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Conventional controller based AGC of multi-area hydro-thermal power systems

机译:基于常规控制器的多区域水火发电系统AGC

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The present study proposed the Automatic Generation Control (AGC) of multi-area hydrothermal interconnected power system with conventional controller. Multi-area power system consists of four power generating units (Two Hydro and two thermal). The thermal power generating is equipped with appropriate single stage reheater unit and the hydro power generating unit is equipped with a suitable mechanical governor. All four areas are interconnected through tie-line. The conventional integral controller is employed into power system to improve the dynamic performance. The gain value of the integral controller is tuned using trial and error method with three different objective functions (Integral Time Square Error (ITSE), Integral Time Absolute Error (ITAE)) and one percent Step Load Perturbation (1%SLP) in area 1. It is observed from the response that the ITAE objective function tuned integral controller provided better result compared to ISE tuned controller. The time domain specification for the simulation is utilized to study the performance of the system with different objective functions and conventional controller.
机译:本研究提出了采用常规控制器的多区域水热互联电力系统的自动发电控制(AGC)。多区域电力系统由四个发电单元(两个水力发电和两个火力发电)组成。火力发电机配备有适当的单级再热器单元,水力发电机组配有适当的机械调速器。这四个区域通过联络线相互连接。传统的积分控制器被用于电力系统中以改善动态性能。使用试错法对区域1中的三个不同的目标函数(积分时间平方误差(ITSE),积分时间绝对误差(ITAE))和百分之一的阶跃负载扰动(1%SLP)进行调整,以调整积分控制器的增益值。从响应中可以看出,与ISE调谐控制器相比,ITAE目标函数调谐积分控制器提供了更好的结果。仿真的时域规范用于研究具有不同目标函数和常规控制器的系统的性能。

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