References
[1]. Akbari, M., Golkar, M. A., & Tafreshi, S. M. M. (2011,
December). Voltage control of a hybrid ac/dc microgrid
in stand-alone operation mode. In ISGT2011-India (pp.
363-367). IEEE. https://doi.org/10.1109/iset-india.2011.61
4 5341
[2]. Armstrong, S., Glavin, M. E., & Hurley, W. G. (2008,
June). Comparison of battery charging algorithms for
stand alone photovoltaic systems. In 2008, IEEE Power
Electronics Specialists Conference (pp. 1469-1475). IEEE.
https://doi.org/10.1109/PESC.2008.4592143
[3]. Baoquan, L., Fang, Z., & Xianwen, B. (2012, May).
Control method of the transient compensation process of
a hybrid energy storage system based on battery and
ultra-capacitor in micro-grid. In 2012, IEEE International
Symposium on Industrial Electronics (pp. 1325-1329).
IEEE. https://doi.org/10.1109/ISIE.2012.6237282
[4]. Baran, M. E., & Mahajan, N. R. (2003). DC distribution
for industrial systems: opportunities and challenges. IEEE
Transactions on Industry Applications, 39(6), 1596-1601.
https://doi.org/10.1109/icps.2002.1002229
[5]. Dougal, R., Liu, S., & White, R. (2002). Power and life
extension of batter y-ultracapacitor hybrids. IEEE
Transactions on Components and Packaging Technologies,
25(1), 120-131. https://doi.org/10.1109/6144.991184
[6]. Haque, M. E., Negnevitsky, M., & Muttaqi, K. M. (2008,
October). A novel control strategy for a variable speed
wind turbine with a permanent magnet synchronous
generator. In 2008, IEEE Industry Applications Society
Annual Meeting (pp. 1-8). IEEE. https://doi.org/10.1109/0
8IAS.2008.374
[7]. Hu, X., Tseng, K. J., & Srinivasan, M. (2011, May).
Optimization of battery energy storage system with superth
capacitor for renewable energy applications. In 8
International Conference on Power Electronics-ECCE
Asia (pp. 1552-1557). IEEE. https://doi.org/10.1109/icpe.
2011.5944515
[8]. Huang, B. J., Hsu, P. C., Wu, M. S., & Ho, P. Y. (2010).
System dynamic model and charging control of leadacid
battery for stand-alone solar PV system. Solar Energy,
84(5), 822-830. https://doi.org/10.1016/j.solener.2010.02.007
[9]. Kahwa, A., Obara, H., & Fujimoto, Y. (2018, March).
Design of 5-level reduced switches count Η-bridge
multilevel inverter. In 2018, IEEE 15th International
Workshop on Advanced Motion Control (AMC) (pp. 41-
46). IEEE.
[10]. Kumar, R., & Singh, S. K. (2018). Solar photovoltaic
modeling and simulation: As a renewable energy
solution. Energy Reports, 4, 701-712. https://doi.org/10.1
016/j.egyr.2018.09.008
[11]. Liu, X., Wang, P., Loh, P. C., Gao, F., & Choo, F. H.
(2010, September). Control of hybrid battery/ultracapacitor
energy storage for stand-alone photovoltaic
system. In 2010, IEEE Energy Conversion Congress and
Exposition (pp. 336-341). IEEE. https://doi.org/10.1109/ec
ce.2010.5618014
[12]. Mellit, A., Benghanem, M., & Kalogirou, S. A. (2007).
Modeling and simulation of a stand-alone photovoltaic
system using an adaptive artificial neural network:
Proposition for a new sizing procedure. Renewable
Energy, 32(2), 285-313. https://doi.org/10.1016/j.renene.
2006.01.002
[13]. Othman, H. A., & Amarin, R. A. (2011, December).
The economic opportunity of distributed smart solar
systems. In 2011, IEEE PES Conference on Innovative
Smart Grid Technologies-Middle East (pp. 1-6). IEEE.
https://doi.org/10.1109/isgt-mideast.2011.6220801
[14]. Ozkucuk, S., & Kulahli, M. (2020). Solar photovoltaic
source based magnetic launcher simulation design with
thermal requirements consideration. Renewable Energy,
145, 1004-1013. https://doi.org/10.1016/j.renene.2019.
06.073
[15]. Pareek, A., Singh, P., & Rao, P. N. (2018, March).
Analysis and comparison of charging time between
battery and supercapacitor for 300 W stand-alone PV
system. In 2018, International Conference on Current
Trends towards Converging Technologies (ICCTCT) (pp. 1-
6). IEEE. https://doi.org/10.1109/icctct.2018.8551164
[16]. Photovoltaic Technology and Applications. (2001). Renewable Energy, 23(3-4). https://doi.org/10.1016/s096
0-1481(01)00066-0
[17]. Rade, M. R. (2018, August). Design and
development of hybrid energy storage system for electric
vehicle. In 2018, International Conference on Information,
Communication, Engineering and Technology (ICICET)
(pp. 1-5). IEEE. https://doi.org/10.1109/icicet.2018.8533757
[18]. Ramadan, R., Yehia, D. M., & Rashad, E. M. (2015,
November). Impact of hybrid energy storage system on
solar power generation integrated in microgrids. In 2015,
4th International Conference on Electric Power and
Energy Conversion Systems (EPECS) (pp. 1-5). IEEE. https://
doi.org/10.1109/epecs.2015.7368529
[19]. Shen, J., & Khaligh, A. (2015). A supervisory energy
management control strategy in a battery/ultracapacitor
hybrid energy storage system. IEEE Transactions on
Transportation Electrification, 1(3), 223-231. https://doi.
org/10.1109/TTE.2015.2464690
[20]. Shim, J. W., Cho, Y., Kim, S. J., Min, S. W., & Hur, K.
(2013). Synergistic control of SMES and battery energy
storage for enabling dispatch ability of renewable energy
sources. IEEE Transactions on Applied Superconductivity,
23(3). https://doi.org/10.1109/TASC.2013.2241385
[21]. Singh, P., Sujil, A., & Kumar, P. (2016, March). Analysis
and comparison of batteries charging time for
standalone photovoltaic system. In 2016, IEEE 6th
International Conference on Power Systems (ICPS) (pp. 1-
4). IEEE. https://doi.org/10.1109/ICPES.2016.7584123
[22]. Wang, P., Liu, X., Jin, C., Loh, P., & Choo, F. (2011,
July). A hybrid AC/DC micro-grid architecture, operation
and control. In 2011, IEEE Power and Energy Society
General Meeting (pp. 1-8). IEEE.
[23]. Zhang, X., Hao, M., Liu, F., Yu, C., & Zhao, W. (2012,
January). Analysis and control of energy storage systems
in microgrid. In 2012, Second International Conference
on Intelligent System Design and Engineering Application
(pp. 1375-1379). IEEE. https://doi.org/10.1109/ISdea.20
12.529