munotes®

B.E. (Biomedical Engineering) Principles of Communication Engineering Abbreviated As PCE Syllabus - Mumbai University

This is the Third Year Biomedical Rev 2019 C Scheme syllabus under REV-2019 'C' Scheme, in force from the academic year 2021-22. The University has not yet published an NEP 2020 syllabus above Semester IV for this branch, and this is the scheme its examinations are set on.

Principles-of-Communication-Engineering-abbreviated-as-PCE.pdf
Semester 5 · Third Year Biomedical Rev 2019 C Scheme

Loading syllabus...

Syllabus for Principles of Communication Engineering (abbreviated as PCE)

Semester 5 · Third Year Biomedical Rev 2019 C Scheme

Module 1: Introduction to communication system and noise:

  • Elements of communication system, types of communication system Noise definition, types, signal to noise ratio, noise factor, noise figure, noise

Module 2: Amplitude Modulation Transmission and Receivers:

  • Definition, mathematical analysis of AM wave, different types of AM, spectrum, bandwidth, AM transmitter: high and low level AM transmitter, DSB and SSB transmitter (any one method) AM receiver: characteristics: sensitivity, selectivity, fidelity, double spotting, Image frequency and its rejection, dynamic range, super-heterodyne receiver, double conversion receiver

Module 3: Frequency Modulation Transmission and Receivers:

  • Principles of FM waveform, spectrum, bandwidth FM generation: direct and indirect FM transmitter Principles of AFC, effect of noise in FM, noise triangle, pre-emphasis and de FM Receivers: block diagram Types: simple slope detector, balanced slope detector, Foster Seeley discriminator, ratio detector, quadrature detector Capture effect in FM receivers, difference between AM and FM system

Module 4: Analog Pulse Modulation Techniques:

  • Analog modulation techniques: PAM, PWM, PPM – generation, detection, advantages, disadvantages.

Module 5: Digital Pulse Modulation Techniques:

  • Digital pulse modulation techniques: PCM, DPCM, DM and ADM generation, detection, advantages and disadvantages.

Module 6: Digital Transmission Techniques and Multiplexing:

  • Digital transmission types: ASK, FSK, PSK - generation, detection, advantages and disadvantages. Multiplexing techniques: concept of multiplexing, FDM, TDM, hierarchy, applications, advantages and disadvantages.

Text books

  • 1 Electronic communication system – Wayne Tomasi,Pearson Education
  • 2 Electronic communication system – Roy Blake, Thomson Learning
  • 3 Electronic communication system - Kennedy and Devis,TMH
  • 1 Digital and Analog communication system – Leon W Couch, Pearson Education
  • 2 Principles of communication system – Taub and Schilling ,TMH Theory Examination:

Reproduced from the University of Mumbai syllabus for B.E. (Biomedical Engineering) under REV-2019 'C' Scheme, in force from the academic year 2021-22. 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
Report or request
Done!