微调三区电力系统的负载频率稳定性:通过混合银河引力优化定制 PID 控制器

Amita Shukla, Amit Prakash, Sen D. Ganesh, B. P. Singh
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引用次数: 0

摘要

三区电力系统(3APS)频率控制的混合银河引力优化(HGGO)方法是本研究的主要课题。所建议的方法具有易于实施、计算效率高和收敛性稳定等优点。目标是利用 HGGO 算法对比例积分微分 (PID) 控制器进行微调,从而创建稳定、可靠的系统。在 MATLAB-SIMLINK 环境中对三区域负载频率控制 (LFC) 系统进行了全面仿真。通过优化 PID 控制设置。前面的课题转向引力搜索算法(GSA),该算法以其优化能力著称,但受到局部最优问题的阻碍。混合银河引力优化所采用的基于聚类的学习方法解决了这一问题,该方法将程序划分为若干聚类,并使用了多种技术。为了验证所提出的 HGGO 控制器,对电力系统施加了负荷干扰,并获得了几种基于 HGGO 的负荷配置的模拟结果
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FINE-TUNING LOAD FREQUENCY STABILITY IN THREE-AREA POWER SYSTEM: CUSTOMIZING PID CONTROLLER VIA HYBRID GALACTIC GRAVITATIONAL OPTIMIZATION
The Hybrid Galactic Gravitational Optimization (HGGO) method of Three-area power system (3APS) control of frequency is the main subject of this work. The suggested method has advantages of easy implementation, computing efficiency and consistent convergence. The goal is to use the HGGO algorithm to fine-tune the Proportional-integral-derivative (PID) controller and create stable, trustworthy system. A thorough simulation of the three-area Load Frequency Control (LFC) system is carried out in MATLAB-SIMLINK environment. By optimizing PID control settings. The previous subject moves to the gravitational search algorithm (GSA), which is known for its optimization ability but is hampered by problems with local optima. This is addressed by the clustering-based learning used by the Hybrid Galactic Gravitational Optimization, which divides the programmed into clusters and uses a variety of techniques. To validate the proposed HGGO controller, load disturbances are applied to the power system and simulated outcomes for several HGGO-based load configurations are obtained
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1.00
自引率
0.00%
发文量
55
审稿时长
12 weeks
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