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A performance evaluation of fuzzy logic controllers for load frequency control in a single area network

机译:单区域网络中负载频率控制模糊逻辑控制器的性能评估

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Load frequency control is an essential operation performed by power plants to ensure that the system frequency is kept within strict bounds, in the presence of ever-changing loads. In this paper, we are investigating the effect of small step load changes on the frequency of a single area power network. To counteract the resulting frequency deviations, we propose fuzzy logic controllers. Simulations are carried out using Integral, PID (Proportional, Integral and Derivative), as well as fuzzy logic controllers, for small step load changes. The frequency responses are compared, in terms of frequency overshoots, undershoots, rise time, and settling times. A performance index that takes into account the frequency deviation, as well as the control energy of the governor is formulated. Simulations are performed using Matlab Simulink. The PID controller is initially tuned manually, then further tuned using the Matlab Tuner app, from the Control Toolbox. A fuzzy logic controller is designed and implemented. It is observed that that the fuzzy logic controller outperforms the PID, which in turn, is better than the Integral controller. The gains of the PID as well as the fuzzy logic controllers are tuned not only to minimize the frequency deviation, but also to provide an acceptable control energy to the governor, which gives an indication on the opening and the closure of the valves.
机译:负载频率控制是发电厂执行的必要操作,以确保系统频率在不断变化的负载的情况下保持在严格的范围内。在本文中,我们正在研究小型载重变化对单个区域电网频率的影响。为了抵消所产生的频率偏差,我们提出了模糊的逻辑控制器。使用积分,PID(比例,积分和衍生物)以及模糊逻辑控制器进行模拟,有关小的阶跃负载变化。比较频率响应,在频率过冲,下冲,上升时间和稳定时间方面进行比较。制定了考虑频率偏差的性能指数,以及调速器的控制能量。使用MATLAB Simulink执行模拟。 PID控制器最初手动调整,然后使用MATLAB调谐器应用程序进一步调整控制工具箱。设计和实现了模糊逻辑控制器。观察到,模糊逻辑控制器始终比整体控制器更好的PID。 PID以及模糊逻辑控制器的增益不仅要最小化频率偏差,还可以对调速器提供可接受的控制能量,该控制能量在打开和阀门的封盖上给出了一个指示。

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