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A Hybrid Quantum-Classical Machine Learning Approach to Offshore Wind Farm Power Forecasting
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B. HANGÜN Et Al. , "A Hybrid Quantum-Classical Machine Learning Approach to Offshore Wind Farm Power Forecasting," 2024 13th International Conference on Renewable Energy Research and Applications (ICRERA) , Nagasaki, Japan, pp.1105-1110, 2024

HANGÜN, B. Et Al. 2024. A Hybrid Quantum-Classical Machine Learning Approach to Offshore Wind Farm Power Forecasting. 2024 13th International Conference on Renewable Energy Research and Applications (ICRERA) , (Nagasaki, Japan), 1105-1110.

HANGÜN, B., Akpınar, E., ODUNCUOĞLU, M., ALTUN, O., & EYECİOĞLU, Ö., (2024). A Hybrid Quantum-Classical Machine Learning Approach to Offshore Wind Farm Power Forecasting . 2024 13th International Conference on Renewable Energy Research and Applications (ICRERA) (pp.1105-1110). Nagasaki, Japan

HANGÜN, BATUHAN Et Al. "A Hybrid Quantum-Classical Machine Learning Approach to Offshore Wind Farm Power Forecasting," 2024 13th International Conference on Renewable Energy Research and Applications (ICRERA), Nagasaki, Japan, 2024

HANGÜN, BATUHAN Et Al. "A Hybrid Quantum-Classical Machine Learning Approach to Offshore Wind Farm Power Forecasting." 2024 13th International Conference on Renewable Energy Research and Applications (ICRERA) , Nagasaki, Japan, pp.1105-1110, 2024

HANGÜN, B. Et Al. (2024) . "A Hybrid Quantum-Classical Machine Learning Approach to Offshore Wind Farm Power Forecasting." 2024 13th International Conference on Renewable Energy Research and Applications (ICRERA) , Nagasaki, Japan, pp.1105-1110.

@conferencepaper{conferencepaper, author={BATUHAN HANGÜN Et Al. }, title={A Hybrid Quantum-Classical Machine Learning Approach to Offshore Wind Farm Power Forecasting}, congress name={2024 13th International Conference on Renewable Energy Research and Applications (ICRERA)}, city={Nagasaki}, country={Japan}, year={2024}, pages={1105-1110} }