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Design of Decentralized Biased Controllers for Load-Frequency Control of Interconnected Power Systems

机译:互联电力系统负荷频率控制的分散偏置控制器设计

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摘要

This article proposes a design of biased controllers for the decentralized load-frequency control of interconnected power systems. Conventional load-frequency controllers are usually implemented in a proportional plus integral form using area control error (ACE) in order to obtain satisfactory results. In this article, the optimum proportional plus integral biased controllers are designed using integral squared error (ISE) criterion as well as maximum stability margin (MSM) criterion to obtain better transient and steady-state responses. These controllers are designed and implemented in a two-area interconnected thermal power system. The system was simulated and the frequency and tie-line power deviations resulting for a step load disturbance are presented. The results reveal that the biased controllers provide better transient as well as steady-state response and increased stability margin when compared with the responses obtained using conventional controllers. It is also found that the biased controllers are less sensitive to the changes in system parameters.
机译:本文提出了一种用于互连电力系统分散负载频率控制的偏置控制器设计。为了获得令人满意的结果,常规的负载频率控制器通常使用面积控制误差(ACE)以比例加积分的形式实现。在本文中,使用积分平方误差(ISE)准则以及最大稳定裕度(MSM)准则设计最佳比例加积分偏置控制器,以获得更好的瞬态和稳态响应。这些控制器是在两区域互连的热电系统中设计和实现的。对系统进行了仿真,并给出了导致阶跃负载扰动的频率和联络线功率偏差。结果表明,与使用常规控制器获得的响应相比,偏置控制器提供了更好的瞬态以及稳态响应,并增加了稳定性裕量。还发现偏置控制器对系统参数的变化不太敏感。

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