Overview
Networks, Signals & Systems for GATE Electronics & Communication
- Network Solution Methods
- Nodal & Mesh Analysis
- Network Theorems
- Superposition, Thevenin & Norton’s, maximum power transfer
- Wye‐Delta Transformation;
- Steady State Sinusoidal Analysis using Phasors
- Time Domain Analysis of simple Linear Circuits
- Solution of Network Equations using Laplace Transform
- Frequency Domain Analysis of RLC Circuits
- Linear 2‐Port Network Parameters
- Driving Point & Transfer Functions
- State equations for Networks
- Continuous-Time Signals
- Fourier Series & Fourier Transform Representations, Sampling Theorem & Applications
- Discrete-Time Signals
- Discrete-Time Fourier Transform (DTFT), DFT, FFT, Z-transform, Interpolation of Discrete-Time Signals
- LTI Systems: Definition & properties, causality, stability, impulse response, convolution, poles and zeros, parallel & cascade structure, frequency response, group delay, phase delay, digital filter design techniques.
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Course Features
- Lectures 0
- Quizzes 0
- Duration 50 hours
- Skill level All levels
- Language English
- Students 0
- Assessments Yes