Self-adaptive Controllers for Renewable Energy Communities Based on Transformer Loading Estimation
Paper in proceeding, 2022

In this paper, self-adaptive controllers for renewable energy communities based on data-driven approach are proposed to mitigate the voltage rise and transformer congestion at the community level. In the proposed approach, the transformer loading percentage is estimated by the trained data-driven model, which uses the extreme gradient boosting regression algorithm based on a measurement set acquired from critical coupling points of the communities. To avoid voltage rise issues, the droop control parameters (i.e., voltage threshold for P - V, Q - V curves) are adaptively tuned based on the solar irradiance availability and estimated transformer loading. The proposed approach has been tested in the IEEE European LV distribution network. Results showed that the control approach could effectively reduce 22.2 % of the total overloaded instances, while still keeping voltage magnitude in the operation range. This method can help DSOs manage voltage violation and congestion without further communication.

transformer loading estimation

Droop control

transformer congestion

voltage rise

Author

[Person ae18c088-274f-4c83-9198-e0204120378e not found]

Eindhoven University of Technology

[Person 629c072d-b446-4f85-b131-93088897af82 not found]

Eindhoven University of Technology

[Person 22b299ef-1d9b-4651-a191-11759f197f25 not found]

Eindhoven University of Technology

[Person fcb854a5-3c7e-47d3-b337-09d669da3acc not found]

DNV Netherlands

[Person 8d5fe76d-dbd6-432c-adca-e784680d2a25 not found]

Chalmers, Electrical Engineering, Electric Power Engineering

2022 IEEE International Conference on Environment and Electrical Engineering and 2022 IEEE Industrial and Commercial Power Systems Europe, EEEIC / I and CPS Europe 2022


9781665485371 (ISBN)

2022 IEEE International Conference on Environment and Electrical Engineering and 2022 IEEE Industrial and Commercial Power Systems Europe, EEEIC / I and CPS Europe 2022
Prague, Czech Republic,

Subject Categories (SSIF 2011)

Communication Systems

Control Engineering

Other Electrical Engineering, Electronic Engineering, Information Engineering

DOI

10.1109/EEEIC/ICPSEurope54979.2022.9854677

More information

Latest update

1/3/2024 9