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Introduction to Power Electronics
Introduction to Control
Modeling and Control for Power Electronics
Pangolin Awareness
About Us
Introduction to Control
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Electrical Engineering
Introduction to Control
Curriculum
17 Sections
19 Lessons
16 Weeks
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Math Review and Laplace Transform
3
1.1
1.A Math Review and Laplace Transforms
60 Minutes
1.2
1.B Problem Set 1
60 Minutes
1.3
1.C Problem Set 1 Solutions
20 Minutes
System Modeling
1
2.1
2.A System Modeling
30 Minutes
Transfer Functions
1
3.1
3.A Transfer Functions
30 Minutes
More Transfer Functions
1
4.1
4.A More Transfer Functions
20 Minutes
Linearization
1
5.1
5.A Linearization
45 Minutes
State-Space Modeling
1
6.1
6.A State-Space Modeling
50 Minutes
Poles and Zeros
1
7.1
7.A Poles and Zeros
Eigenvalues and Stability
1
8.1
8.A Eigenvalues and Stability
30 Minutes
System Time-Domain Response
1
9.1
9.A System Time Response
40 Minutes
Feedback Control
1
10.1
10.A Feedback Control
35 Minutes
Steady State Error
1
11.1
11.A Steady State Error
40 Minutes
Closed-Loop Transfer Function and Root Locus
1
12.1
12.A Closed-Loop Transfer Function and Root Locus
50 Minutes
Root Locus for Stability
1
13.1
13.A Root Locus for Stability
35 Minutes
Frequency Response
1
14.1
14.A Frequency Response
35 Minutes
Bode Plot
1
15.1
15.A Bode Plot
45 Minutes
Nyquist Criterion
1
16.1
16.A Nyquist Criterion
35 Minutes
Bonus: Controls in Matlab & Simulink
1
17.1
17.A Controls in Matlab & Simulink
30 Minutes
9.A System Time Response
Watch the following videos:
System Time Response Terms
Second-Order System Time Response
Second Order System: Damping & Natural Frequency
System Response with Zeros
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