Teaching a robot the optimal operation of an electrical energy system with high integration of renewable energies

 

Autor(es):
Chaer, Ruben ; Camacho, Vanina ; Caporale, Ximena ; Palacio, Juan Felipe ; Soubes, Pablo ; Vallejo, Damián ; Ramírez Paulino, Ignacio
Tipo:
Preprint
Versión:
Enviado
Financiadores:
Proyecto ANII-FSE_1_2017_1_144926 - "Planificación de inversiones con energías variables, restricciones de red y gestión de demanda" (2018-2020) Fondo Sectorial de Energía ANII.
Resumen:

This work shows different strategies for a Robot to learn the optimal operation of a diverse electrical energy generation system including resources such as thermal, hydroelectric, wind, solar generators and energy accumulators. The large number of variables in these systems results in a huge state space. Thus, computing an explicit representation of the cost function over said space, which is at the heart of most current optimization methods, becomes infeasible. The strategies presented here aim at solving the aforementioned problem by learning an implicit representation of the cost function over the state space. Another key idea is to keep the complexity of the representation at a minimum, in order to obtain a solution which captures the most relevant characteristics of the cost-to-go of the system, with the least possible parameters.

Año:
2021
Idioma:
Inglés
Temas:
Wind energy generation
Heart
Wind
Renewable energy sources
Heuristic algorithms
Optimization methods
Production
Energy
Optimization
Dispatch
Approximate Dynamic Programming
Optimal Policy Learning
Institución:
Universidad de la República
Repositorio:
COLIBRI
Enlace(s):
https://ieeexplore.ieee.org/document/9647311
https://hdl.handle.net/20.500.12008/36683
Nivel de acceso:
Acceso abierto