埃及多源电力系统最优LFC与数字频率继电器的协调

E. A. Mohamed, G. Magdy, G. Shabib, A. Elbaset, Y. Mitani
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引用次数: 0

摘要

摘要:频率稳定是电力系统运行的一个基本原则。由于各种原因,如减载、负荷恢复、短路等,会引起较大的频率波动,威胁到系统的安全,并可能导致完全停电和系统设备的损坏。因此,本文提出了一种负载频率协调控制(LFC),该控制采用基于优化PID控制器的飞蛾群算法(MSA)和数字过低/过频继电器,考虑到负载减载和恢复的不同情况,用于现实的多源电力系统保护。利用数据转换系统获得的系统频率离散数据,在正常和故障情况下对数字频率继电器进行激励。所提出的数字频率继电器将包括频率上和频率下功能。为了验证所提出的协调方法的有效性,对包含水力、再热和非再热电厂三个动力学子系统的埃及电力系统(EPS)进行了MATLAB/SIMULINK仿真,并考虑了系统非线性的影响。仿真结果表明了所提出的协调方法在维护电力系统频率稳定和安全方面的有效性。此外,下/上数字频率继电器在精度和速度方面具有优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coordination of Optimal LFC and Digital Frequency Relay for Multi-Source Power System in Egypt
Ahstract- The frequency stability is a basic principle in the power system operation. Various reasons such as, load shedding, load restoring, and short circuits cause large frequency fluctuations which threaten the system security and could lead to complete blackouts as well as damages to the system equipment. Hence, this paper proposes a coordination of Load Frequency Control (LFC), which uses an optimized PID controller-based Moth Swarm algorithm (MSA) and digital under/over frequency relay for a realistic multi-source power system protection considering different cases study of load shedding and restoring. The discrete-time data of system frequency which obtained from data conversion system is applied for energizing the digital frequency relay under the normal and faulted conditions. The presented digital frequency relay will include both over and under frequency functions. To prove the efficient effect of the proposed coordination, the Egyptian Power System (EPS), which contains three dynamics subsystems, hydro, reheat, and non-reheat power plants was investigated for the MATLAB/SIMULINK simulation considering the effect of system nonlinearity. The obtained simulation results stated the effectiveness of the proposed coordination to maintain the power system frequency stability and security. Furthermore, the superiority of the under/over digital frequency relay in terms of accuracy and speed has been approved.
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