革新微电网的保护动态:本地验证环境和通过多代理系统实现的新型全局管理控制

IF 4 3区 计算机科学 Q1 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE Computers & Electrical Engineering Pub Date : 2024-10-12 DOI:10.1016/j.compeleceng.2024.109748
Andrés M. Díaz Caicedo , Édinson Franco Mejia , Eduardo Gómez Luna
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引用次数: 0

摘要

随着配电系统中可再生能源的快速扩张,动态变化带来了新的运行和保护挑战。为解决这些问题,我们开发了一种基于代理结构的创新分层保护策略。这种方法整合了一个双层系统,管理数字结构比较和模块化代理融合。在上层,在保持保护协调的同时做出关键的运行决策,而下层则负责事件分析和中继更新。该系统的一个关键优势在于,它能够在拓扑结构调整和控制操作方案期间自主维持保护协调。故障后受控谐波插入与控制适应的整合确保了稳定性。验证代理通过 ID 对网络进行划分,从而实现精确通信,并确保辅助保护在不同区域有效运行,不受主代理性能故障的影响。瓦莱大学微电网的模拟研究验证了这一策略的有效性。
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Revolutionizing protection dynamics in microgrids: Local validation environment and a novel global management control through multi-agent systems
Amid rapid renewable sources expansion in distribution systems, novel operational and protection challenges emerge due to dynamic variations. To address these issues, an innovative hierarchical protection strategy based on an agent-based structure has been developed. This approach integrates a dual-tier system managing digital structure comparisons and modular agent fusion. At the upper tier, critical operational decisions are made while preserving protection coordination, while lower tiers oversee event analysis and relay updates. A key advantage of this system is its autonomous ability to sustain protection coordination during adjustments of topology and control operation scenarios. Integration of controlled harmonic insertion post-fault and control adaptations ensures stability. A validation agent divides the network through IDs, enabling precise communication and ensuring the effective functioning of supplementary protection across various zones, independent of performance failures in the master agent. Efficacy of this strategy has been validated through simulation studies within the University of Valle’s microgrid.
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来源期刊
Computers & Electrical Engineering
Computers & Electrical Engineering 工程技术-工程:电子与电气
CiteScore
9.20
自引率
7.00%
发文量
661
审稿时长
47 days
期刊介绍: The impact of computers has nowhere been more revolutionary than in electrical engineering. The design, analysis, and operation of electrical and electronic systems are now dominated by computers, a transformation that has been motivated by the natural ease of interface between computers and electrical systems, and the promise of spectacular improvements in speed and efficiency. Published since 1973, Computers & Electrical Engineering provides rapid publication of topical research into the integration of computer technology and computational techniques with electrical and electronic systems. The journal publishes papers featuring novel implementations of computers and computational techniques in areas like signal and image processing, high-performance computing, parallel processing, and communications. Special attention will be paid to papers describing innovative architectures, algorithms, and software tools.
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