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130 видео
Signal and System | Introduction & Outlook of Signals and Systems Playlist | 0.0
Why we need Frequency domain analysis? | 1.1
What are Continuous and Discrete time Signals? | 1.2
Signal and System time domain operations | continuous time & discrete time | 1.3
Unit Step and Dirac Delta function in Signal and System Explained with Examples | 1.4
Even and odd signals | 1.5
Signal Energy and Signal Power with Worked Examples | 1.6
Fundamental Period of Periodic Signal | Sum of Periodic signals | 1.7
Periodicity of Discrete Time Signal | Fundamental Period of Sum of Periodic signals | 1.8
Complex Signals & Complex Exponential Signals | 1.9
LTI Systems: Understanding Linear Time Invariant Systems | 1.10
Convolution Sum | Introduction and Example | 2.1
AWGN, WGN, Autocorrelation and PSD Explained using Matlab
Power Spectral Density and Time Auto-correlation Function
Convolution Integral: Solving Example and Understanding its Solution | Signals and Systems
PWM and PPM Explained using Simulink | ADC 4.7
Quantization and Companding Explained using MATLAB | Audio Signal Analysis | ADC 4.12
Simulink Tutorial on BPSK Modulation and Demodulation under AWGN
QAM and Constellation Diagrams: Understanding Quadrature Amplitude Modulation | AM 2.6
Power Spectral Density using Auto-correlation Function | Random Binary Signal Example
Feedback IIR and Non-computable System in Digital Signal Processing
PAM, PWM and PPM Modulation and Demodulation Explained Using Simulink | ADC 4.6
Structure of IIR in DSP using SFG
Line Coding: A Comprehensive Overview and Comparison | ADC 4.15
Fourier Series | Introduction, Types, and Orthogonal Basis | 5.2
Convolution Sum: Solving Example and Understanding the Solution
Image Processing in MATLAB to Reducing Quantization Levels | ADC 4.9
Rayleigh fading and Rician Fading Explained with Cricket Analogy
Properties of Fourier Transform with Proof and Examples | 5.10
Phase Lock Loop PLL for AM Carrier Acquisition | AM 2.10
DSBSC Double Sideband Suppressed Carrier Explained using Simulink | AM 2.3
Amplitude Modulation Explained Using AM Modulation Index & Power Efficiency | AM 2.4