| 1 | To teach advanced analysis methods of linear time-invariant systems |
| 2 | To use state-space modeling techniques |
| 3 | To design observers and feedback controllers |
| 4 | To apply root locus, frequency response, and Nyquist methods in control design |
| 5 | To ensure system stability using state feedback |
| 6 | To understand modern control techniques such as Kalman filter and LQR |
| 7 | To identify the characteristics and analysis of nonlinear systems |
| 8 | To design control systems for real-world engineering applications |