harvesting and Transfer for Wireless Sensor Networks