Power control of hybrid grid-connected renewable energy system using machine learning
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Publisher
Elsevier BV
Reference17 articles.
1. Hybrid renewable energy system design: a machine learning approach for optimal sizing with net-metering costs;Abdullah;Sustainability,2023
2. Towards critical performance considerations for using office buildings as a power flexibility resource-a survey;Aduda;Energy Build.,2018
3. Coordinated intelligent frequency control incorporating battery energy storage system, minimum variable contribution of demand response, and variable load damping coefficient in isolated power systems;Al-Hinai;Energy Rep.,2021
4. Hybrid MDA-ANFIS approach based control of grid connected solar system with nine level inverter wind energy conversion;Apparao;Int. Rev. Appl. Sci. Eng.,2023
5. Robust MPC with data-driven demand forecasting for frequency regulation with heat pumps;Bünning;Control Eng. Pract.,2022
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