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A Simultaneous Perturbation Stochastic Approximation (SPSA)-Based Model Approximation and its Application for Power System Stabilizers

机译:基于同时摄动随机逼近(SPSA)的模型逼近及其在电力系统稳定器中的应用

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摘要

This paper presents an intelligent model; named as free model, approach for a closed-loop system identification using input and output data and its application to design a power system stabilizer (PSS). The free model concept is introduced as an alternative intelligent system technique to design a controller for such dynamic system, which is complex, difficult to know, or unknown, with input and output data only, and it does not require the detail knowledge of mathematical model for the system. In the free model, the data used has incremental forms using backward difference operators. The parameters of the free model can be obtained by simultaneous perturbation stochastic approximation (SPSA) method. A linear transformation is introduced to convert the free model into a linear model so that a conventional linear controller design method can be applied. In this paper, the feasibility of the proposed method is demonstrated in a one-machine infinite bus power system. The linear quadratic regulator (LQR) method is applied to the free model to design a PSS for the system, and compared with the conventional PSS. The proposed SPSA-based LQR controller is robust in different loading conditions and system failures such as the outage of a major transmission line or a three phase to ground fault which causes the change of the system structure.
机译:本文提出了一个智能模型。一种名为自由模型的方法,它使用输入和输出数据进行闭环系统识别,并且可以用于设计电力系统稳定器(PSS)。引入了免费模型概念,将其作为一种可选的智能系统技术来设计这种动态系统的控制器,该控制器复杂,难以理解或未知,仅具有输入和输出数据,并且不需要数学模型的详细知识对于系统。在免费模型中,使用的数据具有使用后向差分运算符的递增形式。自由模型的参数可以通过同时扰动随机逼近(SPSA)方法获得。引入了线性变换以将自由模型转换为线性模型,从而可以应用常规的线性控制器设计方法。在本文中,证明了该方法在单机无限母线电力系统中的可行性。将线性二次调节器(LQR)方法应用于自由模型以设计系统的PSS,并将其与常规PSS进行比较。所提出的基于SPSA的LQR控制器在不同的负载条件和系统故障(例如主要传输线中断或导致系统结构发生变化的三相接地故障)中具有鲁棒性。

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