A comparison between mixed-integer linear programming and dynamic programming with state prediction as novelty for solving unit commitment
Author:
Publisher
Elsevier BV
Subject
Electrical and Electronic Engineering,Energy Engineering and Power Technology
Reference53 articles.
1. Unit Commitment by Lagrangian Relaxation and Genetic Algorithms;Cheng;IEEE Trans Power Syst,2000
2. Price maker self-scheduling in a pool-based electricity market: a mixed-integer lp approach;de la Torre;IEEE Trans Power Syst,2002
3. Sen S, Kothari DP. An equivalencing technique for solving the large-scale thermal unit commitment problem. Springer, US, Boston, MA, p. 211–25.
4. Palmintier B, Webster M. Impact of unit commitment constraints on generation expansion planning with renewables. In: 2011 IEEE power and energy society general meeting, p. 1–7.
5. Huber M, Hamacher T, Ziems C, Weber H. Combining lp and mip approaches to model the impacts of renewable energy generation on individual thermal power plant operation. In: 2013 IEEE power energy society general meeting, p. 1–5.
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