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Automatic generation control in power plant using PID, PSS and Fuzzy-PID controller

机译:使用PID,PSS和Fuzzy-PID控制器的电厂自动发电控制

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This paper is proposed to show the interaction between the LFC and the AVR loops in the Power Plant. The combinational effects of these two LFC and AVR loops are studied by extending the linear zed AGC system. A complete system model for LFC with Speed Governor, Turbine, Integral controller and Power System and AVR with Excitation System and PID controllers are described. LFC is for regulation of system frequency. It is also called a power factor control loop and influence the active power balances in the power system network. The LFC is achieved by the speed-governor mechanism. The basic principle of the speed-governor mechanism is to adjust itself as per the load variations. The voltage of the generator is proportional to the speed and excitation of the generator. If the speed is kept at constant, then the excitation system is used to control the voltage. The voltage control is also called as an excitation control system. This combined model is tested with conventional PID Controller, PID with Power System Stabilizer and Fuzzy-PID with Power System Stabilizer. The results are shown by using simulation; this will be reachable in dynamic and steady state responses.
机译:提出本文是为了说明电厂中LFC和AVR回路之间的相互作用。通过扩展线性zed AGC系统,研究了这两个LFC和AVR环路的组合效果。描述了带有调速器,涡轮机,集成控制器和电力系统的LFC的完整系统模型,以及带有励磁系统和PID控制器的AVR的完整系统模型。 LFC用于调节系统频率。它也称为功率因数控制环路,它会影响电力系统网络中的有功功率平衡。 LFC通过速度调节器机制实现。调速机构的基本原理是根据负载变化进行自我调节。发电机的电压与发电机的速度和励磁成正比。如果速度保持恒定,则使用励磁系统控制电压。电压控制也称为励磁控制系统。使用常规PID控制器,带电力系统稳定器的PID和带电力系统稳定器的Fuzzy-PID对组合模型进行了测试。通过仿真显示结果。在动态和稳态响应中这是可以达到的。

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