Practical input-output stability analysis techniques applied to DC machine systems

C. Sullivan
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Abstract

Input-output stability is an important indicator of proper propulsion system design. Developing methods to analyze and quantify input-output stability is of particular interest. In this paper, input-output stability techniques based on Lyapunov equation optimization and linear matrix inequalities are set forth and applied to a dc machine system with controls, providing a practical means of predicting system behavior due to changes in disturbance torque modeled as an input.
应用于直流电机系统的实用输入输出稳定性分析技术
输入输出稳定性是推进系统设计的重要指标。发展分析和量化投入产出稳定性的方法是特别有趣的。本文提出了基于李雅普诺夫方程优化和线性矩阵不等式的输入-输出稳定性技术,并将其应用于具有控制的直流电机系统,提供了一种实用的方法来预测由于作为输入模型的干扰转矩变化而导致的系统行为。
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