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Xiangyu Meng @UCyOE_hU5C30jEuhvTPyC80g@youtube.com

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16:10
Control System Analysis: Vehicle Cruise Control using Simulink
07:15
Prediction based on transfer function 3
08:42
Prediction based on transfer function 2
15:52
Prediction based on transfer function 1
00:25
LSU Campus
00:30
Self-Driving Car Studio
00:22
Self-Driving Car Studio
12:53
Control Theory for Stochastic Discrete-Time Systems: Example
11:46
Control Theory for Stochastic Discrete-Time Systems: Sensitivity Analysis
31:51
Control Theory for Stochastic Discrete-Time Systems: Suboptimal Strategies for NMP Systems
26:43
Estimation Theory for Stochastic Discrete-Time Systems: Geometric Interpretations
15:58
Estimation Theory for Stochastic Discrete-Time Systems: Multivariate Normal Distribution
12:43
Estimation Theory for Stochastic Discrete-Time Systems: Best Estimate
20:21
Chapter 4 Continuous-Time Signal Analysis: The Fourier Transform
31:57
Chapter 4 Continuous-Time Signal Analysis: The Fourier Transform
21:07
Chapter 4 Continuous-Time Signal Analysis: The Fourier Transform
15:42
Control System Design: PID Tuning
06:48
Control System Design: PI and PID Control
13:36
Control System Design: Derivative Control
17:23
Control System Design: Integral Control
14:51
Control System Analysis: Second-Order Systems
27:58
Control System Analysis: Step Response of First-Order Systems
21:48
Control System Analysis: Frequency Response
50:22
Control System Analysis: Stability
19:26
Control System Analysis: Dynamical Response
35:12
Control System Analysis: BIBO Stability
28:35
Control System Analysis: Stability
21:22
Control System Analysis: Partial Fraction Expansion
24:35
Control System Analysis: Effects of Zeros
13:33
Control System Analysis: RHP Zeros and Complex zeros
12:46
Control System Analysis: Extra Pole
13:24
Control System Design: Tracking
31:21
Control System Design: Tracking
12:21
Control System Design: Proportional Control
16:40
Control System Analysis: Block Diagram Reduction
08:58
Control Systems Analysis: Block Diagrams
19:05
Modeling of Dynamical Systems: Law of Motor
07:43
Modeling of Dynamical Systems: Quadrotors
04:48
Modeling of Dynamical Systems: Active Vehicle Suspension Systems
05:52
Mathematics for Control Engineering: Complex variable
27:01
MATLAB: Inverse Laplace Transform
05:08
Rover: LOUIS
05:32
MATLAB: Block Diagram Reduction
18:34
Modeling of Dynamical Systems: Law of Generator
09:34
LabView: Pendulum
09:54
Control System Analysis: Pendulum
14:08
Modeling of Dynamical Systems: Pendulum
09:54
System Response: Vehicle Cruise Control
08:02
MATLAB: Symbolic Math Toolbox
05:36
Fourier Transforms - MATLAB
09:19
Transforms of Some Useful Functions - MATLAB
27:37
Modeling of Dynamical Systems: Vehicle Suspension Systems
00:49
Controlling Roomba with Arduino and Android
15:30
Physics for Control Engineering: Spring and Damper
18:04
Chapter 4 Continuous-Time Signal Analysis: The Fourier Transform
11:54
Estimation Theory for Stochastic Discrete-Time Systems: Problem Formulation
00:57
Offshore Drilling Platform
01:39
Using the Remote
04:47
Traffic Signal Recognition
15:07
Eco-driving of Autonomous Vehicles for Non-stop Crossing of Signalized Intersections