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IMC based Controller Design for Automatic Generation Control of Multi Area Power System via Simplified Decoupling

机译:基于IMC的控制器设计,用于通过简化去耦的多区域电力系统自动生成控制

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摘要

This paper deals with design of integer and non-integer IMC based controllers for automatic generation control of two area power system using the simplified decoupling technique. A two area non-reheated interconnected thermal power system is considered for decentralised controller design. The coupling among areas are the main hurdle encountered in the design of controller. Hence, the idea of simplified decoupling technique is introduced to decouple the two area power system into two equivalent independent SISO systems. Integer and non-integer internal model control (IMC), are independently designed for each area based on decoupled systems. The performance of two area power system equipped with proposed controller is analysed through MATLAB. Simulation results show that proposed controller maintains robust performance and can minimize the load fluctuations. Finally, the method is extended to three area power system.
机译:本文涉及使用简化解耦技术的两个区域电力系统的自动生成控制设计的整数和非整数基于IMC控制器的设计。 用于分散的控制器设计,考虑了两个区域的非重新加热互连的热电力系统。 区域之间的耦合是控制器设计中遇到的主要障碍。 因此,引入了简化解耦技术的思想,以将两个区域电力系统分离成两个等同的独立SISO系统。 整数和非整数内部模型控制(IMC),独立为基于解耦系统的每个区域设计。 通过MATLAB分析配备有提出控制器的两个区域电力系统的性能。 仿真结果表明,建议控制器保持稳健性能,可以最大限度地减少负载波动。 最后,该方法扩展到三个区域电力系统。

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