3rd Year, ECE

EC602PC: Digital Signal Processing ECE Syllabus for B.Tech 3rd Year 2nd Sem R18 Regulation JNTUH

Digital Signal Processing detailed Syllabus for Electronics & Communication Engineering (ECE), R18 regulation has been taken from the JNTUH official website and presented for the students affiliated to JNTUH course structure. For Course Code, Subject Names, Theory Lectures, Tutorial, Practical/Drawing, Credits, and other information do visit full semester subjects post given below. The Syllabus PDF files can also be downloaded from the universities official website.

For all other ECE 3rd Year 2nd Sem Syllabus for B.Tech R18 Regulation JNTUH, do visit ECE 3rd Year 2nd Sem Syllabus for B.Tech R18 Regulation JNTUH Subjects. The detailed Syllabus for digital signal processing is as follows.

Pre-requisite:

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Course Objectives:

  1. To provide background and fundamental material for the analysis and processing of digital signals.
  2. To understand the fast computation of DFT and appreciate the FFT processing.
  3. To study the designs and structures of digital (IIR and FIR) filters and analyze and synthesize for a given specifications.
  4. To acquaint in Multi-rate signal processing techniques and finite word length effects.

Course Outcomes:

Upon completing this course, the student will be able to

  1. Understand the LTI system characteristics and Multirate signal processing.
  2. Understand the inter-relationship between DFT and various transforms.
  3. Design a digital filter for a given specification.
  4. Understand the significance of various filter structures and effects of round off errors.

Unit I

For the complete Syllabus, results, class timetable, and many other features kindly download the iStudy App
It is a lightweight, easy to use, no images, and no pdfs platform to make students’s lives easier.
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Unit II

Discrete Fourier series: Fourier Series, Fourier Transform, Laplace Transform and Z-Transform relation, DFS Representation of Periodic Sequences, Properties of Discrete Fourier Series, Discrete Fourier Transforms: Properties of DFT, Linear Convolution of Sequences using DFT, Computation of DFT: Over-Lap Add Method, Over-Lap Save Method, Relation between DTFT, DFS, DFT and Z-Transform.

Fast Fourier Transforms: Fast Fourier Transforms (FFT) – Radix-2 Decimation-in-Time and Decimation-in-Frequency FFT Algorithms, Inverse FFT.

Unit III

IIR Digital Filters: Analog filter approximations – Butterworth and Chebyshev, Design of IIR Digital Filters from Analog Filters, Step and Impulse Invariant Techniques, Bilinear Transformation Method, Spectral Transformations.

Unit IV

For the complete Syllabus, results, class timetable, and many other features kindly download the iStudy App
It is a lightweight, easy to use, no images, and no pdfs platform to make students’s lives easier.
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Unit V

Realization of Digital Filters: Applications of Z – Transforms, Solution of Difference Equations of Digital Filters, System Function, Stability Criterion, Frequency Response of Stable Systems, Realization of Digital Filters – Direct, Canonic, Cascade and Parallel Forms.

Finite Word Length Effects: Limit cycles, Overflow Oscillations, Round-off Noise in IIR Digital Filters, Computational Output Round Off Noise, Methods to Prevent Overflow, Trade Off Between Round Off and Overflow Noise, Measurement of Coefficient Quantization Effects through Pole-Zero Movement, Dead Band Effects.

Text Books:

  1. Discrete Time Signal Processing – A. V. Oppenheim and R.W. Schaffer, PHI, 2009
  2. Digital Signal Processing, Principles, Algorithms, and Applications: John G. Proakis, Dimitris G. Manolakis, Pearson Education / PHI, 2007.

Reference Books:

For the complete Syllabus, results, class timetable, and many other features kindly download the iStudy App
It is a lightweight, easy to use, no images, and no pdfs platform to make students’s lives easier.
Get it on Google Play.

For detail Syllabus of all other subjects of B.Tech 3rd Year Electronics & Communication Engineering, visit ECE 3rd Year Syllabus Subjects.

For all B.Tech results, visit JNTUH B.Tech all years, and semester results from direct links.

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