基于逆变器的微电网电力共享与电压恢复实时分布式优化控制

IF 5.9 2区 工程技术 Q1 ENGINEERING, MULTIDISCIPLINARY Ain Shams Engineering Journal Pub Date : 2025-02-01 Epub Date: 2025-02-03 DOI:10.1016/j.asej.2025.103288
Asad Khan , Muhammad Mansoor Khan , Jiang Chuanwen , Danish Khan
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引用次数: 0

摘要

考虑到基于逆变器的微电网中有功/无功共享和负载馈线电压调节的目标,提出了一种并网(GFM)分布式发电(dg)的分布式控制框架。电池储能系统(BESSs)是可控的GFM电源,而太阳能dg以电网跟随(GFL)模式工作,提供有功电源支持。该方法通过将每个GFM源虚拟地分离为两个解耦源,将全局优化问题简化为多个次优化问题。每个子问题最多包含两个GFM源和具有单个分布式代理的多个GFL源,可以使用本地和邻近节点信息独立解决。该特性极大地减少了计算和通信资源,允许使用低成本数字信号处理器(dsp)的解决方案。此外,所提出的搜索算法的高度分布式特性保证了在多智能体系统(MAS)中快速收敛和实时实现。现有的分离方法如乘法器交替方向法(ADMM)和增广拉格朗日交替方向不精确牛顿法(ALADIN)将网络分离为包含多个GFM源的复杂子网络,与之相比,该方法更适用于基于逆变器的小规模mggs。该框架的有效性通过分析公式、MATLAB模拟和多馈线测试MG系统中的现实实验结果进行了验证,该系统包括许多负载馈线和稀疏可用的GFM dg,这一场景在现有文献中得到的关注有限。
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A real–time distributed optimization control for power sharing and voltage restoration in inverter–based microgrids
This paper presents a distributed control framework for grid–forming (GFM) distributed generations (DGs), considering the objectives of active/reactive power sharing and load feeder voltage regulation in inverter–based microgrids (MGs). Battery energy storage systems (BESSs) are controlled GFM sources while solar–powered DGs are working in grid–following (GFL) mode to provide active power support. The proposed method simplifies the global optimization problem into multiple sub–optimal problems by virtually segregating each GFM source into two decoupled sources. Each sub–problem, containing at most two GFM sources and multiple GFL sources with a single distributed agent, is solvable independently using local and neighboring node information. This feature substantially minimizes computational and communication resources, allowing for solutions using low–cost digital signal processors (DSPs). Moreover, the highly distributed nature of the proposed search algorithm ensures fast solution convergence and real–time implementation in multi–agent systems (MAS). Compared to existing segregation methods like Alternating Direction Method of Multipliers (ADMM) and Augmented Lagrangian Alternating Direction Inexact Newton (ALADIN) schemes, which segregate the network into complex sub–networks involving several GFM sources, the proposed approach is more suitable for small–scale inverter–based MGs. The framework’s effectiveness is validated through analytical formulation, MATLAB simulations, and realistic experimental results within a multi–feeder test MG system, which includes numerous load feeders and sparsely available GFM DGs, a scenario that has received limited attention in existing literature.
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来源期刊
Ain Shams Engineering Journal
Ain Shams Engineering Journal Engineering-General Engineering
CiteScore
10.80
自引率
13.30%
发文量
441
审稿时长
49 weeks
期刊介绍: in Shams Engineering Journal is an international journal devoted to publication of peer reviewed original high-quality research papers and review papers in both traditional topics and those of emerging science and technology. Areas of both theoretical and fundamental interest as well as those concerning industrial applications, emerging instrumental techniques and those which have some practical application to an aspect of human endeavor, such as the preservation of the environment, health, waste disposal are welcome. The overall focus is on original and rigorous scientific research results which have generic significance. Ain Shams Engineering Journal focuses upon aspects of mechanical engineering, electrical engineering, civil engineering, chemical engineering, petroleum engineering, environmental engineering, architectural and urban planning engineering. Papers in which knowledge from other disciplines is integrated with engineering are especially welcome like nanotechnology, material sciences, and computational methods as well as applied basic sciences: engineering mathematics, physics and chemistry.
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