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Lecture
State-space Modeling
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Related lectures (31)
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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.
Modeling Dynamic Systems: Definitions and Examples
Covers the modeling of dynamic systems, including definitions, examples, and linearization processes for easier analysis.
Convolution and Laplace Transform
Explores control of dynamic systems, impulse response, Laplace transform, and Fourier transform for solving differential equations.
Dynamic Systems: Springs and Forces
Explores springs under forces using differential equations and mechanics examples.
LTI Systems Properties
Covers the properties of Linear Time-Invariant (LTI) systems and their implications.
Dynamic Systems: Formalism and Bases
Covers the formalism and bases of dynamic systems, including differential equations and non-linear systems.
Dynamics of Simple Pendulum and Lorenz Equations
Explores the dynamics of a simple pendulum and the intriguing Lorenz equations, highlighting sensitivity to initial conditions and the transition to chaos.
Electric Motors: Principles and Applications
Explores electric motor principles, linearity, control systems, active suspensions, and Laplace transforms.
Signal and System Analysis: Impulse Response and Convolution
Covers the analysis of LTI systems using impulse response and convolution.
Multivariable Control: System Theory and Linear Systems
Introduces the basics of multivariable control, focusing on system theory and linear systems.