A small gain condition for interconnections of ISS systems with mixed ISS characterizations
Sergey Dashkovskiy, Michael Kosmykov, Fabian Wirth

TL;DR
This paper develops generalized small gain conditions for interconnected ISS systems, accommodating mixed ISS characterizations and providing a unified framework that enhances existing theorems.
Contribution
It extends small gain theorems to handle systems with different ISS formulations, allowing for more flexible interconnection analysis.
Findings
Conditions guarantee interconnection ISS with external inputs.
Transformations between sum and maximum ISS conditions are always possible.
Example demonstrates advantages over previous results.
Abstract
We consider interconnected nonlinear systems with external inputs, where each of the subsystems is assumed to be input-to-state stable (ISS). Sufficient conditions of small gain type are provided guaranteeing that the interconnection is ISS with respect to the external input. To this end we extend recently obtained small gain theorems to a more general type of interconnections. The small gain theorem provided here is applicable to situations where the ISS conditions are formulated differently for each subsystem and are either given in the maximization or the summation sense. Furthermore it is shown that the conditions are compatible in the sense that it is always possible to transform sum formulations to maximum formulations without destroying a given small gain condition. An example shows the advantages of our results in comparison with the known ones.
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Taxonomy
TopicsStability and Control of Uncertain Systems · Control and Stability of Dynamical Systems · Wireless Power Transfer Systems
