
Peak demand dynamics of low-voltage consumers under aggregation and its impact on upstream PV injection
- Author
- Robbert Claeys (UGent) , Hakim Azaioud (UGent) and Jan Desmet (UGent)
- Organization
- Abstract
- Renewable Energy Communities will allow consumers on the low-voltage grid to actively participate in the energy market. This work explores the dynamics of the daily peak demands of these communities under aggregation, as multiple countries are introducing capacity-based grid tariffs for residential consumers. Both the aggregation level and yearly consumption of the households comprising it are shown to have a significant impact on the timing of the daily peak demands. While considering both the size of the PV installation and its orientation as variables, it is subsequently shown that this effect of the aggregation level is extended to the PV self-consumption and self-sufficiency indices.
- Keywords
- Aggregation, Peak demand, PV, Energy community, Self-consumption
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Citation
Please use this url to cite or link to this publication: http://hdl.handle.net/1854/LU-8724980
- MLA
- Claeys, Robbert, et al. “Peak Demand Dynamics of Low-Voltage Consumers under Aggregation and Its Impact on Upstream PV Injection.” CIRED 2021 - The 26th International Conference and Exhibition on Electricity Distribution, IET, 2021, pp. 2153–57, doi:10.1049/icp.2021.1718.
- APA
- Claeys, R., Azaioud, H., & Desmet, J. (2021). Peak demand dynamics of low-voltage consumers under aggregation and its impact on upstream PV injection. CIRED 2021 - The 26th International Conference and Exhibition on Electricity Distribution, 2153–2157. https://doi.org/10.1049/icp.2021.1718
- Chicago author-date
- Claeys, Robbert, Hakim Azaioud, and Jan Desmet. 2021. “Peak Demand Dynamics of Low-Voltage Consumers under Aggregation and Its Impact on Upstream PV Injection.” In CIRED 2021 - The 26th International Conference and Exhibition on Electricity Distribution, 2153–57. IET. https://doi.org/10.1049/icp.2021.1718.
- Chicago author-date (all authors)
- Claeys, Robbert, Hakim Azaioud, and Jan Desmet. 2021. “Peak Demand Dynamics of Low-Voltage Consumers under Aggregation and Its Impact on Upstream PV Injection.” In CIRED 2021 - The 26th International Conference and Exhibition on Electricity Distribution, 2153–2157. IET. doi:10.1049/icp.2021.1718.
- Vancouver
- 1.Claeys R, Azaioud H, Desmet J. Peak demand dynamics of low-voltage consumers under aggregation and its impact on upstream PV injection. In: CIRED 2021 - The 26th International Conference and Exhibition on Electricity Distribution. IET; 2021. p. 2153–7.
- IEEE
- [1]R. Claeys, H. Azaioud, and J. Desmet, “Peak demand dynamics of low-voltage consumers under aggregation and its impact on upstream PV injection,” in CIRED 2021 - The 26th International Conference and Exhibition on Electricity Distribution, Virtual, 2021, pp. 2153–2157.
@inproceedings{8724980, abstract = {{Renewable Energy Communities will allow consumers on the low-voltage grid to actively participate in the energy market. This work explores the dynamics of the daily peak demands of these communities under aggregation, as multiple countries are introducing capacity-based grid tariffs for residential consumers. Both the aggregation level and yearly consumption of the households comprising it are shown to have a significant impact on the timing of the daily peak demands. While considering both the size of the PV installation and its orientation as variables, it is subsequently shown that this effect of the aggregation level is extended to the PV self-consumption and self-sufficiency indices.}}, articleno = {{0812}}, author = {{Claeys, Robbert and Azaioud, Hakim and Desmet, Jan}}, booktitle = {{CIRED 2021 - The 26th International Conference and Exhibition on Electricity Distribution}}, isbn = {{9781839535918}}, keywords = {{Aggregation,Peak demand,PV,Energy community,Self-consumption}}, language = {{eng}}, location = {{Virtual}}, pages = {{0812:2153--0812:2157}}, publisher = {{IET}}, title = {{Peak demand dynamics of low-voltage consumers under aggregation and its impact on upstream PV injection}}, url = {{http://doi.org/10.1049/icp.2021.1718}}, year = {{2021}}, }
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