EC2314 Digital Signal Processing - Formulas - Steps to Solve problems (Scan Version)

  • 12Nov
  • 2012
  • 1
    20.7k
    Anna University
    Department of Electrical and Electronics Engineering


    Semester: V
    Year : 3rd Yr
    Department : B.E Electrical and Electronics Engineering
    Regulation : 2008
    Subject Code : EC2314
    Subject Name : Digital Signal Processing (DSP)
    Contents : EC2312 Digital Signal Processing - Formulas , Steps to solve problems, Important Topics (Unit wise - Include all 5 units)

    File size : 11mb

    Total Pages : 24

    Topics Included :
    Unit 1:
    Classification of Systems :
    • To check whether the given signal is continuous or Discrete Time System.
    • To check whether the given signal is static or dynamic system.
    • To check whether the given signal is casual or non-casual system.
    • To check whether the given signal is Linear or Non-Linear System.
    • To check whether the given signal is Time variant or Time Invariant System (Shift variant)
    • To check whether the given signal is Stable or unstable system.
    Classification of Signals
    Classification of Discrete Time Signal :
    • To check whether the given signal is Energy or Power signal.
    • To check whether the given signal is Periodic or Aperiodic signal.
    • To check whether the given signal is Symmetric or Antisymmetric signal.
    • To check whether the given signal is Causal or Non - Causal signal.
    Mathematical Representation of Signals.
    Spectral Density:
    • Shifting
    • Time Reversal
    • Time Scaling
    • Scalar Multiplier
    • Signal Multiplier
    • Addition Operation.
    Sampling Techniques:
    • Sample rate
    • Sample Period
    • Sample Frequency.
    Quantization
    Quantization Error
    Nyquist rate
    Aliasing effect


    Unit 2:
    Z-Transform
    Properties of Z-Transform
    Inverse Z-Transform :
    • Long Division Method
    • Partial Fraction Method
    • Residue Method
    • Convolution Method.
    Unit 3:
    DFT Properties
    DIT-FFT using radix-2 Butterfly structure.
    DIF-FFT using radix-2 Butterfly structure.
    IDFT

    Unit 4:
    IIR Realization:
    • Direct Form - 1 Realization
    • Direct Form - II Realization
    • Cascade Form Realization
    • Parallel Form Realization
    FIR Realization
    Transversal Structure
    Cascade Realization
    FIR Design using Windowing Techniques
    • Hanning Window
    • Hamming Window
    • Rectangular Window
    • Triangular Window or Bartlett window
    • Raised Cosine Window
    • Blackman Window
    Ideal Frequency Response

    IIR Desgin
    • Analog and Digital Filter
    Unit 5 :
    Introduction
    Architecture
    Addressing Modes
    Functional Modes and Instruction sets
    Introduction to commercial processor.

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    [Image: kvKIKa7.gif] Thanks for the DSP formula material