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Optimal Control of Power Flows and Energy Local Storages in a Network of Microgrids Modeled as a System of Systems

机译:建模为系统系统的微电网网络中的潮流和能量本地存储的最优控制

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摘要

In this paper, a centralized control model for optimal management and operation of a smart network of microgrids (SNMs) is designed. The proposed control strategy considers grid interconnections for additional power exchanges. This paper is based on an original Linear Quadratic Gaussian (LQG) problem definition for the optimal control of power flows in a SNMs. The control strategy incorporates storage devices, various distributed energy resources, and loads. The objective function aims to minimize the power exchanges among microgrids (MGs), and to make each local energy storage system in a MG works around a proper optimal value. The proposed model is evaluated through a case study in the Savona district, Italy, consisting of four MGs that cooperate together under an SNMs connected to a main grid. The case study shows that the proposed approach can effectively cope with the aim to decrease the intermittencies effects of renewable energy sources, and to manage real-time burst in the residential local demands.
机译:本文设计了一种集中控制模型,用于对微电网(SNM)智能网络进行最佳管理和运行。所提出的控制策略考虑了电网互连以进行额外的功率交换。本文基于原始的线性二次高斯(LQG)问题定义,用于SNM中的潮流优化控制。控制策略包括存储设备,各种分布式能源和负载。目标函数旨在最大程度地减少微电网(MG)之间的功率交换,并使MG中的每个本地储能系统在适当的最佳值附近工作。通过在意大利的萨沃纳地区进行的案例研究对提出的模型进行了评估,该案例由四个MG组成,这些MG在连接到主电网的SNM下共同协作。案例研究表明,所提出的方法可以有效地应对旨在减少可再生能源的间歇性影响并管理住宅本地需求中的实时突发事件的目标。

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