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      • Faculty of Engineering
      • Department of Electrical and Electronics Engineering
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      Contextual learning for unit commitment with renewable energy sources

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      Author(s)
      Lee, H. -S.
      Tekin, Cem
      Schaar, M.
      Lee, J. -W.
      Date
      2017
      Source Title
      Proceedings of the IEEE Global Conference on Signal and Information Processing, GlobalSIP 2016
      Publisher
      IEEE
      Pages
      866 - 870
      Language
      English
      Type
      Conference Paper
      Item Usage Stats
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      Abstract
      In this paper, we study a unit commitment (UC) problem minimizing operating costs of the power system with renewable energy sources. We develop a contextual learning algorithm for UC (CLUC) which learns which UC schedule to choose based on the context information such as past load demand and weather condition. CLUC does not require any prior knowledge on the uncertainties such as the load demand and the renewable power outputs, and learns them over time using the context information. We characterize the performance of CLUC analytically, and prove its optimality in terms of the long-term average cost. Through the simulation results, we show the performance of CLUC and the effectiveness of utilizing the context information in the UC problem.
      Keywords
      Learning
      Renewable energy
      Uncertainty
      Unit commitment
      Learning algorithms
      Natural resources
      Operating costs
      Semantics
      Context information
      Contextual learning
      Renewable energy source
      Unit commitment problem
      Renewable energy resources
      Permalink
      http://hdl.handle.net/11693/37631
      Published Version (Please cite this version)
      http://dx.doi.org/10.1109/GlobalSIP.2016.7905966
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      • Department of Electrical and Electronics Engineering 4011
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