A novel decentralized cooperative architecture for energy storage systems providing frequency support services

IF 4.6 2区 计算机科学 Q1 AUTOMATION & CONTROL SYSTEMS Control Engineering Practice Pub Date : 2025-03-01 Epub Date: 2025-01-06 DOI:10.1016/j.conengprac.2024.106221
Virginia Casella , Giulio Ferro , Alessandra Parisio , Michela Robba , Mansueto Rossi
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Abstract

This paper introduces an innovative decentralized architecture designed specifically for the dynamic droop assignment of aggregated and cooperative Energy Storage Systems (ESS) within the context of frequency support services. The primary objective is to address the challenges associated with efficient droop curve sharing among ESS units, considering operational limits and global power/frequency curve satisfaction as coupling constraints. The overall optimization problem has been tackled using an ADMM (Alternating Direction Method of Multipliers)-based decentralized optimization algorithm resulting in a cooperative optimization strategy.
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为储能系统提供频率支持服务的一种新型分散式协同架构
本文介绍了一种创新的分散架构,专门针对频率支持服务背景下聚合和协作储能系统(ESS)的动态下垂分配而设计。主要目标是在考虑运行限制和全局功率/频率曲线满意度作为耦合约束的情况下,解决与ESS单元之间有效下垂曲线共享相关的挑战。采用基于乘数交替方向法(ADMM)的分散优化算法解决了整体优化问题,得到了一种协同优化策略。
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来源期刊
Control Engineering Practice
Control Engineering Practice 工程技术-工程:电子与电气
CiteScore
9.20
自引率
12.20%
发文量
183
审稿时长
44 days
期刊介绍: Control Engineering Practice strives to meet the needs of industrial practitioners and industrially related academics and researchers. It publishes papers which illustrate the direct application of control theory and its supporting tools in all possible areas of automation. As a result, the journal only contains papers which can be considered to have made significant contributions to the application of advanced control techniques. It is normally expected that practical results should be included, but where simulation only studies are available, it is necessary to demonstrate that the simulation model is representative of a genuine application. Strictly theoretical papers will find a more appropriate home in Control Engineering Practice''s sister publication, Automatica. It is also expected that papers are innovative with respect to the state of the art and are sufficiently detailed for a reader to be able to duplicate the main results of the paper (supplementary material, including datasets, tables, code and any relevant interactive material can be made available and downloaded from the website). The benefits of the presented methods must be made very clear and the new techniques must be compared and contrasted with results obtained using existing methods. Moreover, a thorough analysis of failures that may happen in the design process and implementation can also be part of the paper. The scope of Control Engineering Practice matches the activities of IFAC. Papers demonstrating the contribution of automation and control in improving the performance, quality, productivity, sustainability, resource and energy efficiency, and the manageability of systems and processes for the benefit of mankind and are relevant to industrial practitioners are most welcome.
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