发电技术

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孤岛微电网能量管理系统研究综述与展望

雷基林1,余林兴1,别玉1,2,徐稚博1,肖雨寒1

  

  1. 1.昆明理工大学 云南省内燃机重点实验室、云南省 昆明市 650500;2.昆明学院机电工程学院、云南省 昆明市 650214
  • 基金资助:

    云南省省市一体化专项(202202AC080004);云南省重大科技专项计划(202402AE090009)

Review and Prospect of Energy Management Systems for Islanded Microgrids 

LI Jilin1, YU Linxing1, BIE Yu1,2, XU Zhibo1, XIAO Yuhan   

  1. 1. Yunnan Key Laboratory of Internal Combustion Engines,Kunming University of Science and Technology, Kunming 650500, Yunnan Province, China; 2. School of Mechanical and Electrical Engineering, Kunming University, Kunming 650214, Yunnan Province, China
  • Supported by:

    Project Supported Specialized Provincial and Municipal Integration in Yunnan Province (202202AC080004);Major Science and Technology Special Program in Yunnan Provincial (202402AE090009)

摘要:

【目的】在能源资源紧缺与环保需求加剧的背景下,分布式供能技术尤其是可再生能源技术因能效高、经济性好、安装灵活而备受关注。对于公共供电网无法覆盖的高原、边防、孤岛等偏远地区,孤岛微电网已然成为解决用电难的关键技术。然而,如何深入优化能量管理效能,仍是当前面临的一大挑战。本文围绕孤岛微电网中电能的经济性和稳定性两大核心目标展开综述。【方法】首先简述了国内外孤岛微电网的发展现状及研究重点。然后探讨了孤岛微电网的基本功能和管理对象;此外,还介绍了微电网能量管理的技术路线和三种控制策略。【结果】最后结合现有技术缺陷和新型技术的发展对孤岛微电网能量管理系统的研究方向进行了展望。【结论】该综述可为未来孤岛微电网与新型技术的深度融合提供参考和启示。

关键词: 分布式供能, 孤岛运行, 微电网, 能量管理, 储能, 优化算法, 控制策略, 人工智能

Abstract:  [Objectives] Against the backdrop of energy resource scarcity and increasing environmental demands, distributed energy supply technologies, especially renewable energy technologies, have attracted much attention due to their high energy efficiency, economic viability, and flexible installation. For remote areas such as plateaus, border defenses, and islands that are not covered by public power grids, isolated microgrids have become a key technology to solve the problem of electricity access. However, how to deeply optimize energy management efficiency remains a major challenge at present. This paper focuses on the two core objectives of economic and stable electricity in isolated microgrids and conducts a review. [Methods] The paper first briefly describes the development status and research priorities of isolated microgrids at home and abroad. Then it discusses the basic functions and management objects of isolated microgrids; in addition, it introduces the technical routes for microgrid energy management and three control strategies. [Results] Finally, the paper looks forward to the research directions of the energy management system for isolated microgrids in combination with existing technical defects and the development of new technologies. [Conclusions] This review can provide references and insights for the deep integration of future isolated microgrids with new technologies.

Key words: distributed energy supply, islanded operation, microgrid, energy management, energy storage, optimization algorithm, management objects;artificial intelligence