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Load frequency control of two area interconnected power system (Diesel Generator and Solar PV) with PI and FGSPI controller

机译:具有PI和FGSPI控制器的两个区域互联电源系统(柴油发电机和太阳能光伏电阻的负载频率控制

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In this paper,we aim to design and control the power frequency which is produced by a hybrid generator network(Diesel Generator and Solar PV Panels) while there are sudden changes in the connected load to the network. We call this type of control as the “Load Frequency Control” and in abbreviation LFC. We will consider the changes as a step to the solar power network. At first, generator network and PV are simulated by transfer functions and then they will be connected to each other (Tie-Line). Then the produced disturbance will be controlled through two different types of PI controller and FGSPI controller (Fuzzy Gain Scheduled P-I) and the corresponding responses in each networks will be assessed. Also the connection location of networks (Tie-Line) will be checked and the operations of both controllers are comprised. It is obvious from the response analysis of suggested FGSPI controller that it works more properly and accurately than the PI controller.
机译:在本文中,我们的目标是设计和控制由混合发生器网络(柴油发电机和太阳能PV面板)产生的功率频率,而连接负载突然变化到网络。我们将这种类型的控制称为“负载频率控制”和缩写LFC。我们将考虑变更作为太阳能电网的一步。首先,通过传递函数模拟发电机网络和PV,然后它们将彼此连接(TIE-LINE)。然后将通过两种不同类型的PI控制器和FGSPI控制器(模糊增益调度P-I)来控制产生的干扰,并且将评估每个网络中的相应响应。此外,将检查网络(TIE-LINE)的连接位置,并构成两个控制器的操作。从建议的FGSPI控制器的响应分析显而易见的是,它比PI控制器更适当,准确地工作。

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