A delay decomposition approach to robust absolute stability of neutral Lurie control system
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Publication:371070
DOI10.1007/s13369-012-0488-7zbMath1272.93092OpenAlexW1980749799MaRDI QIDQ371070
Publication date: 27 September 2013
Published in: Arabian Journal for Science and Engineering (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s13369-012-0488-7
Robust stability (93D09) Neutral functional-differential equations (34K40) Control/observation systems governed by ordinary differential equations (93C15)
Related Items (3)
Delay-derivative-dependent stability for neutral systems with time-varying delay and nonlinearity ⋮ Reliable controller for nonlinear multiagent system with additive time varying delay and nonlinear actuator faults ⋮ Improved stability criteria for neutral type Lur'e systems with time-varying delays
Cites Work
- Absolute stability analysis of Lur'e control system with multiple delays: an integral-equality approach
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- Stability analysis for a class of neutral systems with mixed delays and sector-bounded nonlinearity
- A stabilization algorithm for a class of uncertain linear systems
- Theory of functional differential equations. 2nd ed
- Novel robust stability criterion for a class of neutral systems with mixed delays and nonlinear perturbations
- Delay-dependent absolute stability of Lurie control systems with multiple time-delays
- Delay-dependent stabilization of linear systems with time-varying state and input delays
- Absolute stability of time-delay systems with sector-bounded nonlinearity
- A New Delay-dependent Absolute Stability Criterion for Lurie Systems with Time-varying delay
- New Delay-dependent Absolute Stability Criteria for Lurie Control Systems
- Stability of time-delay systems
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