OUTCROSS · Operator semigroup techniques in the control of delay systems
Horizon 2020 — Marie Skłodowska-Curie Actions
- Duration
- 2016-11-01 → 2018-10-31
- EU contribution
- €195,455
- Participants
- 1
- Scheme
- MSCA-IF
Lines connect the coordinator with its partners.
Results in brief
Operator semigroup techniques in the control of delay systems
This project addressed applications of operator theory to evolution equations in order to investigate fundamental properties of admissibility and controllability of state-delayed infinite-dimensional dynamical systems originating from such evolution equations. The importance for society of this project stems from the fact that concepts, methods and paradigms of dynamical systems significantly influence research in many sciences and have given rise to vast new areas of applications. A physical, chemical or engineering dynamical system, if assumed continuous in nature, is modelled by differential equations. A general class of models - evolution equations - comprises systems modelled by partial differential equations and by functional differential equations. Evolution equations class embraces models resulting from such diverse fields as aeronautics (e.g. wing vibrations), thermal engineering (e.g. heat conduction) and biology (e.g. cellular dynamics). Motivated by such a wide application area, evolution equations with boundary control and observation stand at the forefront of interdisciplinary subjects and thus are of particular interest to society. The overall objective of the project was to search for an answer to the question of necessary and sufficient conditions for admissibility and controllability of dynamical systems, accounting for weighted forms of admissibility and controllability.
Data: CORDIS, © European Union
Project objective
The purpose of this project is to apply operator theory to evolution equations in order to investigate fundamental properties of infinite dimensional dynamical systems with delay in state variables. Radoslaw Zawiski will pursue this goal within the Analysis Group at the School of Mathematics of the University of Leeds, under the supervision of Professor Partington. This interdisciplinary project searches for the answer to the question of necessary and sufficient conditions for admissibility and controllability of an infinite dimensional dynamical system. It also scrutinises weighted forms of admissibility and controllability for a delay system with problems involving the Dirichlet-type norms. With the above, this project goes beyond the state-of-the-art utilising innovative operator semigroup techniques, in particular Carleson embeddings involvingsectorial measures and Toeplitz/Hankel operators, to obtain results in an underdeveloped area of state delayed infinite dimensional systems. Concurrently, this project crosses current frontiers in control theory of such systems, setting new level and worldwide standard by giving a great insight into the nature of evolution equations. By fulfilling its purpose, this project helps the European scientific community to maintain its leading role in operator theory and control theory, adding to this topic a relevant set of techniques specifically designed for state delayed evolution equations. In this respect, the fellowship supports Radoslaw Zawiski’s career development by providing him the right environment to attain the proposed research goals. Dr Zawiski will reach the full maturity as a leading researcher, with the solid background and possibilities to significantly contribute to the development of operator theory and control theory.
Original text from CORDIS.
Participants
- UNIVERSITY OF LEEDS · LeedsCoordinatorUnited Kingdom
Links
Data: CORDIS, © European Union
