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Ravichandran, Shyam
- Evaluating the Performance of Hybrid Ultra Capacitor (HUC) in a 1.5kw Solar Powered Microgrid with Hybrid Energy Storage System (HESS)
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Authors
Affiliations
1 Central Power Research Institute, Bengaluru – 560080, Karnataka, IN
1 Central Power Research Institute, Bengaluru – 560080, Karnataka, IN
Source
Power Research, Vol 16, No 2 (2020), Pagination: 193-200Abstract
Batteries used in conventional solar micro grid applications for energy storage, experiences several micro cycles and deep discharges which have an adverse impact on the overall life of the battery. To handle such fluctuations, the batteries are being oversized. One solution to the above problem is usage of Hybrid Energy Storage System (HESS) comprising of Hybrid Ultra Capacitors (HUC) and Batteries wherein the HUCs’ will smoothen the battery current during surges, in turn aids in enhancing the battery’s life1–3. This paper discusses the performance analysis of 1.5kW micro grid based on HESS by evaluating the electrical parameters across different scenarios.Keywords
Electric Vehicles, Hybrid Ultra Capacitors, Power Batteries, Solar Micro-Grid.References
- Deshpande R. Ultracapacitors: Future of energy storage, New Delhi: McGraw Hill Education (India) Private Limited; 2014.
- Miller JM. Ultracapacitor Applications, London: The Institution of Engineering and Technology; 2011. https://doi.org/10.1049/PBPO059E
- Conte M, Genovese A, Ortenzi F, Vellucci F. Hybrid battery- supercapacitor storage for an electric forklift a life-cycle cost assessment. Journal of Applied Electrochemistry. 2014; 44:523–32. https://doi.org/10.1007/s10800-014-0669-z
- Glavin ME, Hurley WG. Ultra capacitor battery hybrid for solar energy storage. UPEC; 2007. p. 791–5. https://doi.org/10.1109/UPEC.2007.4469050
- Hassanalieragh M, Soyata T, Nadeau A, Sharma G. Solarsuper capacitor harvesting system design for energy-aware applications. 27th IEEE International System-on-Chip Conference (SOCC), Las Vegas, NV, USA; 2014. https://doi. org/10.1109/SOCC.2014.6948941
- A brief history of super capacitors. Batteries & Energy Storage Technology; 2007 Autumn. p. 61–78.
- Electrical India. Capacitors beyond fundamentals [Internet]. [cited 2020 Aug 10]. Available from: https://www.electricalindia.in/capacitors-beyond-fundamentals/.
- Gnanomat. Innovative energy storage systems [Internet]. [cited 2020 Aug 10]. Available from: https://gnanomat.com/2019/05/16/innovative-energy-storage-systems/.
- Jayalakshmi KBM. Simple capacitors to super capacitors- An overview. International Journal of Electrochemical Science. 2008; 3:1196–217.
- Banerjee A. Design, development and applications R&D on substrate-integrated lead-carbon hybrid ultracapacitors. Indian Institute of Science (IISc), Bangalore; 2014.
- Battery University[Internet]. [cited 2021 Apr21]. Available from: https://batteryuniversity.com/learn/article/how_to_ measure_state_of_charge.
- Performance Analysis of Hybrid Ultra Capacitor (HUC) based Solar Microgrid for Household Applications
Abstract Views :81 |
PDF Views:0
Authors
Affiliations
1 Capacitor Division, Central Power Research Institute, Bengaluru – 560012, Karnataka, IN
1 Capacitor Division, Central Power Research Institute, Bengaluru – 560012, Karnataka, IN
Source
Power Research, Vol 17, No 1 (2021), Pagination: 59-66Abstract
Localised power generation and consumption using a solar-based hybrid micro-grid system are gaining predominance in remote locations where conventional transmission of power from far off substations work out to be uneconomical. Since the peak irradiance from the sun lasts for 4-6 hours per day, a hybrid micro-grid with batteries for storing energy is usually adopted. This study considered a typical household load of 3kW comprising resistive and inductive loads. Sudden surges will be caused by switching ON/OFF of any load, and in particular, switching ON of inductive loads (such as fans, washing machines and mixer) will further contribute to transients. These sudden changes in loads harm the cyclic life of the battery. A viable solution to overcome the above problem is to use Hybrid Ultra Capacitors (HUC) as an assistant to the Batteries. These HUC banks can take over the surge loads, whereas Batteries can focus on delivering steady power. Such a combination has the potential to enhance the battery’s life. This study discusses the performance of Hybrid Ultra Capacitor (HUC) based Hybrid Energy Storage System (HESS) in a 3kW Solar MicrogriAU: Please prod system by evaluating the electrical parameters involving experiments with different loads.Keywords
Electric Vehicles, Hybrid Ultra Capacitors, Power Batteries, Solar Micro-grid.References
- Banerjee A. Design, development and applications R&D on substrate-integrated lead-carbon hybrid ultracapacitors.
- Indian Institute of Science (IISc), Bangalore; 2014.
- Deshpande R. Ultracapacitors: Future of energy storage, New Delhi: McGraw Hill Education (India) Private
- Limited; 2014.
- Miller JM. Ultracapacitor applications, London: The Institution of Engineering and Technology; 2011. https://doi.org/10.1049/PBPO059E
- Conte M, Genovese A, Ortenzi F, Vellucci F. Hybrid batterysupercapacitor storage for an electric forklift a life-cycle cost assessment. Journal of Applied Electrochemistry. 2004; 44:523–32. https://doi.org/10.1007/s10800-014-0669-z 5. A Brief History of Supercapacitors. Batteries and Energy Storage Technology; 2007. p. 61–78.
- Electrical India. Capacitors beyond fundamentals [Internet]. [cited 2020 Aug 10]. Available from: https://www.electricalindia.in/capacitors-beyond-fundamentals/
- Gnanomat. Innovative energy storage systems [Internet].
- [cited 2020 Aug 10]. Available from: https://gnanomat.com/2019/05/16/innovative-energy-storage-systems/.
- Jayalakshmi KBM. Simple capacitors to supercapacitors - An overview. International Journal of Electrochemical Science. 2008; 3:1196–217.
- Shanker TB, Vaidhyanathan V, Ravichandran S, Mohamed AS. Evaluating the performance of Hybrid Ultra Capacitor (HUC) in a 1.5kw solar powered microgrid with Hybrid Energy Storage System (HESS). Power Research. 2020; 16(2):193–200. https://doi.org/10.33686/pwj.v16i2.160224