Hassan Khalil (Instructor) - Grade Details
(with breakdown by course)
Hassan Khalil - All Courses
Average Grade - 3.268
Median Grade - 3.5
Latest grades from Fall 2019
Hassan Khalil - Overview
Course Number | Grade Info | Number of Students | Latest Grade Data | Breakdown |
---|---|---|---|---|
ECE 313 | Average Grade - 3.040 Median Grade - 3.5 |
297 | Fall 2016 | |
ECE 851 | Average Grade - 3.458 Median Grade - 3.5 |
178 | Fall 2019 | |
ECE 856 | Average Grade - 3.692 Median Grade - 4.0 |
13 | Fall 2018 | |
ECE 416 | Average Grade - 3.400 Median Grade - 3.5 |
80 | Spring 2019 | |
ME 859 | Average Grade - 3.557 Median Grade - 3.5 |
61 | Spring 2019 |
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ECE 313 - Control Systems
Analysis and design of control systems using transfer functions and state variable methods.
Average Grade - 3.040
Median Grade - 3.5
Latest grades from Fall 2016
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ECE 416 - Digital Control
State-space models. Analysis and design of control systems using state models. Digital control. Discrete-models of sampled-data systems. Quantization effects and sample-rate selection. System identification. Simulation of nonlinear control systems. Examples of nonlinear phenomena. State of the art of control engineering. Control laboratory.
Average Grade - 3.400
Median Grade - 3.5
Latest grades from Spring 2019
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ECE 851 - Linear Systems and Control
State models and their stability, controllability, and observability properties. Finding minimal realizations of transfer functions. Design of state and output feedback controllers. Design of state observers. LQ regulator and the Kalman filter. Time-varying systems.
Average Grade - 3.458
Median Grade - 3.5
Latest grades from Fall 2019
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ECE 856 - Adaptive Control
Real-time parameter estimation. Design of self-tuning regulators and model reference adaptive controllers. Investigation of robustness and robust adaptive controllers. Extension to nonlinear systems.
Average Grade - 3.692
Median Grade - 4.0
Latest grades from Fall 2018
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ME 859 - Nonlinear Systems and Control
Second-order systems and fundamental properties of solutions. Lyapunov stability, input-output stability, passivity, absolute stability, and linearization. Design of feedback controllers using integral control, feedback linearization, sliding mode control, Lyapunov redesign, passivity-based control, and recursive methods. Applications to electrical and mechanical systems.
Average Grade - 3.557
Median Grade - 3.5
Latest grades from Spring 2019
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