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Related lectures (32)
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Discrete-Time LTI Systems
Covers the analysis of discrete-time LTI systems, including sampling systems and system responses.
Dynamical Systems: Lecture 2
Introduces dynamical systems, covering modeling, laws of motion, linearity, time invariance, and external forces.
Linear Time Invariant Systems: Impulse Response and Convolution
Covers linear time invariant systems, focusing on impulse response and convolution.
System Composition and Properties
Discusses LTI system composition, causality, stability, and output determination.
Linear Quadratic Regulator Theory
Covers the Linear Quadratic Regulator theory for optimal control of multivariable systems.
Linear Response: Self-Consistent Transfer Operators
Discusses linear response for self-consistent transfer operators, exploring rigorous results and applications in theoretical frameworks.
Signal and System Analysis: Impulse Response and Convolution
Covers the analysis of LTI systems using impulse response and convolution.
Singular Value Decomposition: Applications and Interpretation
Explains the construction of U, verification of results, and interpretation of SVD in matrix decomposition.
Numerical Analysis: Linear Systems
Covers the analysis of linear systems, focusing on methods such as Jacobi and Richardson for solving linear equations.
Applications of Laplace Transform: State Space Modeling
Explores the application of Laplace transform in state space modeling of linear systems and the control of dynamic systems.