, ,

Application Based Solar Calculator with Cost Estimation



EOI: 10.11242/viva-tech.01.05.053

Download Full Text here



Citation

Pankaj S Yadav,Ashishkumar Pacharekar, Hitesh Jadhav, Prathamesh Vekhande, " Application Based Solar Calculator with Cost Estimation", VIVA-IJRI Volume 1, Issue 5, Article 53, pp. 1-6, 2022. Published by Computer Engineering Department, VIVA Institute of Technology, Virar, India.

Abstract

The idea represents the method for calculating the capacity of an solar panel installation and its components. This method allows considering a load variation during the day as well as specifying the required capacity of the battery. Excluding an unjustified overestimation of the panel component capacities along with the increase in efficiency of the solar panels So we will make an app to help people know the benefits of solar power and help transition them to a life powered by solar panels and other renewable sources. The calculator may allow recalculating capacities of loads on the power plant main supply bus as well as determining the energy consumption of loads per day. Another motive is to provide info about types of solar batteries and inverters which are available in the market, for energy storage to avoid power outage. It’s all about figuring out what upfront cost we can comfortably incur.

Keywords

Cost Estimation, Energy Consumption, Inverters, Load, Memory, Recalculating Capacities, Solar Calculations.

References

  1. Allan Miller, Alan R Wood, Sharee McNab, “The EECA energywise (TM) PV Solar Calculator”, EECA,2016.
  2. Temitope M. John, Samuel T. Wara, “A Tutorial on the Development of a Smart Calculator to Determine the Installed Solar Requirements for Households and Small Businesses”, IEEE, 2016.
  3. Retno Aita Diantari, Isworo Pujotomo, “Calculation of electrical energy with solar power plant design”, IEEE, 2016.
  4. Jack, M., Ford, R. and Dew, J. (2016). Household demand and demand management opportunities, presentation at the GREEN Grid Conference, 10 February 2016.
  5. Hemakshi Bhoye and Gaurang Sharma, "An Analysis of One MW Photovoltaic Solar Power Plant Design", International Journal of Advanced Research in Electrical Electronics and Instrumentation Engineering, January 2014.
  6. Hua Lan, Zhi-min Liao, Tian-gang Yuan and Feng Zhu, "Calculation of PV Power Station Access", ELSEVIER., 2012.
  7. Mevin Chandel, G. D. Agrawal, Sanjay Mathur and Anuj Mathur, "Techno- Economic Analysis of Solar Photovoltaic power plant for garment zone of jaipur city", ELSEVIER., 2013.
  8. P. J. van Duijsen, "Modeling Grid Connection For Solar and Wind Energy" in Simulation Research The Netherlands, Taiwan:Frank Chen, Pitotech.
  9. Souvik Ganguli and Sunanda Sinha, "Design of A 11 KWp Grid Connected Solar Photovoltaic Plant On 100", TUTA/IOE/PCU, 2010.
  10. "Renewable Power Generation Cost in 2014", IRENA2014.
  11. Tiberiu Tudorachel and Liviu Kreindler, "Design of A Solar Tracker System For PV Power Plants", Acta Polytechnica Hungarica,
  12. T. M. John, E. G. Ucheaga, O. O. Olowo, J. A. Badejo and A. A. Atayero, "Towards building smart energy systems in sub-Saharan Africa: A conceptual analytics of electric power consumption", Future Technologies Conference (FTC)
  13. O. O. Ajayi, O. D. Ohijeagbon, C. E. Nwadialo and O. Olasope, "New model to estimate daily global solar radiation over Nigeria", Sustainable Energy Technologies and Assessments, vol. 5, pp. 28-36, 2014.