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Related lectures (26)
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Electric Motors: Principles and Applications
Explores electric motor principles, linearity, control systems, active suspensions, and Laplace transforms.
Discrete-Time Systems Analysis
Explores Z-transform analysis for discrete-time systems and transfer functions in control systems.
Control Systems: Stability and Gain Analysis
Explores the application of final value theorem and static gain in control systems.
Convolution and Laplace Transform
Explores control of dynamic systems, impulse response, Laplace transform, and Fourier transform for solving differential equations.
Bode Diagram Synthesis
Covers the synthesis in the Bode diagram, dynamic controls, and the link between the Bode and Nyquist diagrams.
Discrete Systems Analysis: Z-Transform and System Properties
Explores Z-transform, system properties, and analysis of discrete systems, focusing on stability and transfer functions.
Sampling Theorem and Control Systems
Explores the Sampling Theorem, digital control, signal reconstruction, and anti-aliasing filters.
Effects of Poles and Zeros on System Response
Explores the effects of poles and zeros on system response and the importance of system modeling and control strategies.
Modeling Dynamic Systems: Definitions and Examples
Covers the modeling of dynamic systems, including definitions, examples, and linearization processes for easier analysis.
Networked Control Systems: Consensus and Laplacian Flow
Explores the Laplacian flow and achieving consensus in networked control systems through examples and theorems.