传输线模型的模型降阶

S. Suman, Adarsh Kumar
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引用次数: 4

摘要

输电线路模型在电力供应中起着重要的作用。这种系统的建模仍然是一个挑战,因为仿真是设计和控制现代电力系统所必需的。为了分析一个基准集的数值方法,综合了一些必要的现实世界的例子,这些例子可以用来评估和比较模型约简的数学方法。该方法是基于保留系统的主导模式和截断相对较不重要的一次。由于降阶模型是通过保留大尺度稳定系统的主导模态而得到的,因此降阶模型保留了大尺度稳定系统的稳定性。许多MOR方法的缺点是,降阶模型的稳态值与高阶系统的稳态值不匹配。这个缺点已经试图通过使用sssMOR工具的不同MOR方法来消除。这使得对误差系统进行新的评估成为可能。只要考虑到原系统的可观察性Gramian,就可以用最小的数值努力计算出任何最小化模型的H∞和H2误差界。大尺度动力系统的降阶模型(ROM)对于利用近似算法轻松研究系统至关重要。从响应约束和图形评价两方面考虑响应评价。给出了近似方法在由基准问题组成的大型LTI系统的ROM生成中的应用。结果表明,与现有方法相比,该方法对系统的时间响应具有较好的拟合性。
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Model Order Reduction of Transmission Line Model
Transmission Line model are an important role in the electrical power supply. Modeling of such system remains a challenge for simulations are necessary for designing and controlling modern power systems.In order to analyze the numerical approach for a benchmark collection Comprehensive of some needful real-world examples, which can be utilized to evaluate and compare mathematical approaches for model reduction. The approach is based on retaining the dominant modes of the system and truncation comparatively the less significant once.as the reduced order model has been derived from retaining the dominate modes of the large-scale stable system, the reduction preserves the stability. The strong demerit of the many MOR methods is that, the steady state values of the reduced order model does not match with the higher order systems. This drawback has been try to eliminated through the Different MOR method using sssMOR tools. This makes it possible for a new assessment of the error system Offered that the Observability Gramian of the original system has as soon as been thought about, an H∞ and H2 error bound can be calculated with minimal numerical effort for any minimized model attributable to The reduced order model (ROM) of a large-scale dynamical system is essential to effortlessness the study of the system utilizing approximation Algorithms. The response evaluation is considered in terms of response constraints and graphical assessments. the application of Approximation methods is offered for arising ROM of the large-scale LTI systems which consist of benchmark problems. The time response of approximated system, assessed by the proposed method, is also shown which is excellent matching of the response of original system when compared to the response of other existing approaches .
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