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Cooperative Optimization of Networked Microgrids for Supporting Grid Flexibility Services Using Model Predictive Control

机译:使用模型预测控制支持网格灵活性服务的联网微电网的合作优化

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摘要

The transition towards fully renewable energy-based power systems will require to increase the number of reserves at the System Operators' (SOs) disposal to provide flexibility on the energy management process. The microgrid's ability of integrating distributed energy resources, loads and energy storage systems (ESS) appears as a powerful flexibility tool. Nevertheless, the associated control problem of microgrids increases with the number of connected devices. A structuration of the distribution grids in networks of microgrids is proposed, focusing on their ability to provide flexibility services. The complexity of the associated optimization algorithm is faced using Distributed Model Predictive Control (MPC). The algorithm is divided in two steps. The first one is applied to the cooperative participation of microgrids in the day-ahead market. The second step covers the interaction with the SO offering flexibility services in exchange for a financial benefit. The financial benefit is optimally shared between the networked microgrids to satisfy the power profile requested by the SO at the lowest cost. As the proposed control algorithm presents both continuous and binary variables, its associated optimization problem is formulated using the Mixed Logic Dynamic (MLD) framework, which results in a Mixed Integer Quadratic Programming problem (MIQP).
机译:对全新的基于能源的电力系统的过渡将需要增加系统运营商(SOS)处理的储备次数,以提供对能源管理过程的灵活性。 MicroGrid集成了分布式能源,负载和能量存储系统(ESS)的能力显示为强大的灵活性工具。然而,微电网的相关控制问题随着连接设备的数量而增加。提出了微电网网络中的分布网格的结构,专注于它们提供灵活性服务的能力。使用分布式模型预测控制(MPC)面临相关优化算法的复杂性。该算法分为两个步骤。第一个适用于微电网在日前市场的合作参与。第二步涵盖了所提供的灵活性服务的互动,以换取经济利益。在网络微电网之间最佳地共享经济效益,以满足所需的功率轮廓以最低的成本。随着所提出的控制算法呈现连续和二进制变量,其相关的优化问题是使用混合逻辑动态(MLD)框架制定的,这导致混合整数二次编程问题(MIQP)。

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