An Integrated Two-Level Demand-Side Management Game Applied to Smart Energy Hubs with Storage

S. Sobhani, Siamak Sheykhha, R. Madlener
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引用次数: 47

Abstract

The integration of energy hubs – as an important component of future energy networks that will employ demand-side management techniques – has a key role in the process of efficiency improvement and reliability enhancement of power grids. In such power grids, energy hub operators need to optimally schedule the consumption, conversion, and storage of available resources based on their own utility functions. In sufficiently large networks, scheduling an individual hub can affect the utility of the other energy hubs. In this paper, the interaction between energy hubs is modeled as a potential game. Each energy hub operator (player) participates in a dynamic energy pricing market and tries to maximize his own payoff with regard to energy consumption satisfaction. We propose a distributed algorithm based on a potential game, which guarantees the existence of a Nash equilibrium. Furthermore, two different types of signaling are developed and simulation results are compared. Simulation results show that with the implementation of either setup the peak-to-average ratio between electricity networks and natural gas networks diminishes. An analysis of the results shows that either setup can have superiority over the other one with regard to generation costs, convergence rate, price level, and the stability perspective. Hence, energy providers and consumers can choose a favorable setup based on their respective needs.
应用于智能储能枢纽的集成两级需求侧管理博弈
能源集线器的整合- -作为未来能源网络的一个重要组成部分,将采用需求侧管理技术- -在提高电网效率和增强可靠性的过程中具有关键作用。在这样的电网中,能源枢纽运营商需要根据自身的效用函数,对可用资源的消耗、转换和存储进行优化调度。在足够大的网络中,调度单个集线器可能会影响其他能源集线器的效用。本文将能源枢纽之间的相互作用建模为一种潜在博弈。每个能源枢纽运营商(参与者)都参与到一个动态的能源定价市场中,并试图根据能源消费满意度最大化自己的收益。提出了一种基于潜在博弈的分布式算法,保证了纳什均衡的存在性。此外,还开发了两种不同类型的信令,并对仿真结果进行了比较。仿真结果表明,在任意一种设置的实施下,电网和天然气网络的峰均比减小。分析结果表明,两种方案在发电成本、收敛速度、电价水平和稳定性方面都有优势。因此,能源供应商和消费者可以根据各自的需求选择一个有利的设置。
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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