Passive hybridization of photovoltaic cells with a lithium-ion battery cell: An experimental proof of concept
- Passive hybridization refers to a parallel connection of photovoltaic and battery cells on the direct current level without any active controllers or inverters. We present the first study of a lithium-ion battery cell connected in parallel to a string of four or five serially-connected photovoltaic cells. Experimental investigations were performed using a modified commercial photovoltaic modulePassive hybridization refers to a parallel connection of photovoltaic and battery cells on the direct current level without any active controllers or inverters. We present the first study of a lithium-ion battery cell connected in parallel to a string of four or five serially-connected photovoltaic cells. Experimental investigations were performed using a modified commercial photovoltaic module and a lithium titanate battery pouch cell, representing an overall 41.7 W-peak (photovoltaic)/36.8 W-hour (battery) passive hybrid system. Systematic and detailed monitoring of this system over periods of several days with different load scenarios was carried out. A scaled dynamic synthetic load representing a typical profile of a single-family house was successfully supplied with 100 % self-sufficiency over a period of two days. The system shows dynamic, fully passive self-regulation without maximum power point tracking and without battery management system. The feasibility of a photovoltaic/lithium-ion battery passive hybrid system could therefore be demonstrated.…
Document Type: | Article (reviewed) |
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Zitierlink: | https://opus.hs-offenburg.de/4230 | Bibliografische Angaben |
Title (English): | Passive hybridization of photovoltaic cells with a lithium-ion battery cell: An experimental proof of concept |
Author: | Wolfgang G. BesslerStaff MemberORCiDGND, Valentin Leible |
Year of Publication: | 2021 |
Publisher: | Elsevier Limited |
Page Number: | 9 |
First Page: | 1 |
Last Page: | 9 |
Article Number: | 229050 |
Parent Title (English): | Journal of Power Sources |
Volume: | 482 |
ISSN: | 1873-2755 (Online) |
ISSN: | 0378-7753 (Print) |
DOI: | https://doi.org/10.1016/j.jpowsour.2020.229050 |
Language: | English | Inhaltliche Informationen |
Institutes: | Forschung / INES - Institut für nachhaltige Energiesysteme |
Fakultät Maschinenbau und Verfahrenstechnik (M+V) | |
Collections of the Offenburg University: | Bibliografie | Formale Angaben |
Open Access: | Open Access |
Licence (German): | ![]() |