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Title: A polyhedral study on fuel-constrained unit commitment
Authors: Pan, K 
Zhao, M
Li, CL 
Qiu, F
Issue Date: Nov-2022
Source: INFORMS journal on computing, Nov.-Dec. 2022, v. 34, no. 6, p. 3309-3324
Abstract: The electricity production of a thermal generator is often constrained by the available fuel supply. These fuel constraints impose a maximum bound on the energy output over multiple time periods. Fuel constraints are increasingly important in electricity markets because of two main reasons. First, as more natural gas-fired generators join the deregulated market, there is often competition for natural gas supply from other sectors (e.g., residential and manufacturing heating). Second, as more environmental and emission regulations are being placed on fossil fuel-fired generators, fuel supply is becoming more limited. However, there are few studies that consider the fuel constraints in the unit commitment problem from the perspective of computational analysis. To address the challenge faced by an independent power producer with a limited fuel supply, we study a fuel-constrained self-scheduling unit commitment (FSUC) problem where the production decisions are coupled across multiple time periods. We provide a complexity analysis of the FSUC problem and conduct a comprehensive polyhedral study by deriving strong valid inequalities. We demonstrate the effectiveness of our proposed inequalities as cutting planes in solving various multistage stochastic FSUC problems.
Keywords: Unit commitment
Fuel supply constraint
Cutting planes
Convex hull
Publisher: INFORMS
Journal: INFORMS journal on computing 
ISSN: 1091-9856
EISSN: 1526-5528
DOI: 10.1287/ijoc.2022.1235
Rights: © 2022 INFORMS
The following publication Kai Pan, Ming Zhao, Chung-Lun Li, Feng Qiu (2022) A Polyhedral Study on Fuel-Constrained Unit Commitment. INFORMS Journal on Computing 34(6):3309-3324 is available at https://dx.doi.org/10.1287/ijoc.2022.1235.
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