학술논문

Scalar Modules with Logarithmic Lyapunov Functions for Robust Positive Systems Exhibiting Interior Equilibria
Document Type
Conference
Author
Source
2024 SICE International Symposium on Control Systems (SICE ISCS) Control Systems (SICE ISCS), 2024 SICE International Symposium on. :80-85 Mar, 2024
Subject
Aerospace
Bioengineering
Components, Circuits, Devices and Systems
Computing and Processing
General Topics for Engineers
Power, Energy and Industry Applications
Robotics and Control Systems
Signal Processing and Analysis
Transportation
Asymptotic stability
Additives
Perturbation methods
Aerospace electronics
Control systems
Stability analysis
Nonlinear dynamical systems
Positivity
Interior equilibria
Nonlinear systems
Supply rates
Logarithmic Lyapunov functions
Modules
Language
Abstract
This paper pursues the use of logarithmic functions to develop a dissipativity framework for module-based analysis and design of nonlinear dynamical systems evolving on positive orthants and having interior stationary points. For scalar module systems, the notion of asymmetric supply rate and asymmetric gain is formulated for establishing input-to-state stability (ISS) with positivity through the logarithmic storage functions. In contrast to systems without state space restrictions, targeting interior equilibria prevents asymptotic stability from implying ISS for additive perturbations. The tightness of the asymmetric supply rate is investigated by clarifying the involvement of the equilibria information.