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Integrated tuning of modified PID load frequency controller for two area interconnected system including renewable energy sources

机译:包含可再生能源的两区域互联系统的改进PID负载频率控制器的集成调整

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Load frequency controller is networked in noisy environment which is produced by frequent switching of load. Hence, this paper aims to develop a controller which is less sensitive to noise. Present paper introduces a modified PID load frequency controller for the two area interconnected system comprising of non-reheat turbine based thermal plant and wind power plant with and without frequency control. The proposed controller is established by cascading of derivative filter with PID controller. Ziegler-Nicholas tuning method is employed for tuning of PID controller. The novelty of this work is based on the fact that modified PID controller for DFIG based wind turbine with inertial control has not been reported in literature so far. Time domain analysis has been performed in MATLAB/SIMULINK ver. 2013a for testing of applicability of proposed controller. The simulation results of the modified PID controller have been compared with traditional PID controller. A substantial improvement in performance of the power system has been perceived in case of modified PID controller. Simulation results of the modified PID controller illustrate its feasibility for load frequency control.
机译:负载频率控制器在嘈杂的环境中联网,这是由频繁切换负载产生的。因此,本文旨在开发一种对噪声不太敏感的控制器。本文介绍了一种针对两区域互联系统的改进型PID负载频率控制器,该系统包括基于非再热轮机的火力发电厂和具有和不具有频率控制的风力发电厂。所提出的控制器是通过将微分滤波器与PID控制器级联而建立的。 PID控制器的调节采用Ziegler-Nicholas调节方法。这项工作的新颖性是基于这样的事实:迄今为止,尚未在文献中报道过基于惯性控制的基于DFIG的风力发电机的改进型PID控制器。时域分析已在MATLAB / SIMULINK ver.2中进行。 2013a,用于测试拟议控制器的适用性。将该改进型PID控制器的仿真结果与传统PID控制器进行了比较。在使用改进的PID控制器的情况下,可以感觉到电力系统性能的显着改善。改进的PID控制器的仿真结果说明了其在负载频率控制中的可行性。

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