Projekter pr. år
Abstract
To ensure high performance, reliability, and economic
profitability of a PV-battery system, the sizing of key
components, such as PV panels and battery, are important
during the design stage. Sizing procedures with low complexity
and minimum input data requirement have become a more
appealing solution than complex optimization methods. However,
accuracy of such simplified sizing principles, e.g., compared
to comprehensive models, should be investigated for different
installation site conditions. Hence, in this paper, a robustness
evaluation of currently available simplified sizing principle is
performed where various mission profiles are considered. The
analysis results have shown that using a simplified sizing principle
results in less than 5% error in economic profitability compared
to ones from the comprehensive model which includes advanced
performance, lifetime and economic aspects.
profitability of a PV-battery system, the sizing of key
components, such as PV panels and battery, are important
during the design stage. Sizing procedures with low complexity
and minimum input data requirement have become a more
appealing solution than complex optimization methods. However,
accuracy of such simplified sizing principles, e.g., compared
to comprehensive models, should be investigated for different
installation site conditions. Hence, in this paper, a robustness
evaluation of currently available simplified sizing principle is
performed where various mission profiles are considered. The
analysis results have shown that using a simplified sizing principle
results in less than 5% error in economic profitability compared
to ones from the comprehensive model which includes advanced
performance, lifetime and economic aspects.
Originalsprog | Engelsk |
---|---|
Titel | 2020 IEEE Energy Conversion Congress and Exposition (ECCE) |
Antal sider | 8 |
Forlag | IEEE Press |
Publikationsdato | okt. 2020 |
Sider | 545-552 |
Artikelnummer | 9235720 |
ISBN (Trykt) | 978-1-7281-5827-3 |
ISBN (Elektronisk) | 978-1-7281-5826-6 |
DOI | |
Status | Udgivet - okt. 2020 |
Begivenhed | 2020 IEEE Energy Conversion Congress and Exposition (ECCE 2020) - Detroit, USA Varighed: 11 okt. 2020 → 15 okt. 2020 https://www.ieee-ecce.org/2020/ |
Konference
Konference | 2020 IEEE Energy Conversion Congress and Exposition (ECCE 2020) |
---|---|
Land/Område | USA |
By | Detroit |
Periode | 11/10/2020 → 15/10/2020 |
Internetadresse |
Navn | IEEE Energy Conversion Congress and Exposition |
---|---|
ISSN | 2329-3721 |
Fingeraftryk
Dyk ned i forskningsemnerne om 'Robustness Evaluation of PV-Battery Sizing Principle Under Mission Profile Variations'. Sammen danner de et unikt fingeraftryk.Projekter
- 2 Afsluttet
-
REPEPS: REliable Power Electronic based Power System
Blaabjerg, F., Iannuzzo, F., Davari, P., Wang, H., Wang, X. & Yang, Y.
01/08/2017 → 01/12/2023
Projekter: Projekt › Forskning
-
APETT: Advanced Power Electronic Technology and Tools
Blaabjerg, F., Munk-Nielsen, S., Iannuzzo, F., Wang, H., Uhrenfeldt, C., Beczkowski, S. M., Zhou, D., Choi, U., Jørgensen, A. B., Vernica, I., Sangwongwanich, A., Christensen, N., Ceccarelli, L., Nielsen, C. K., Bahman, A. S., Pedersen, K., Pedersen, K. B. & Kristensen, P. K.
01/01/2017 → 30/06/2021
Projekter: Projekt › Forskning