Handling Multiple-Fuel Options in Economic Dispatch of Thermal Power Plants Through a Tight Model Applying Indicator Variables

IF 1.9 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC International Transactions on Electrical Energy Systems Pub Date : 2025-01-28 DOI:10.1155/etep/1572487
Hossein Sharifzadeh
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Abstract

Thermal power plants play a central role in present power systems because of their high efficiency, fast startup capability, and flexibility to integrate the variability of renewable generations. These thermal units can utilize various fuels, including coal, natural gas, and oil, which enhances both the economic performance and security of the overall energy system. Representing the fuel cost functions of these units with multiple fuels (MFs) as binary decisions involves adding binary variables to the economic dispatch (ED) problem. The inclusion of these binary variables and nonlinear cost functions results in a complex NP-hard mixed-integer nonlinear programming (MINLP). This paper provides another perspective on the ED, where indicator variables represent the MF options and determine which cost functions should be set to zero. Based on this perspective, the paper builds a tight model to handle the indicator variables and solve the MINLP ED. Moreover, the paper introduces an iterative solution method with a bound-tightening technique to speed up the solution process. We conducted experimental studies using eight ED case studies with MF options involving up to 1280 generating units. The optimal costs obtained from these case studies demonstrate the effectiveness of the tight model and the iterative solution method for solving the MINLP ED problem. Furthermore, the proposed approach generally outperforms earlier algorithms in terms of solution quality and robustness. Finally, the tight model can speed up the solution process by 18%–45% compared with the standard formulation in the adopted case studies.

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应用指标变量的紧密模型处理火电厂经济调度中的多种燃料选择
火力发电厂以其高效率、快速启动和灵活地整合可再生能源发电机组的可变性,在当前的电力系统中发挥着核心作用。这些热装置可以利用各种燃料,包括煤、天然气和石油,这提高了整个能源系统的经济性能和安全性。将多燃料机组的燃料成本函数表示为二元决策,将二元变量加入到经济调度问题中。包含这些二元变量和非线性代价函数导致了一个复杂的NP-hard混合整数非线性规划(MINLP)。本文提供了ED的另一个视角,其中指标变量代表MF选项并确定哪些成本函数应设置为零。基于这一视角,本文建立了一个紧密模型来处理指标变量,求解MINLP ED,并引入了一种结合边界收紧技术的迭代求解方法,加快了求解过程。我们使用八个ED案例研究进行了实验研究,其中包括多达1280个发电机组的MF选项。通过实例计算得到的最优成本证明了紧模型和迭代求解方法在求解MINLP - ED问题中的有效性。此外,所提出的方法在解质量和鲁棒性方面通常优于先前的算法。最后,与采用的案例研究中的标准公式相比,紧凑模型可使求解过程加快18%-45%。
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来源期刊
International Transactions on Electrical Energy Systems
International Transactions on Electrical Energy Systems ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
6.70
自引率
8.70%
发文量
342
期刊介绍: International Transactions on Electrical Energy Systems publishes original research results on key advances in the generation, transmission, and distribution of electrical energy systems. Of particular interest are submissions concerning the modeling, analysis, optimization and control of advanced electric power systems. Manuscripts on topics of economics, finance, policies, insulation materials, low-voltage power electronics, plasmas, and magnetics will generally not be considered for review.
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