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B.E. (Biomedical Engineering) Biomedical Signals and Systems Syllabus - Mumbai University

This is the Second Year Biomedical NEP 2020 syllabus under NEP 2020, in force from the academic year 2025-26. The University also publishes a REV-2019 'C' Scheme syllabus for these same two semesters, which is what ATKT candidates of the earlier batches sit. Check which scheme your examination form names before you revise.

Biomedical-Signals-Systems.pdf
Semester 3 · Second Year Biomedical NEP 2020 · 3 credits · 125 marks

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Syllabus for Biomedical Signals & Systems

Semester 3 · Second Year Biomedical NEP 2020 · 3 credits · 125 marks

Module 0: Pre- requisites

  • Basic knowledge of integration, summation, differentiation, limit, complex Numbers, physiological systems and signals.

Module I: Biomedical signals and systems

  • Biomedical signals: Problem Statement, Operations on time signals, Concurrent, Coupled, and Correlated Processes, Physiological systems

Module II: Discrete time signals and systems

  • Discretization of continuous time signals: Discrete time signals, Discrete time systems, Ensemble average and time average

Module III: Transforms in continuous and discrete signals processing

  • The Laplace transform: Properties of Laplace transform, Frequency response of LTI system, Pole zero plots, Frequency filters Phase shifts and time delays, Systems representation of physiological processes The Z-transform: Properties of z-transform, convolution in discrete time domain, time shift, pole zero plot in complex-z plane, The bilinear transform

Module IV: Discrete time signal processing

  • Decomposition of periodic signals, Fourier conversion, Aperiodic continuous signals-Fourier Transform, System transfer function, Discrete Fourier conversions: Periodic discrete time signals discrete Fourier series, Aperiodic discrete -Time signals-DTFT, properties of DTFT, Numerical implementation of Fourier conversion: DFT, Inter-relations among Fourier conversions

Module V: Discrete Fourier transform

  • Applying the discrete Fourier transform: Properties of DFT, windowing, The Fast Fourier Transform, Convolution using FFT circular convolution

Module VI: Random signal analysis

  • Discrete Fourier transform of random signals: Estimation the power spectrum: spectrum estimation by averaging periodograms Transfer function estimation or system identification

Text Books

  • 1 Suresh R. Devasahayam, Signals and systems in Biomedical Engineering: Signal processing and Physiological systems modelling, Kluwer Academic/Plenum Publishers, New York, Boston, Dordrecht, London, Moscow, 2000
  • 1 D C Reddy “Biomedical Signal Processing: Principles and Techniques”, Tata McGraw-Hill Publishing Co. Ltd, 2005
  • 2 R M Rangayyan “Biomedical Signal Analysis: A Case Based Approach”, IEEE Press, John Wiley & Sons. Inc, 2002
  • 3 Willis J. Tompkins, Biomedical Digital Signal Processing, Prentice Hall, Upper Saddle River, New Jersey 07458

Reproduced from the University of Mumbai syllabus for B.E. (Biomedical Engineering) under NEP 2020, in force from the academic year 2025-26. Wording is as printed in that syllabus. Module numbering is as printed there too.

The complete syllabus

This subject is cut from the University circular for its year. Open a document here if you want the whole thing rather than a single subject.

PDF 7.1 (R-A) B.E. (Biomedical Engineering) Sem I & II (Revised, NEP 2020) NEP 2020 syllabus Read full PDF Read
PDF 6.22 (N) B.E. (Biomedical Engineering) Sem III & IV (NEP 2020) NEP 2020 syllabus Read full PDF Read
PDF Item 139 B.E. (Biomedical Engineering) Second Year, Sem III & IV (REV-2019 'C' Scheme) REV-2019 'C' Scheme syllabus Read full PDF Read
PDF 6.1 B.E. (Biomedical Engineering) Third Year, Sem V & VI (REV-2019 'C' Scheme) REV-2019 'C' Scheme syllabus Read full PDF Read
PDF B.E. (Biomedical Engineering) Fourth Year, Semester VII (REV-2019 'C' Scheme) REV-2019 'C' Scheme syllabus Read full PDF Read
PDF B.E. (Biomedical Engineering) Fourth Year, Semester VIII (REV-2019 'C' Scheme) REV-2019 'C' Scheme syllabus Read full PDF Read
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