首页> 外文期刊>SIAM Journal on Control and Optimization >OPTIMAL INPUT-OUTPUT STABILIZATION OF INFINITE-DIMENSIONAL DISCRETE TIME-INVARIANT LINEAR SYSTEMS BY OUTPUT INJECTION
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OPTIMAL INPUT-OUTPUT STABILIZATION OF INFINITE-DIMENSIONAL DISCRETE TIME-INVARIANT LINEAR SYSTEMS BY OUTPUT INJECTION

机译:无限大离散时不变线性系统的最优输入输出稳定

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摘要

We study the optimal input-output stabilization of discrete time-invariant linear systems in Hilbert spaces by output injection. We show that a necessary and sufficient condition for this problem to be solvable is that the transfer function has a left factorization over H-infinity. Another equivalent condition is that the filter Riccati equation (of an arbitrary realization) has a solution (in general, unbounded and even nondensely defined). We further show that after renorming the state space in terms of the inverse of the smallest solution of the filter Riccati equation, the closed-loop system is not only input-output stable but also strongly internally *-stable.
机译:我们通过输出注入研究了希尔伯特空间中离散时不变线性系统的最优输入输出稳定性。我们表明解决该问题的必要和充分条件是传递函数在H-无穷大上具有左分解因子。另一个等效条件是滤波器的Riccati方程(具有任意实现)具有一个解(通常,无界甚至是密集定义)。我们进一步表明,根据滤波器Riccati方程的最小解的逆来重新规范状态空间后,闭环系统不仅输入输出稳定,而且内部也很稳定。

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