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Identifying linear models from time domain simulations

机译:从时域仿真中识别线性​​模型

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摘要

Traditionally, the linear analysis of a power system is performed by first computing a state space model, followed by the application of a suitable analysis method. However, the applicability of this approach is restricted by several practical limitations: typical power systems are represented by very large state matrices that require specialized large-scale eigen analysis programs; the program where the power system models reside does not include linearization capabilities; only time domain data is available. This article illustrates the applicability of a new system identification software program, SYSID, developed to circumvent these limitations. The program incorporates several identification techniques that allow for the computation of equivalent linear models, suitable for control design applications, from time domain simulation data. The program has been used to calculate equivalent models from simulations performed with standard stability programs, as well as from the Electromagnetic Transient Program (EMTP) simulations of detailed three-phase power systems. The equivalent systems are small and retain the modal characteristics of the original system. The identification techniques are based on various algorithms including Prony's method, transfer function fitting, and Hankel matrices. In addition to the identification algorithms, the program also includes signal processing, plotting, modal analysis functions, and basic control design capabilities to assess closed loop system performance.
机译:传统上,电力系统的线性分析是通过首先计算状态空间模型,然后应用适当的分析方法来执行的。但是,这种方法的适用性受到一些实际限制的限制:典型的电力系统以非常大的状态矩阵为代表,这些状态矩阵需要专门的大规模特征分析程序;电力系统模型所在的程序不包含线性化功能;只有时域数据可用。本文说明了新的系统识别软件程序SYSID的适用性,该程序旨在克服这些限制。该程序结合了多种识别技术,可以从时域仿真数据中计算出适合控制设计应用的等效线性模型。该程序已用于通过使用标准稳定性程序执行的仿真以及详细三相电力系统的电磁暂态程序(EMTP)仿真来计算等效模型。等效系统很小,并且保留了原始系统的模态特征。识别技术基于各种算法,包括Prony方法,传递函数拟合和Hankel矩阵。除识别算法外,该程序还包括信号处理,绘图,模态分析功能以及评估闭环系统性能的基本控制设计功能。

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