利用劳斯逼近技术建立了AGC系统的降阶模型

S. Naqvi, Ibraheem, Sana Ali Naqvi
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引用次数: 4

摘要

小型数字计算机和处理器在设计、分析和实现适当控制策略方面的快速发展和使用,导致提出了大阶物理系统的降阶建模。由于大多数模型过于复杂,无法以其原始形式进行分析,因此过去已经开发了各种技术来降低复杂系统的顺序。现有电力系统的结构非常复杂,其数学模型的阶数也很大。对这类系统的分析成为一项乏味而困难的工作。本文采用基于Routh近似准则的模型降阶技术对单个区域的AGC模型进行建模。将单区域AGC模型降阶为三阶。得到了阶跃输入下原始模型和降阶模型的系统动态响应图,并对其进行了比较。对这些结果的研究表明,在很大程度上降低了系统的复杂性。然而,对于同一阶跃扰动,系统各状态的动态行为都在可接受的范围内。
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A reduced order model for AGC system using Routh approximation technique
The fast development and usage of small digital computers and processors in the design, analysis and implementation of suitable control strategies has led towards proposing the reduced order modeling of large order physical systems. As most of the models are too complex to be analyzed in its original form, various techniques have been developed in the past to reduce the order of a complex system. The structure of existing power systems is very complex in nature and therefore their resulting mathematical models are of large orders. The analysis of such systems becomes a tedious and difficult job. In this article, a model order reduction technique based on Routh approximation criteria is used to model AGC model of a single area. An AGC model of single area is reduced to third order. The system dynamic response plots for both original and reduced order models are obtained for step input and they are compared. The investigations of these results carried out in the study demonstrate that the complexity of the system is reduced to a great extent. However, the dynamic behavior of all the system states for same step disturbance is within acceptable limit.
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