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Planing, Structure and Preparation of Cost Effective Sun Oriented Vitality Based Electrical Power Framework System at Alakh Prakash Goyal Shimla University, Himachal Pradesh
Vikas Sharma1, Anand Mohan2 

1Er. Vikas Sharma Department of Electrical Engineering, Under the School of Technology and Sciences at Alakh Prakash Goyal Shimla University, Shimla India.
2Dr. Anand Mohan, Professor in the Department of Electrical Engineering under the School of Technology and Sciences at Alakh Prakash Goyal Shimla University, Shimla India.

Manuscript received on 06 March 2019 | Revised Manuscript received on 12 March 2019 | Manuscript published on 30 July 2019 | PP: 2643-2649 | Volume-8 Issue-2, July 2019 | Retrieval Number: A2146058119/19©BEIESP | DOI: 10.35940/ijrte.A2146.078219
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© The Authors. Blue Eyes Intelligence Engineering and Sciences Publication (BEIESP). This is an open access article under the CC-BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/)

Abstract: The vital reason behind this paper is to plan, structure and set up a perfect electric power age using feasible power source at Alakh Prakash Goyal Shimla University, Shimla. A daylight based crucial rate has been suggested that will cover the sun based power age cost, then again called the cost recovery program. Likewise one of the significant parts of this investigation is to diminish vitality utilization in Alakh Prakash Goyal Shimla University, Shimla; this paper endeavors to propose electrical power age with the utilization of sun powered vitality. The point was to show that sustainable power source can be a suitable elective hotspot for providing the required electrical power vitality. The photovoltaic power plant has a normal sun based radiation of 6.54 KWh/m2 for most recent multi year. All out burden on college is around 200 KW and the college expends units between 40000 – 75000 units, bringing about a normal charging of INR.₹ 2.0 – 3.5 Lakhs bill. After establishment of Solar PV modules power bill has been lessen by INR.₹ 0.5-1.20 Lakhs.
Keywords: Solar Energy, Photovoltaic Cells, Tilt Angle, Electrical Power Generation, Module Efficiency.

Scope of the Article: Service Oriented Architectures