Stability analysis and stabilizing control synthesis via Lyapunov's second method directly on bond graphs of nonlinear systems

S. Junco
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引用次数: 19

Abstract

In this paper a set of energy-based methods for the computation of equilibria, the analysis of their stability, and the synthesis of stabilizing control laws are presented. All of them are a transliteration to the bond graph modelling language of methods usually carried out on the state equations of the system. While the computation of equilibrium exploits the circumstance that in such a state no power flows into the storage elements, the methods concerning its stability rely on the fact that, when choosing (a function of) the energy stored in the system as (candidate) Lyapunov function, its orbital derivative can he directly evaluated in terms of the power flow through the bonds of the graph. Armature- and field-voltage control laws for a DC-machine are derived as applications of the methods.<>
非线性系统键合图上的Lyapunov第二方法稳定性分析及稳定控制综合
本文给出了一套基于能量的平衡点计算方法、平衡点的稳定性分析以及稳定控制律的综合。它们都是对通常在系统状态方程上进行的方法的键合图建模语言的音译。虽然平衡的计算利用了在这种状态下没有功率流入存储单元的情况,但有关其稳定性的方法依赖于这样一个事实:当选择系统中存储能量的函数作为候选Lyapunov函数时,它的轨道导数可以直接根据通过图的键的功率流来计算。作为该方法的应用,推导了直流电机的电枢和磁场电压控制规律。
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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