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首页> 外文期刊>International Journal of Innovative Research in Science, Engineering and Technology >Load Frequency Control of Multi-Area Power Systems Using PI, PID, and Fuzzy Logic Controlling Techniques
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Load Frequency Control of Multi-Area Power Systems Using PI, PID, and Fuzzy Logic Controlling Techniques

机译:使用PI,PID和模糊逻辑控制技术的多区域电力系统负载频率控制

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Automatic Generation Control (AGC) or Load Frequency Control is a very important issue in power system operation and control for supplying sufficient and reliable electric power with good quality. AGC is a feedback control system adjusting a generator output power to remain defined frequency. One of the objectives of AGC is to maintain the system frequency at nominal value In the steady state operation of power system .An extended power system can be divided into a number of load frequency control areas interconnected by means of tie lines. Without loss of generality one can consider a three- area case connected by tie line. Here we are considering system, which is integration of two thermal power systems with hydro power system. That is area-1 and area-2 consists of thermal reheat power plant whereas area-3 consists of hydro power plant. The performance analysis of load frequency control for multi area inter connected system will be done in MATLAB/SIMULINK environment. As integration of multi area effects performance of system study of different characteristics using controllers like conventional PI ,PID, artificial intelligence FUZZY LOGIC controlling techniques are necessary in order to determine the effective gains of controller in efficient manner. And this knowledge about dynamic response characteristics will give us idea of controlling techniques that we need to implement for obtaining required frequency response at tie line stations.
机译:自动发电控制(AGC)或负载频率控制是电力系统运行和控制中非常重要的问题,用于以足够的质量提供足够可靠的电力。 AGC是一种反馈控制系统,可调节发电机输出功率以保持定义的频率。 AGC的目标之一是在电力系统的稳态运行中将系统频率维持在标称值。扩展的电力系统可以划分为多个通过联络线互连的负载频率控制区域。在不失一般性的前提下,可以考虑通过连接线连接的三区域情况。在这里,我们考虑的是将两个火电系统与水力发电系统集成在一起的系统。即区域1和区域2由热力再热电厂组成,而区域3由水力发电厂组成。多区域互连系统的负载频率控制性能分析将在MATLAB / SIMULINK环境中进行。由于使用常规PI,PID等控制器对不同特性的系统研究的多区域效果性能进行了集成,因此人工智能FUZZY LOGIC控制技术对于有效确定控制器的有效增益十分必要。而有关动态响应特性的知识将为我们提供控制技术的思想,我们需要实现这些技术才能在联络线站获得所需的频率响应。

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