Demand Response of Integrated Zero-Carbon Power Plant: Model and Method

Energies Pub Date : 2024-07-12 DOI:10.3390/en17143431
Rong Xia, Jun Dai, Xiangjie Cheng, Jiaqing Fan, Jing Ye, Qiangang Jia, Sijie Chen, Qiang Zhang
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Abstract

An integrated zero-carbon power plant aggregates uncontrollable green energy, adjustable load, and storage energy resources into an entity in a grid-friendly manner. Integrated zero-carbon power plants have a strong demand response potential that needs further study. However, existing studies ignore the green value of renewable energy in power plants when participating in demand response programs. This paper proposed a mathematical model to optimize the operation of an integrated zero-carbon power plant considering the green value. A demand response mechanism is proposed for the independent system operator and the integrated zero-carbon power plants. The Stackelberg gaming process among these entities and an algorithm based on dichotomy are studied to find the demand response equilibrium. Case studies verify that the mechanism activates the potential of the integrated zero-carbon power plant to realize the load reduction target.
综合零碳发电厂的需求响应:模型与方法
一体化零碳电厂以电网友好的方式将不可控的绿色能源、可调负荷和储能资源整合为一个实体。一体化零碳电厂具有强大的需求响应潜力,需要进一步研究。然而,现有研究在参与需求响应计划时忽略了电厂中可再生能源的绿色价值。本文提出了一个数学模型,以优化考虑绿色价值的一体化零碳电厂的运行。针对独立系统运营商和一体化零碳电厂提出了需求响应机制。研究了这些实体之间的 Stackelberg 博弈过程和基于二分法的算法,以找到需求响应平衡。案例研究验证了该机制能激活综合零碳发电厂的潜力,从而实现负荷削减目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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