PV SOLAR TOWER

June 2025
Vol-11, Issue-3
Paper ID: 26808
ISSN: 2395-4396
Downloads: 0

Abstract & Details

Research Area
Electrcial Engineering
Keywords
Solar Tower Bifacial Solar Panels Vertical Configuration Zig-zag Structure Ladder-like Arrangement Solar Energy Efficiency Sunlight Reflection Multi-surface Exposure Energy Absorption Power Output Land Use Efficiency Space-constrained Environments
Abstract
The PV Solar Tower is an innovative arrangement of silicon solar cells designed to maximize the conversion of sunlight into electricity. Unlike traditional solar panel systems that are typically placed on rooftops or installed across open land at a certain degree, our PV Solar Tower introduces a zig-zag and ladder-like vertical configuration of bifacial solar panels. This unique structural design gives more efficient use of space and enhances exposure to sunlight throughout the day. One of the main feature of this system is its ability to produce up to 20% more power output compared to conventional solar cell arrangements. The greater performance is given by a combination of structure and the use of bifacial solar panels, which are capable of harvesting sunlight from both the front and back surfaces. The ladder-like arrangement of solar panels allows the reflected sunlight to fall on the opposite panel where it can again generate electricity, significantly increasing energy absorption and overall output. This approach of maximizing reflection and multi-surface exposure differentiates the PV Solar Tower from traditional solar arrangement. Additionally, this design requires less land area, making it ideal for space-constrained environments. Its applications can range from powering street lighting systems to supporting industrial energy needs, particularly in urban areas where land use efficiency is critical. By combining vertical design, bifacial panel technology, and enhanced sunlight capture through reflection, the PV Solar Tower represents a forward-thinking solution for improving solar energy efficiency in a variety of real-world applications

Author Information

# Name Institute / Affiliation
1 NAGUNOORI SAI SNEHIL INSTITUTE OF AERONAUTICAL ENGINEERING
2 BHAVIRISHETTY KARTIK INSTITUTE OF AERONAUTICAL ENGINEERING
3 VEMULA NITHIN INSTITUTE OF AERONAUTICAL ENGINEERING
4 GONE NAGARAJU INSTITUTE OF AERONAUTICAL ENGINEERING

How to Cite

Use the following formats to cite this article in your research.

APA Style
SNEHIL, NAGUNOORI SAI, KARTIK, BHAVIRISHETTY, NITHIN, VEMULA, & NAGARAJU, GONE (2025). PV SOLAR TOWER. International Journal of Advance Research and Innovative Ideas In Education, 11(3), 2677-2685.
MLA Style
SNEHIL, NAGUNOORI SAI, et al. "PV SOLAR TOWER." International Journal of Advance Research and Innovative Ideas In Education, vol. 11, no. 3, 2025, pp. 2677-2685.
IEEE Style
NAGUNOORI SAI SNEHIL, BHAVIRISHETTY KARTIK, VEMULA NITHIN, and GONE NAGARAJU, "PV SOLAR TOWER," International Journal of Advance Research and Innovative Ideas In Education, vol. 11, no. 3, pp. 2677-2685, 2025.
Vancouver Style
SNEHIL NAGUNOORI SAI, KARTIK BHAVIRISHETTY, NITHIN VEMULA, NAGARAJU GONE. PV SOLAR TOWER. International Journal of Advance Research and Innovative Ideas In Education. 2025;11(3):2677-2685.
Harvard Style
SNEHIL, NAGUNOORI SAI, KARTIK, BHAVIRISHETTY, NITHIN, VEMULA, & NAGARAJU, GONE (2025) 'PV SOLAR TOWER', International Journal of Advance Research and Innovative Ideas In Education, 11(3), pp. 2677-2685.
Chicago Style
SNEHIL, NAGUNOORI SAI, et al. "PV SOLAR TOWER." International Journal of Advance Research and Innovative Ideas In Education 11, no. 3 (2025): 2677-2685.
Turabian Style
SNEHIL, NAGUNOORI SAI, et al. "PV SOLAR TOWER." International Journal of Advance Research and Innovative Ideas In Education 11, no. 3 (2025): 2677-2685.

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