Economic Dispatch of Combined Cycle Power Plant: A Mixed-Integer Programming Approach

Author:

López Hernández Octavio1ORCID,Romero Romero David1ORCID,Badaoui Mohamed1ORCID

Affiliation:

1. Instituto Politécnico Nacional, Escuela Superior de Ingeniería Mecánica y Eléctrica, Av. Luis Enrique Erro s/n, Ciudad de México 07738, Mexico

Abstract

In this article, we present a modification to the Economic Dispatch (ED) model that addresses the non-convex nature of the cost curves associated with a Combined Cycle Power Plant (CCPP). Incorporating a binary variable provides greater precision in solving the combinatorial problem in only one simulation and, most importantly, demonstrates cost minimization among the three different cost curve models for dispatching the CCPP. Our results highlight the importance of considering different demand scenarios based on a reference forecast for one day ahead. Therefore, piecewise modeling is more feasible for solving the non-convex problem, showing greater accuracy regarding the operational state of the CCPP and avoiding the cost overestimation that occurs with traditional models. Moreover, it allows the operators to manage costs better and optimize generation potential, ultimately showing economic benefits for the system operator.

Publisher

MDPI AG

Reference39 articles.

1. Gulen, S.C. (2020). Gas Turbine Combined Cycle Power Plants, CRC Press.

2. Secretaria de Energía (SENER) (2022, May 22). Programa de Desarrollo del Sistema Eléctrico Nacional, Available online: https://www.gob.mx/sener/articulos/programa-para-el-desarrollo-del-sistema-electrico-nacional-304042.

3. CIGRE (2023, November 06). Modeling of Gas Turbines and Steam Turbines in Combined Cycle Power Plants. Task Force C4.02.25. International Conference on Large High Voltage Electric Systems, December 2003. Available online: https://cigreindia.org/CIGRE%20Lib/Tech.%20Brochure/238%20Modeling%20of%20gas%20turbines%20and%20steam%20turbines%20in%20combined%20cycle%20power%20plants.pdf.

4. Wollenberg, B.F., Wood, A.J., and Sheblé, G.B. (2013). Power Generation, Operation and Control, John Wiley & Sons. [3rd ed.].

5. Conejo, A.J., and Baringo, L. (2018). Power System Operations, Springer International Publishing. [1st ed.].

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