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Smart grid: Algorithms for control of active-adaptive network components

机译:智能电网:控制自适应网络组件的算法

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The construction of automated systems intended for the control of electric power systems requires high-speed mathematical tools. The research is aimed at developing algorithms for the construction of automated systems to control active components of the electrical network. The method applied by the authors to describe the object of control is based on the universal approach to the mathematical modeling of nonlinear dynamic system of a black-box type represented by the Volterra polynomial of the N-th degree. The paper presents a new algorithm for the identification of Volterra polynomial of the second degree for non-stationary dynamic systems which allow an active experiment using test sets of input signals. This makes it possible for the input and output characteristics of the object to obtain an adequate and fast mathematical description. The results enable us to assess the applicability of this mathematical apparatus to the control of active components of electric power system in which power quality parameters are taken into account as an objective vector.
机译:用于控制电力系统的自动化系统的构建需要高速数学工具。该研究旨在开发用于构建自动化系统的算法,以控制电网的有源组件。作者采用的描述控制对象的方法基于通用方法,对以N级Volterra多项式表示的黑箱型非线性动力学系统进行数学建模。本文提出了一种用于非平稳动态系统的二阶Volterra多项式识别的新算法,该算法允许使用输入信号的测试集进行主动实验。这使得对象的输入和输出特性有可能获得足够快速的数学描述。结果使我们能够评估该数学仪器在控制电力系统有源组件中的适用性,在该系统中,将电能质量参数作为目标向量。

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