Artificial Learning Dispatch Planning for Flexible Renewable-Energy Systems
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Robert Pitz-Paal | Tobias Hirsch | Ana Carolina do Amaral Burghi | T. Hirsch | R. Pitz‐Paal | Ana Carolina do Amaral Burghi
[1] Kit Po Wong,et al. Probabilistic Forecasting of Wind Power Generation Using Extreme Learning Machine , 2014, IEEE Transactions on Power Systems.
[2] Louis Wehenkel,et al. Fuzzy Decision Tree Induction for Power System Security Assessment , 1995 .
[3] Prashant J. Shenoy,et al. Predicting solar generation from weather forecasts using machine learning , 2011, 2011 IEEE International Conference on Smart Grid Communications (SmartGridComm).
[4] Louis Wehenkel,et al. A complete fuzzy decision tree technique , 2003, Fuzzy Sets Syst..
[5] Robert Pitz-Paal,et al. Methodology for optimized operation strategies of solar thermal power plants with integrated heat storage , 2011 .
[6] Cezary Z. Janikow,et al. Fuzzy decision trees: issues and methods , 1998, IEEE Trans. Syst. Man Cybern. Part B.
[7] Dennice F. Gayme,et al. Grid-scale energy storage applications in renewable energy integration: A survey , 2014 .
[8] Pierre Pinson,et al. Robust optimisation for self-scheduling and bidding strategies of hybrid CSP–fossil power plants , 2015 .
[9] José Manuel Bravo,et al. A novel two-model based approach for optimal scheduling in CSP plants , 2016 .
[10] Jan Kleissl,et al. Energy dispatch schedule optimization for demand charge reduction using a photovoltaic-battery storage system with solar forecasting , 2014 .
[11] Angela Benedetti,et al. Verification of ECMWF and ECMWF/MACC's global and direct irradiance forecasts with respect to solar electricity production forecasts , 2017 .
[12] A. Conejo,et al. Optimal offering strategy for a concentrating solar power plant , 2012 .
[13] Qiang Wang,et al. Parallel dispatch: a new paradigm of electrical power system dispatch , 2018, IEEE/CAA Journal of Automatica Sinica.
[14] Haimonti Dutta,et al. Machine Learning for the New York City Power Grid , 2012, IEEE Transactions on Pattern Analysis and Machine Intelligence.
[15] Richard Perez,et al. Maximizing the value of customer-sited PV systems using storage and controls , 2007 .
[16] Haji Izham Haji Zainal Abidin,et al. The fuzzy decision tree application to a power system problem , 2004 .
[17] Paras Mandal,et al. Machine Learning Applications for Load, Price and Wind Power Prediction in Power Systems , 2009, 2009 15th International Conference on Intelligent System Applications to Power Systems.
[18] Mohammad Mehdi Ebadzadeh,et al. Fuzzy Decision Tree Learning for Preoperative Classification of Adnexal Masses , 2011, HEALTHINF.
[19] J. Bezdek,et al. FCM: The fuzzy c-means clustering algorithm , 1984 .
[20] Louis Wehenkel. Machine-Learning Approaches to Power-System Security Assessment , 1997, IEEE Expert.
[21] Robert Pitz-Paal,et al. FRED: The Flexible Renewable Energy System Dispatch Optimizer , 2019 .
[22] Chongqing Kang,et al. Optimal Offering Strategy for Concentrating Solar Power Plants in Joint Energy, Reserve and Regulation Markets , 2016, IEEE Transactions on Sustainable Energy.
[23] Ning Zhang,et al. Economic justification of concentrating solar power in high renewable energy penetrated power systems , 2018, Applied Energy.
[24] Azah Mohamed,et al. An improved control method of battery energy storage system for hourly dispatch of photovoltaic power sources , 2013 .
[25] Catalin Pol. Fuzzy decision trees , 2012 .
[26] B. Washom,et al. Storage dispatch optimization for grid-connected combined photovoltaic-battery storage systems , 2012, 2012 IEEE Power and Energy Society General Meeting.
[27] Alexandra M. Newman,et al. Optimized dispatch in a first-principles concentrating solar power production model , 2017 .
[28] Heloisa A. Camargo,et al. A Fuzzy Decision Tree Algorithm Based on C4.5 , 2013, SOCO 2013.