5th Sem, EIE

Fundamentals of Signals & Dsp EIE 5th Sem Syllabus for VTU BE 2017 Scheme

Fundamentals of Signals & Dsp detail syllabus for Electronics & Instrumentation Engineering (Eie), 2017 scheme is taken from VTU official website and presented for VTU students. The course code (17EI52), and for exam duration, Teaching Hr/week, Practical Hr/week, Total Marks, internal marks, theory marks, duration and credits do visit complete sem subjects post given below.

For all other eie 5th sem syllabus for be 2017 scheme vtu you can visit EIE 5th Sem syllabus for BE 2017 Scheme VTU Subjects. The detail syllabus for fundamentals of signals & dsp is as follows.

Module 1

Introduction to Signals and Systems: Basic elements of a DSP System, Classification of Signals, Sampling Theorem (statement and problems on Nyquist rate), Discrete Time Signals (Representation, Standard Signals, Classification, and Operations), Discrete Time Systems, Convolution Sum, Cross correlation and Auto correlation of sequences. Text 1: 1.1.1, 1.2, 1.4.2, 2.1, 2.2, 2.3.3, 2.3.7, 2.6.1.

Module 2

For complete syllabus and results, class timetable and more pls download iStudy. Its a light weight, easy to use, no images, no pdfs platform to make students life easier.

Module 3

DFT: Properties and Applications: Definition and Problems on DFT & IDFT, DFT Properties – Periodicity, Linearity, Time Reversal, Circular Time Shift, Circular Frequency Shift, Circular Convolution, Multiplication of two DFTs & Circular Convolution, Parsevals Theorem, DFT in linear filtering. Introduction to FFT, 8-point DFT Computation using Radix-2 DIT-FFT & DIF-FFT methods only, relevant examples. Text 1: 7.1.3, 7.2, 7.3.1, 8.1.3.

Module 4

IIR& FIR Filters: IIR Filters: Low-pass filter specifications, IIR filter Design by Impulse Invariance & Bilinear Techniques, Design of Digital IIR filter by Butterworth approach, Examples. Magnitude response of lowpassChebyshev Type I, II filter (Theoretical concept only) FIR Filters: Design of FIR filters – Symmetric and Antisymmetric FIR filters, Design of Linear phase FIR filters by Rectangular Hamming &Hanning windows. Summary of window function characteristics (window shape, transition bandwidth, stop band attenuation, etc.). Implementation of FIR filters by direct form and Single-stage lattice structure only. Text 1: 10.3.2, 10.3.3, 10.3.4, 9.3.1, 9.3.3, 9.3.4, 10.2.1,10.2.2, 10.2.7, 9.2.1, 9.2.4

Module 5

For complete syllabus and results, class timetable and more pls download iStudy. Its a light weight, easy to use, no images, no pdfs platform to make students life easier.

Course Outcomes:

After studying this course, students will able to:

  1. Visualize, Classify and perform computation on discrete time signals, systems and properties
  2. Perform the transformation techniques from time domain to other and vice versa, and analyze the system and properties (Z-Transform, DFT etc.)
  3. Realize / implement the Direct/ cascade/ parallel/ lattice forms of the given digital system (IIR/ FIR)
  4. ComputeDFT by FFT algorithms
  5. Develop transformation from analog system to digital systemand design and implementIIR and FIR filters
  6. Demonstrate the advanced concepts of signal processing (Multirate and Adaptive filtering) and architecture of DSP processor

Question paper pattern:

  • The question paper will have TEN questions.
  • Each full question carry 16 marks
  • There will be TWO full questions (with maximum of THREE sub questions) from each module.
  • Each full question will have sub questions covering all the topics under a module.
  • The students will have to answer FIVE full questions, selecting ONE full question from each module.

Text Books:

  1. Dimitris G Manolakis, John G. Proakis, Digital Signal Processing: Principles, Algorithms, and Applications, 4th Edition, Pearson India, 2007.
  2. V.Udayashankara, Modern Digital Signal Processing, Third Edition, PHI 2016

Reference Books:

  1. Simon Haykin and Barry Van Veen Signals and Systems, John Wiley & Sons, 2nd edition
  2. S K Mitra, Digital Signal Processing, 4th Edition, McGraw-Hill, Year
  3. Avtar Singh, Digital Signal Processing Implementation, Brooks Cole

For detail syllabus of all other subjects of BE Eie, 2017 scheme do visit Eie 5th Sem syllabus for 2017 scheme.

Dont forget to download iStudy for latest syllabus and results, class timetable and more.

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