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Load Frequency Control of Two-Area Interconnected Power System Using Fuzzy Logic-Based PI Control Method

机译:基于模糊逻辑的PI控制方法负载双面积互连电力系统的负载频率控制

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摘要

Load frequency control (LFC) plays an important role to maintain the system frequency and tie-line flow at their respective scheduled values during normal period in the power system. Generally, the conventional control strategies, such as PI and PID control algorithms are applied for LFC in practical power systems. However, good control performance could not be guaranteed by using such traditional control strategies when external disturbances occur. In order to overcome the drawbacks, fuzzy logic-based proportional integral (FLPI) controller is proposed for an efficient LFC performance in this paper. Considering the reason that various disturbances and uncertainty consisting of load variation, modeling error, and structure change exist in power system, fuzzy logic modeling method is used for improving the robust performance. And a PI control strategy based on Ziegler-Nichols is used to eliminate or reduce the frequency deviation, tie-line deviation, and area control error. Finally, simulation results demonstrate that the proposed method can stabilize the two-area power system; the performance indices including settling time and overshoots of the tie-line power and frequency deviations can also be improved through the proposed method.
机译:负载频率控制(LFC)在功率系统中的正常时段期间起到重要的作用,以维持在它们各自的调度值处的系统频率和扎线流。通常,在实际电力系统中应用于LFC的传统控制策略,例如PI和PID控制算法。但是,在发生外部干扰时,无法使用这种传统的控制策略无法保证良好的控制性能。为了克服缺点,提出了模糊逻辑的比例积分(FLPI)控制器,用于本文的有效的LFC性能。考虑到电力系统中存在各种干扰和由负载变化,建模误差和结构变化组成的不确定性,模糊逻辑建模方法用于提高鲁棒性能。基于Ziegler-Nichols的PI控制策略用于消除或降低频率偏差,扎线偏差和区域控制误差。最后,仿真结果表明,该方法可以稳定两区域电力系统;通过所提出的方法还可以改善包括扎带时间和频率偏差的稳定时间和过冲的性能指标。

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