The Significance of the Digital Frequency Relays in Grid Synchronization Maintenance

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Abstract

Modeling tools play a crucial role in both educational and industrial settings, enabling engineers to simulate power systems under various operating conditions, including normal and faulty scenarios. This research focuses on the design of a relay system capable of addressing both over and under frequency conditions. Digital relays exhibit distinct advantages over traditional electromechanical relays, notably in terms of accuracy and response speed. The significance of frequency control cannot be overstated, as significant fluctuations can potentially lead to complete power system blackouts. Historical incidents have demonstrated the severe consequences of frequency instability, often stemming from supply-demand imbalances and unforeseen contingencies. With the rise of distributed generation and the inherent challenges of islanding in modern power systems, the attention of both industrialists and researchers has once again turned to frequency relaying solutions. This study aims to evaluate the performance of the proposed digital frequency relay under diverse system dynamics using simulation tools such as MATLAB/Simulink and microcontroller-based implementations. By conducting rigorous testing and analysis, this research endeavors to contribute to the enhancement of grid stability and the prevention of power system disruptions caused by frequency deviations.
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数字频率继电器在电网同步维护中的意义
建模工具在教育和工业环境中都发挥着至关重要的作用,使工程师能够模拟各种运行条件下的电力系统,包括正常和故障情况。本研究的重点是设计一种能够同时处理过频和欠频条件的继电器系统。与传统机电继电器相比,数字继电器在精度和响应速度方面具有明显优势。频率控制的重要性怎么强调都不为过,因为大幅波动有可能导致电力系统全面停电。历史事故已经证明了频率不稳定的严重后果,这往往源于供需失衡和不可预见的突发事件。随着分布式发电的兴起以及现代电力系统孤岛化的内在挑战,工业家和研究人员的注意力再次转向频率继电器解决方案。本研究旨在利用 MATLAB/Simulink 等仿真工具和基于微控制器的实现方法,评估所提出的数字频率继电器在不同系统动态下的性能。通过进行严格的测试和分析,本研究致力于为增强电网稳定性和防止频率偏差引起的电力系统中断做出贡献。
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