Integrated modeling of the peer-to-peer markets in the energy industry

IF 1.6 3区 工程技术 Q4 ENGINEERING, INDUSTRIAL
G. Alvarez
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引用次数: 4

Abstract

Over time, the number of smart grids installed worldwide is gradually increasing. However, the major portion of the required electricity is still being produced by traditional large-scale and centralized power systems. The main requirement, then, is to study and develop mathematical methods that attend the integration between the two systems previously announced. In this paper, a novel model that addresses this issue is presented. The model minimizes the total operating cost of the large-scale system considering the participation of the smart grid as a dynamic entity, entailing a close relationship between both systems. This approach distinguishes the novel proposal from others that solve similar situations by taking into account the two systems in isolation. Besides, the models that represent the most common organizational structures of the smart grids are also presented in this paper. They are needed to develop the integrated model. Many similar problems in the literature are solved by implementing decomposition techniques, which might obtain a local optimum different from the global one. By contrast, problems with this proposal are solved by using mixed-integer linear programming models that ensure the reaching of a global optimum. The real test case is the integrated Argentine large-scale system and the Armstrong smart grid. Results indicate that the novel model can reach solutions that are 5% lower in comparison with the traditional techniques of considering in isolation. Efficient CPU times enable the possibility of promptly obtaining solutions if there is any change in the parameters. In addition, other benefits, apart from the economical reductions, are also achieved. Operating information closer to the reality of both systems is obtained because it considers the effects of the smart grid in large-scale system solving.
能源行业点对点市场的集成建模
随着时间的推移,全球安装的智能电网数量正在逐渐增加。然而,所需电力的主要部分仍然是由传统的大规模和集中的电力系统生产的。因此,主要的要求是研究和开发数学方法,以参与先前宣布的两个系统之间的集成。本文提出了一种新的模型来解决这一问题。该模型考虑到智能电网作为一个动态实体的参与,使大系统的总运行成本最小化,这使得两个系统之间的关系密切。这种方法区别于其他通过孤立地考虑两个系统来解决类似情况的新建议。此外,本文还提出了代表智能电网最常见组织结构的模型。开发集成模型需要它们。文献中许多类似的问题都是通过实现分解技术来解决的,这可能会得到不同于全局最优的局部最优。相比之下,该方案采用混合整数线性规划模型来解决问题,以确保达到全局最优。真正的测试案例是阿根廷大型系统和阿姆斯特朗智能电网的集成。结果表明,与传统的孤立考虑方法相比,新模型可以得到低5%的解。高效的CPU时间使得在参数发生任何变化时能够迅速获得解决方案。此外,除了经济上的减少之外,还实现了其他好处。考虑了智能电网在大系统求解中的作用,得到了更接近实际的两种系统的运行信息。
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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来源期刊
CiteScore
5.70
自引率
9.10%
发文量
35
审稿时长
20 weeks
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