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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Optimal Finite-Time State Estimation for Discrete-Time Switched Systems under Switching Frequency Constraint
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Optimal Finite-Time State Estimation for Discrete-Time Switched Systems under Switching Frequency Constraint

机译:切换频率约束下的离散时间交换系统的最佳有限时间估计

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The state estimation problem for a class of switched linear systems which only switches in some short interval is addressed. Besides the asymptotic stability of error dynamics, the boundness of error state is a significant issue for short-time switched systems. By introducing the concept of finite-time stability, the state estimation procedure is formulated to determine appropriate observer gains ensuring the error dynamics is finite-time stable in the short-time switching intervals of interest. Optimal finite-time observers are designed through iterative algorithms to minimize the bound of error state, in the cases with and without disturbances. Particularly, when the total activation time is known, a less conservative result can be derived and an optimization problem can be solved with the help of the genetic algorithm. A numerical example is provided to illustrate the theoretical findings in this paper.
机译:寻址仅在某些短期间切换的一类交换线性系统的状态估计问题。 除了误差动态的渐近稳定性之外,误差状态的界限是短时间交换系统的重要问题。 通过引入有限时间稳定性的概念,制定了状态估计过程以确定适当的观察者收益,确保错误动态是感兴趣的短时间切换间隔的有限时间稳定。 通过迭代算法设计最佳有限时间观察者,以最大限度地减少误差状态的突出状态,在带有干扰的情况下。 特别地,当已知总激活时间时,可以导出较少保守的结果,并且可以在遗传算法的帮助下解决优化问题。 提供了一个数值例子以说明本文的理论发现。

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