Paper Title
DESIGN THINKING BASED DESIGN OF SOLAR PANEL WITH SOLAR TRACKING SYSTEM WITH LESS POWER COSUMPTION
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Keywords
sustainable, dual axis , solar trackers, LDR, recorded values
Abstract
To be reserved for the future is the prime aim of today. We use natural resources abundantly such that our future generation may or may not have the chance of living with nature and leading a resourceful life . In order to maximize energy generation from sun, it is necessary to introduce solar tracking systems into solar power systems. A dual-axis tracker can increase energy by tracking sun rays from switching solar panel in various directions. But the power consumed by these dual axis solar trackers are so large such that the entire power generated is consumed by itself and do there is no benefit of these systems. In order to minimise the power consumption, we introduce the concept of IOT and automation in which the sun’s position can be tracked by the resistance value of LDR (Light Dependent Resistor). The values are recorded using thingspeak and IFTTT and using these recorded values, the panel’s position can be changed according to the sun’s position only when we are in need of larger electricity supply .This solar panel can rotate in all directions. This system is powered by Arduino, consists of servo motor ,LDR, rain drop sensor, temperature and humidity sensor and power . Hence using this system the sun’s energy can be utilised fully to generate power and for other applications.
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How To Cite (APA)
Kiruthika R, Prabha R, Akshaya S, Revanth M, & Saran B (October-2022). DESIGN THINKING BASED DESIGN OF SOLAR PANEL WITH SOLAR TRACKING SYSTEM WITH LESS POWER COSUMPTION. INTERNATIONAL JOURNAL OF NOVEL RESEARCH AND DEVELOPMENT, 7(10), 511-514. https://ijnrd.org/papers/IJNRD2210064.pdf
Issue
Volume 7 Issue 10, October-2022
Pages : 511-514
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Paper Reg. ID: IJNRD_183254
Published Paper Id: IJNRD2210064
Downloads: 000122253
Research Area: Electronics & Communication Engg.Â
Author Type: Indian Author
Country: Coimbatore, Tamil Nadu , India
Published Paper PDF: https://ijnrd.org/papers/IJNRD2210064.pdf
Published Paper URL: https://ijnrd.org/viewpaperforall?paper=IJNRD2210064
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