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A Lyapunov Optimization-Based Energy Management Strategy for Energy Hub With Energy Router

机译:基于Lyapunov优化的能量枢纽与能量路由器的能源管理策略

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The energy crisis and increasing concerns about the environment in modern society have fostered the development of the integrated energy system (IES) in smart grid. The energy hub (EH) is a minimum construction of the IES. The chief purpose of this paper is to propose a Lyapunov optimization-based energy management strategy for the energy hub with an energy router. First, this paper describes a configuration of the EH with an energy router and sets the basic operating principles of the energy router. Second, a method is proposed to analyze the energy balance equations of the EH. Furthermore, the problem of energy management is formulated considering the constraints of energy balance equations, energy storage, flexible loads, and other constraints of operation. Finally, energy storage and flexible electric loads are modeled as stochastic processes, and three virtual queues are constructed to relax these constraints. The Lyapunov drift-plus-penalty function is applied to formulate a relaxed form of the energy management problem. Case studies of a single EH and two-connected EHs are performed to test the effectiveness of the proposed strategy, and the results are compared with a greedy algorithm.
机译:能源危机和对现代社会环境的越来越担心促进了智能电网综合能源系统(IES)的发展。能量枢纽(EH)是IES的最低结构。本文的主要目的是提出基于Lyapunov优化的能量管理策略,为能量路由器提供能量枢纽。首先,本文介绍了EH的配置,具有能量路由器,并设置能量路由器的基本操作原理。其次,提出了一种方法来分析EH的能量平衡方程。此外,考虑能量平衡方程,能量存储,柔性负载和操作限制的限制,配制了能量管理问题。最后,能量存储和柔性电负载被建模为随机过程,构建了三个虚拟队列以放宽这些约束。 Lyapunov Drift-Plus-Poldy功能适用于制定轻松形式的能源管理问题。对单一EH和双连接的EH的案例研究进行测试以测试所提出的策略的有效性,并将结果与​​贪婪算法进行比较。

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