Proposes a class of delayed functional observers for output-delayed linear systems to enable reconstruction of delayed control laws.
Observer-Based Control of Linear Systems with Mismatched Input and Output Delays
2 Pith papers cite this work. Polarity classification is still indexing.
abstract
This paper investigates the stabilization of linear systems subject to simultaneous, mismatched time delays in both the control input and system output vectors. The proposed control framework is developed in two primary stages. First, an asymptotically stabilizing delayed state-feedback controller is synthesized by leveraging recent advancements in Linear Matrix Inequality (LMI) techniques. Second, this controller is realized using novel time-delay compensators \cite{trinhnam26}. This architecture successfully accommodates an output measurement delay $\tau_y$ that is independent of the input delay $\tau_u$, enabling direct estimation of the delayed state-feedback control law. The proposed methodology is then extended to target output controllers to account for simultaneous, mismatched time delays in both the control input and system output vectors.
fields
eess.SY 2years
2026 2verdicts
UNVERDICTED 2representative citing papers
Design of delayed functional observers for estimating generalized delayed control laws to stabilize time-delay systems with mismatched input and output delays.
citing papers explorer
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Delayed Functional Observers for Output-Delayed Linear Systems
Proposes a class of delayed functional observers for output-delayed linear systems to enable reconstruction of delayed control laws.
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Delayed Functional Observers for the Realization of Generalized Delayed Control Laws
Design of delayed functional observers for estimating generalized delayed control laws to stabilize time-delay systems with mismatched input and output delays.