Efficiency and Performance Analysis of Battery-Ultracapacitor based Semi-active Hybrid Energy Systems for Electric Vehicles

2018 ◽  
Vol 16 (10) ◽  
pp. 2581-2590
Author(s):  
M. Asensio ◽  
G. Magallan ◽  
G. Amaya ◽  
C. De Angelo
Energy ◽  
2016 ◽  
Vol 107 ◽  
pp. 234-258 ◽  
Author(s):  
Humberto E. Garcia ◽  
Jun Chen ◽  
Jong S. Kim ◽  
Richard B. Vilim ◽  
William R. Binder ◽  
...  

2019 ◽  
Vol 8 (3) ◽  
pp. 5971-5977 ◽  

The energy demand within the world has improved for a few reasons because of technical advancements, increasing enterprises, and increasing commercial energy consumption. Sufficient energy models will support the accurate use of renewable resources like solar, wind, biomass, biogas, and the fuel cell is a portion of the advantages used. Hybrid energy systems of these advantages will contribute viably to sustainable development and electrification in rural areas that do not access power grids. This study reviews the performance analysis of hybrid system along with conventional resources for sustainable development in remote areas. This paper also reviews the recent trends in energy usage from available renewable energy sources in addition to examine an expansive review of the performance analysis of different hybrid energy technologies in rural areas. It is also discussed the relative investigation of hybrid energy systems along with conventional energy sources particularly suited to the small and isolated areas supported by the literature. In continuation of this, the paper also discusses the future energy sources.


2021 ◽  
Vol 243 ◽  
pp. 114357
Author(s):  
Achikkulath Prasanthi ◽  
Hussain Shareef ◽  
Madathodika Asna ◽  
Ahmad Asrul Ibrahim ◽  
Rachid Errouissi

2020 ◽  
Vol 13 (1) ◽  
pp. 93
Author(s):  
Wesam H. Beitelmal ◽  
Paul C. Okonkwo ◽  
Fadhil Al Housni ◽  
Wael Alruqi ◽  
Omar Alruwaythi

Diesel generators are being used as a source of electricity in different parts of the world. Because of the significant expense in diesels cost and the requirement for a greener domain, such electric generating systems appear not to be efficient and environmentally friendly and should be tended to. This paper explores the attainability of utilizing a sustainable power source based on a cross-breed electric system in the cement factory in Salalah, Oman. The HOMER software that breaks down the system setup was utilized to examine the application and functional limitations of each hybridized plan. The result showed that a renewable-energy (RE)-based system has a lower cost of energy (COE) and net present cost (NPC) compared to diesel generator-based hybrid electric and standalone systems. Although the two pure renewable hybrid energy systems considered in this study displayed evidence of no emissions, lower NPC and COE values are observed in the photovoltaic/battery (PV/B) hybrid energy system compared with photovoltaic/wind turbine/battery (PV/WT/B). The PV/WT/B and PV/B systems have higher electricity production and low NPC and COE values. Moreover, the PV/B has the highest return on investment (ROI) and internal rate of return (IRR), making the system the most economically viable and adjudged to be a better candidate for rural community electrification demands.


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