Enhancing rational approximation of wideband resonant MIMO systems with frequency-domain data

IF 2.5 3区 计算机科学 Q2 AUTOMATION & CONTROL SYSTEMS European Journal of Control Pub Date : 2024-05-07 DOI:10.1016/j.ejcon.2024.101000
Ricardo Schumacher, Gustavo H.C. Oliveira, Lucas F.M. Rodrigues
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Abstract

Vector Fitting (VF) is a successful methodology for both time and frequency domain estimation of dynamic systems. These algorithms have gained popularity as a system identification tool due to their ability to provide a practical procedure for accurately approximating the measured frequency response behavior of complex and highly resonant dynamic systems using rational models. Instrumental Variable (IV) techniques can also be added to the VF algorithm to enhance the optimality of the solutions in the presence of measurement noise. In this context, this paper presents a multiple-input multiple-output (MIMO) generalization of instrumental variable (IV-)VF. The proposed algorithm can be applied to accurately estimating models formed by either continuous- or discrete-time rational basis functions (RBFs). We show that such a generalization preserves the main implementation features observed in Standard VF, but with improved optimality property for its solutions. Additionally, in order to alleviate convergence problems that may arise from the fixed high-frequency normalization, we also present in this paper how to incorporate in the proposed IV-VF method the relaxed formulation found in standard VF for both the continuous and discrete-time cases. The resulting MIMO IV-VF algorithm can be easily understood by VF users, and its applicability is discussed by using an estimation case study with two power system pieces of equipment (an 88 kV Transformer and a 550 kV Instrument Transformer) for which actual frequency domain measurements were collected in the field. It is shown that the proposed algorithm significantly improves the modeling accuracy when compared to standard VF algorithms.

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利用频域数据增强宽带谐振多输入多输出系统的合理近似性
矢量拟合(VF)是一种成功的动态系统时域和频域估算方法。由于这些算法能够提供一种实用程序,利用合理模型精确逼近复杂和高共振动态系统的实测频率响应行为,因此作为系统识别工具广受欢迎。工具变量(IV)技术也可添加到 VF 算法中,以提高在存在测量噪声的情况下求解的最优性。在此背景下,本文提出了一种多输入多输出(MIMO)的工具变量(IV)VF 广义算法。所提出的算法可用于精确估计由连续或离散时间有理基函数(RBF)形成的模型。我们的研究表明,这种广义算法保留了标准 VF 的主要实现特征,但改进了其解的最优性。此外,为了缓解固定高频归一化可能带来的收敛问题,我们还在本文中介绍了如何将连续和离散时间情况下标准 VF 中的宽松表述纳入所提出的 IV-VF 方法。由此产生的 MIMO IV-VF 算法很容易为 VF 用户所理解,并通过使用两个电力系统设备(88 千伏变压器和 550 千伏互感器)的估算案例研究来讨论其适用性,这些设备的实际频域测量是在现场收集的。结果表明,与标准 VF 算法相比,所提出的算法显著提高了建模精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
European Journal of Control
European Journal of Control 工程技术-自动化与控制系统
CiteScore
5.80
自引率
5.90%
发文量
131
审稿时长
1 months
期刊介绍: The European Control Association (EUCA) has among its objectives to promote the development of the discipline. Apart from the European Control Conferences, the European Journal of Control is the Association''s main channel for the dissemination of important contributions in the field. The aim of the Journal is to publish high quality papers on the theory and practice of control and systems engineering. The scope of the Journal will be wide and cover all aspects of the discipline including methodologies, techniques and applications. Research in control and systems engineering is necessary to develop new concepts and tools which enhance our understanding and improve our ability to design and implement high performance control systems. Submitted papers should stress the practical motivations and relevance of their results. The design and implementation of a successful control system requires the use of a range of techniques: Modelling Robustness Analysis Identification Optimization Control Law Design Numerical analysis Fault Detection, and so on.
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