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Load Frequency Control of Interconnected Hydro-Thermal Power System Using Conventional PI and Fuzzy Logic Controller

机译:基于常规PI和模糊逻辑控制器的水电互联系统负荷频率控制

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In industry or any area increasing load is a vast problem for power generation plants due to increase in demand for power. So making balance between generation and demand is the operating principle of load frequency control (LFC). The reliable operation of a large interconnected power system necessarily requires an Automatic Generation Control (AGC). The objective of AGC is to regulate the power output of Generators within a specified area in response to change in the system frequency, tie line power or relation of the two to each other, so as to maintain the scheduled system frequency and power interchange in the other are within the prescribed limits. This paper presents the use of conventional PI controller and artificial intelligence to study the load frequency control of interconnected power system. In the proposed scheme, a control methodology is developed using conventional PI controller and Fuzzy Logic controller (FLC) for interconnected hydro-thermal power system. The control strategies guarantees that the steady state error of frequencies and inadvertent interchange of tie-lines power are maintained in a given tolerance limitations. The performances of the controllers are simulated using MATLAB/SIMULINK package. A comparison of Fuzzy controller and PI controller based approaches shows the superiority of proposed Fuzzy logic controller for step change in loading conditions. The simulation results also tabulated as a comparative performance in view of settling time and peak over shoot.
机译:在工业或任何地区,由于电力需求的增加,负荷增加对于发电厂而言是一个巨大的问题。因此,在发电和需求之间取得平衡是负载频率控制(LFC)的工作原理。大型互联电源系统的可靠运行必定需要自动发电控制(AGC)。 AGC的目标是在指定区域内调节发电机的功率输出,以响应系统频率的变化,线路功率或两者之间的关系,从而在电网中维持预定的系统频率和功率交换。其他均在规定的范围内。本文提出了使用常规PI控制器和人工智能技术来研究互连电力系统的负载频率控制的方法。在提出的方案中,开发了一种使用常规PI控制器和模糊逻辑控制器(FLC)的互连水电热力系统控制方法。该控制策略可确保在给定的公差范围内保持频率的稳态误差和联络线功率的意外交换。使用MATLAB / SIMULINK软件包模拟了控制器的性能。对基于模糊控制器和PI控制器的方法进行比较,显示了所提出的模糊逻辑控制器在负载条件下阶跃变化方面的优越性。考虑到稳定时间和峰高,模拟结果也以表格的形式列为比较性能。

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