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An LMI based PID controller for load frequency control in power system

机译:基于LMI的PID控制器,用于电力系统中的负载频率控制

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摘要

In this article a methodology for designing a minimum gain PID controller for load frequency control in power system is proposed. The resulting PID controller reduces the required control effort while guaranteeing that pre-defined design specifications like settling time and damping ratio are achieved in the response. For this purpose a subset of the complex plane corresponding to the design specifications is mapped onto a stability region in the coefficient space of the characteristic polynomial. This stability region in the polynomial coefficient space defines an LMI which is used as a constraint in minimizing the PID gains of the controller. The effectiveness of the proposed design methodology is demonstrated through case studies with steam and hydraulic units.
机译:在本文中,提出了一种用于设计用于电力系统中的负载频率控制的最小增益PID控制器的方法。由此产生的PID控制器减少了所需的控制工作,同时保证预定定义的设计规范,如响应所达到稳定时间和阻尼比。为此目的,对应于设计规范的复杂平面的子集被映射到特征多项式的系数空间中的稳定区域上。多项式系数空间中的该稳定区域定义了LMI,其用作最小化控制器的PID增益的约束。通过蒸汽和液压装置的案例研究证明了所提出的设计方法的有效性。

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