References
[1]. Asrari, A., Ghasemi, A., & Javidi, M. H. (2012). Economic
evaluation of hybrid renewable energy systems for rural
electrification in Iran - A case study. Renewable and
Sustainable Energy Reviews, 16(5), 3123-3130. https://doi.
org/10.1016/j.rser.2012.02.052
[2]. Azmy, A. M., & Erlich, I. (2005, June). Impact of
distributed generation on the stability of electrical power
system. In IEEE Power Engineering Society General Meeting
(pp. 1056-1063). IEEE. https://doi.org/10.1109/PES.2005.
1489354
[3]. Bajpai, P., Kumar, S., & Kishore, N. K. (2010, June). Sizing
optimization and analysis of a stand-alone WTG system
using hybrid energy storage technologies. In Proceedings
of the International Conference on Energy and Sustainable
Development: Issues and Strategies (ESD 2010) (pp. 1-6).
IEEE. https://doi.org/10.1109/ESD.2010.5598789
[4]. Chhattisgarh State Renewable Energy Development
Agency. (2020). Request for Proposal (RFP) for Selection of
Bidders for Implementation of ~20 MWp Grid Connected
Roof Top Solar PV Systems for Sale of Solar Power under
RESCO Model for Government Buildings at Different
locations in Chhattisgarh. CREDA. Retrieved from https://
jmkresearch.com/wp-content/uploads/2020/04/CREDA-
20-MW.pdf
[5]. Dursun, B., Gokcol, C., Umut, I., Ucar, E., & Kocabey, S.
(2013). Techno-economic evaluation of a hybrid PV - Wind
power generation system. International Journal of Green
Energy, 10(2), 117-136. https://doi.org/10.1080/1543507
5.2011.641192
[6]. Hakimi, S. M., Moghaddas - Tafreshi, S. M., & Hassanzadeh
Fard, H. (2011). Optimal sizing of reliable hybrid renewable
energy system considered various load types. Journal of
Renewable and Sustainable Energy, 3(6). https://doi.org/
10.1063/1.3655372
[7]. Lal, D. K., Dash, B. B., & Akella, A. K. (2011). Optimization
of PV/wind/micro-hydro/diesel hybrid power system in
HOMER for the study area. International Journal on
Electrical Engineering and Informatics, 3(3), 307-325.
[8]. Maherchandani, J. K., Agarwal, C., & Sahi, M. (2012).
Economic feasibility of hybrid biomass/PV/wind system for
remote villages using HOMER. International Journal of
Advanced Research in Electrical, Electronics and
Instrumentation Engineering, 1(2), 49-53.
[10]. Makhija, S. P., & Dubey, S. P. (2017). Optimally sized
hybrid energy system for auxiliaries of a cement
manufacturing unit with diesel fuel price sensitivity analysis.
International Journal of Ambient Energy, 38(3), 267-272.
https://doi.org/10.1080/01430750.2015.1086680
[11]. Ndukwe, C., Iqbal, T., Liang, X., & Khan, J. (2019).
Optimal sizing and analysis of a small hybrid power system
for Umuokpo Amumara in Eastern Nigeria. International
Journal of Photoenergy, 1-7. https://doi.org/10.1155/2019/
6960191
[12]. Nema, P., Nema, R. K., & Rangnekar, S. (2010). PVsolar/
wind hybrid energy system for GSM/CDMA type
mobile telephony base station. International Journal of
Energy and Environment, 1(2), 359-366.
[13]. Pepermans, G., Driesen, J., Haeseldonckx, D.,
Belmans, R., & D'haeseleer, W. (2005). Distributed
generation: Definition, benefits and issues. Energy Policy,
33(6), 787-798. https://doi.org/10.1016/j.enpol.2003.10.004
[14]. Sen, R., & Bhattacharyya, S. C. (2014). Off-grid
electricity generation with renewable energy technologies
in India: An application of HOMER. Renewable Energy, 62,
388-398. https://doi.org/10.1016/j.renene.2013.07.028