用于配电网中自主电池储能系统的介质电压调节和电荷状态共识的分布式双层控制算法

IF 8.9 2区 工程技术 Q1 ENERGY & FUELS
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引用次数: 0

摘要

基于可再生能源(RES)的分布式发电(DG)越来越多地集成到传统配电系统中,因此有必要采用智能电网策略。这些策略在很大程度上依赖于储能驱动,以管理可再生能源固有的可变性并确保自主运行。本文介绍了一种用于管理配电系统的分层数字控制策略,利用电池储能系统 (BESS) 调节电压幅值并增强整体行为,从而实现高效的能源管理。在以分钟级执行率运行的初级控制层面,一个积分电压调节环路决定 BESS 的功率注入或消耗,并根据每个设备的充电状态和运行模式对信号进行模糊调节。拉普拉斯和随机切换二级共识控制策略以较低的速率运行,确保各个装置之间的协调行动。在理想化条件下,利用 Lyapunov 理论对这些策略的收敛性进行了分析验证。在 24 小时内进行的大量动态模拟证明了所提出的策略在改善电能质量和协调电压调节方面的有效性,特别是在以协调的方式提高功率因数和降低电压与功率变量的标准偏差方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A distributed double-layer control algorithm for medium voltage regulation and state of charge consensus of autonomous battery energy storage systems in distribution networks
The increasing integration of Distributed Generation (DG) based on Renewable Energy Sources (RES) in traditional distribution systems necessitates the adoption of smart grid strategies. These strategies rely heavily on energy storage actuation to manage the inherent variability of RES and ensure autonomous operation. This article presents a hierarchical digital control strategy for managing distribution power systems, utilizing Battery Energy Storage Systems (BESS) to regulate voltage amplitude and enhance overall behavior for efficient energy management. At the primary control level, operating at a minute-scale actuation rate, an integral voltage regulation loop determines the BESS power injection or consumption, refined by a fuzzy conditioning of signals that accounts for the state of charge and operational modes of each device. Laplacian and random switching secondary consensus control strategies, operating at a slower rate, ensure coordinated action among individual units. The convergence of these strategies is analytically validated using Lyapunov’s theory under idealized conditions. Extensive dynamic simulations over a 24-hour period demonstrate the proposed strategy’s effectiveness in improving power quality and coordinating voltage regulation, particularly in terms of enhancing the power factor and reducing the standard deviation of voltage and power variables over time in a coordinated manner.
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来源期刊
Journal of energy storage
Journal of energy storage Energy-Renewable Energy, Sustainability and the Environment
CiteScore
11.80
自引率
24.50%
发文量
2262
审稿时长
69 days
期刊介绍: Journal of energy storage focusses on all aspects of energy storage, in particular systems integration, electric grid integration, modelling and analysis, novel energy storage technologies, sizing and management strategies, business models for operation of storage systems and energy storage developments worldwide.
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