The project is still under development and the next updates will focus on the following tasks: - [x] CARIMA Model using Control Effort as optimization variable - [x] CARIMA Model using Control Signal as optimization variable (Parallel Representation) - [x] CARIMA Model using Control Effort as optimization variable for a Time-Delay System (for unstable and stable processes) - [ ] CARIMA Model using Control Effort as optimization variable for a Time-Delay System (Conceptual Structure) - [ ] CARIMA Model for Cascading Processes with Time-Delay (Ackerman's Formula for Pole Allocation) - [ ] CARIMA Model using Control Signal as optimization variable for a Time-Delay System (Parallel Representation) - [x] CARIMA Model using Control Effort as optimization variable with constraints on the Control Signal for a TISO (Two Inputs-Single Output) System - [x] Remember about the Cauchy Theorem amd the Nyquist Criterion - [ ] ~Delay-Independent Controller Analysis via LMIs (Linear Matrix Inequalities)~ - [ ] ~Delay-Independent Controller Synthesis via LMIs (Linear Matrix Inequalities)~ - [ ] ~Delay-Dependent Controller Synthesis via LMIs (Linear Matrix Inequalities) - based on Razumikhin Theorem~ - [ ] ~Delay-Dependent Controller Synthesis via LMIs (Linear Matrix Inequalities) - based on Lyapunov-Krasovskii Theorem~ - [x] Propeller Pendulum Control using EPSAC
The project is still under development and the next updates will focus on the following tasks:
Delay-Independent Controller Analysis via LMIs (Linear Matrix Inequalities)Delay-Independent Controller Synthesis via LMIs (Linear Matrix Inequalities)Delay-Dependent Controller Synthesis via LMIs (Linear Matrix Inequalities) - based on Razumikhin TheoremDelay-Dependent Controller Synthesis via LMIs (Linear Matrix Inequalities) - based on Lyapunov-Krasovskii Theorem