General information
| Catalog no.: | 00860289 |
| Credit points: | 3 |
| Prerequisite: | 00840738—Control Theory |
| Grading policy: | Homework (100%, average of 5 best out of 6, provided all solutions are submitted) Homework solutions are to be submitted in PDF format (typeset, not a scan of a handwritten text) via Moodle |
Lecturer
Leonid Mirkin, 653 Lady Davis Bld., phone: 3149, email:Classes
Tuesday, 14:30-17:20, room 281, Lady Davis Bld.Syllabus
- Review of classical single-loop control
- Static systems: linear algebra revised
- Frozen-time signals and static systems: basic definitions
- Structural properties of static systems (kernel and image spaces, SVD, etc)
- Dynamical systems and transfer functions
- Signals and systems in time and frequency domains
- LTI systems in transformed domains (transfer functions, system norms)
- Coprime factorization over H-inf
- Real-rational transfer functions (McMillan degree, poles, transmission zeros)
- State-space realizations of transfer matrices
- Structural properties (controllability, observability, minimality, Kalman canonical decomposition)
- State-space machinery
- Model reduction by balanced truncation
- Interactions between systems
- Basic interconnections and cancelations
- Linear fractional transformations
- Stability of interconnections
- Internal stability and well posedness
- Closed-loop stabilization and all stabilizing controllers (Youla-Kučera)
- Open-loop stabilization
- Performance via optimization methods
- The "standard problem"
- Weighted and mixed sensitivity problems
- Performance limitations
- Design method: H-inf loop shaping
Literature:
- Course lectures notes
- Skogestad, S. & I. Postlethwaite. Multivariable Feedback Control: Analysis and Design, John Wiley & Sons, 1996.
- Zhou, K., J. C. Doyle, & K. Glover. Robust and Optimal Control, Prentice Hall, 1995.
- Green, M. & D. J. N Limebeer. Linear Robust Control, Prentice Hall, Englewood Cliffs, 1995.
- Doyle, J. C., B. A. Francis, & A. Tannenbaum. Feedback Control Theory, MacMillan, 1992.
Lectures
- Chapter 1 (also in beamer mode)
- Chapter 2 (also in beamer mode)
Homework assignments
- Homework assignment no. 1, submission deadline: Nov 13, 2:00pm