多个微电网集群的运行架构和能源管理系统综述

iEnergy Pub Date : 2022-09-01 DOI:10.23919/IEN.2022.0035
Yajuan Guan;Baoze Wei;Josep M. Guerrero;Juan C. Vasquez;Yonghao Gui
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引用次数: 9

摘要

新兴的新型能源基础设施,如能源社区、基于智能建筑的微电网、电动汽车的移动储能单元,提高了对更互联和互操作的能源系统的要求。它导致了从简单和孤立的微电网向相对大规模和复杂的互连微电网系统的转变,称为多微电网集群。为了高效、优化、灵活地控制多微电网集群,需要电力电子、控制理论、优化算法、信息通信技术、网络物理和大数据分析等跨学科技术。本文概述了多微电网的相关方面,包括其突出特点、架构、典型应用、现有控制机制以及面临的挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An overview of the operation architectures and energy management system for multiple microgrid clusters
The emerging novel energy infrastructures, such as energy communities, smart building-based microgrids, electric vehicles enabled mobile energy storage units raise the requirements for a more interconnective and interoperable energy system. It leads to a transition from simple and isolated microgrids to relatively large-scale and complex interconnected microgrid systems named multi-microgrid clusters. In order to efficiently, optimally, and flexibly control multi-microgrid clusters, cross-disciplinary technologies such as power electronics, control theory, optimization algorithms, information and communication technologies, cyber-physical, and big-data analysis are needed. This paper introduces an overview of the relevant aspects for multi-microgrids, including the outstanding features, architectures, typical applications, existing control mechanisms, as well as the challenges.
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