Discrete Systems TheoryCovers difference equations, dynamic systems, linearity, and impulse response in discrete systems.
Z-Transform: BasicsCovers the Z-Transform, transfer function for LTI systems, and its properties, including linearity and time shift.
Difference EquationsCovers the concept of difference equations and properties of causal vs. stable systems.
LTI Systems and z-TransformCovers LTI systems, z-Transform, and the Region of Convergence (ROC) with stability criteria and illustrative examples.
State-space ModelingIntroduces the state-space approach to modeling dynamical systems and its utility for high-speed solution of differential equations and computer algorithms.
Z-Transforms: Poles and ZerosExplores Z-Transforms, Poles, Zeros, and their applications in discrete-time systems and Linear Time-Invariant systems.
LTI System PropertiesExplores the properties of Linear Time-Invariant systems through impulse response and convolution sum.