Designing of Solar PV/Wind/Grid-Tied Hybrid System for A Domestic Load

Authors

  • Hanan Gulzar M.Tech. Scholar, Department of Electrical Engineering, RIMT University Mandi Gobindgarh ,Punjab, India Author
  • Krishna Tomar Assistant Professor, Department of Electrical Engineering, RIMT University Mandi Gobindgarh, Punjab, India Author
  • Satish Saini Assistant Professor, Department of Electrical Engineering, RIMT University Mandi Gobindgarh, Punjab, India Author

Keywords:

Solar PV, Wind energy, Hybrid energy, HOMER, Grid

Abstract

 In ancient times mostly house chore are  done by using muscle powers. With the advent of electrical  energy there is a tremendous shift in the working pattern of  such chores, which resulted in availability of ample time  with the home maker to engage in other productive works. In  achieving this the Indian national grid plays a pivotal role.  However there are such places which faces difficulties in  performing such chores due to frequent outage of electricity,  which creates discomfort and economic loss. As the  technology is developing at a rapid rate, the world is  witnessing new renewable energy sources with improved  efficiency. These sources not only solve the energy shortage problem, rather it is able to fight the environmental menace too. The ever fluctuating global crude oil price also creates a  challenge for India to maintain its energy security. The time  when the Union government is promoting the renewable  source for its various advantages, this study assesses one  such model. The study operates the solar PV and wind mill  in unison and then the hybrid combination is integrated with  the national grid. The study aims to provide continuous power supply with cost effective price. The model is  simulating using the HOMER software and its various  impacts are assessed critically.  

Downloads

Download data is not yet available.

References

Bull, S. R. (2001). Renewable energy today and tomorrow. Proceedings of the IEEE, 89(8), 1216–1226.

Akella AK, Saini RP, Sharma MP. Social, economical and environmental impacts of renewable energy systems. Renewable Energy 2009;34:390–6

Fathima AH, Palanisamy K. Optimization in micro-grids with hybrid energy systems review. Renew Sustain Energy Rev 2015;45:431e46.

Tiwary A, Spasova S, Williams I. A community-scale hybrid energy system integrating biomass for localised solid waste and renewable energy solution: evaluations in UK and Bulgaria. Renew Energy 2019;139:960e7.

Díaz P., Peña R., Muñoz J., Arias C. A., & Sandoval, D. (2011). Field analysis of solar PV-based collective systems for rural electrification.Energy, 36(5), 2509-2516.

Chaurasiya, P. K., Warudkar, V., & Ahmed, S. (2019). Wind energy development and policy in India: A review. Energy Strategy Reviews, 24, 342–357.

Kumar, V., Pandey, A. S., & Sinha, S. K. (2016). Grid integration and power quality issues of wind and solar energy system: A review. 2016 International Conference on Emerging Trends in Electrical Electronics & Sustainable Energy Systems (ICETEESES).

Arribas L., Cano L., Cruz I., Mata M., &Llobet E. (2010). PV–wind hybrid system performance: A new approach and a case study. Renewable energy 35(1), 128-137.

IS/IEC 61724:1988, Indian standard Photovoltaic system performance monitoring-guidelines for measurement, data exchange and analysis.

Overend RP. Biomass for Energy, Energy Studies Review, 1989; 1(1) Article 2.<http://digitalcommons.mcmaster.ca/esr/vol1/iss1/2>

Downloads

Published

2022-04-30

How to Cite

Designing of Solar PV/Wind/Grid-Tied Hybrid System for A Domestic Load . (2022). International Journal of Innovative Research in Engineering & Management, 9(2), 1–7. Retrieved from https://acspublisher.com/journals/index.php/ijirem/article/view/10909