Abstract:
This article deals with networked control systems (NCSs) whose shared networks have limited communication capacity and are prone to data losses. Our contributions are two...Show MoreMetadata
Abstract:
This article deals with networked control systems (NCSs) whose shared networks have limited communication capacity and are prone to data losses. Our contributions are two-fold. First, we present necessary and sufficient conditions on the plant and controller dynamics and the network parameters such that there exist purely time-dependent periodic scheduling sequences under which the stability of each plant is preserved for all admissible data loss signals. Second, given a period for the scheduling sequence, we identify sufficient conditions on the plant dynamics and the network parameters such that the plants admit static state-feedback controllers that are favorable for the stability conditions presented. The main apparatus for our analysis is a switched system representation of the individual plants in an NCS whose switching signals are time-inhomogeneous Markov chains. Our stability conditions involve the existence of sets of symmetric and positive definite matrices that satisfy certain (in)equalities. We identify the existence of stabilizing periodic scheduling sequences and their corresponding favorable state-feedback controllers under ideal communication between the plants and their controllers as special cases of our results. A numerical experiment is presented to demonstrate the proposed techniques.
Published in: IEEE Transactions on Control of Network Systems ( Volume: 8, Issue: 4, December 2021)
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- IEEE Keywords
- Index Terms
- Data Loss ,
- Control For Networked Systems ,
- Random Data Loss ,
- Control System ,
- Markov Chain ,
- Sufficient Conditions ,
- Numerical Experiments ,
- Individual Plants ,
- State Control ,
- Symmetric Matrix ,
- Positive Definite Matrix ,
- Stability Conditions ,
- Switching Signal ,
- Plant Dynamics ,
- Networked Control Systems ,
- Shared Network ,
- Sequential Schedule ,
- Control Design ,
- Communication Network ,
- Control Input ,
- Network Capacity ,
- Closed-loop Operation ,
- Linear Quadratic Gaussian ,
- Probability Of Loss ,
- Special Case Of Theorem ,
- Transition Probability Matrix ,
- Linear Matrix Inequalities ,
- Existence Of Control ,
- Upper Envelope ,
- Unstable Modes
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Data Loss ,
- Control For Networked Systems ,
- Random Data Loss ,
- Control System ,
- Markov Chain ,
- Sufficient Conditions ,
- Numerical Experiments ,
- Individual Plants ,
- State Control ,
- Symmetric Matrix ,
- Positive Definite Matrix ,
- Stability Conditions ,
- Switching Signal ,
- Plant Dynamics ,
- Networked Control Systems ,
- Shared Network ,
- Sequential Schedule ,
- Control Design ,
- Communication Network ,
- Control Input ,
- Network Capacity ,
- Closed-loop Operation ,
- Linear Quadratic Gaussian ,
- Probability Of Loss ,
- Special Case Of Theorem ,
- Transition Probability Matrix ,
- Linear Matrix Inequalities ,
- Existence Of Control ,
- Upper Envelope ,
- Unstable Modes
- Author Keywords