Course: Digital Signal Processing

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Course title Digital Signal Processing
Course code KE/ACSIP
Organizational form of instruction Lecture + Tutorial
Level of course Master
Year of study 1
Semester Winter
Number of ECTS credits 4
Language of instruction Czech
Status of course Compulsory-optional
Form of instruction Face-to-face
Work placements This is not an internship
Recommended optional programme components None
Lecturer(s)
  • Pidanič Jan, doc. Ing. Ph.D.
  • Němec Zdeněk, Ing. Ph.D.
  • Zálabský Tomáš, Ing. Ph.D.
Course content
1. Classification of signals (analog, digital, continuous, discrete, deterministic, random etc.) 2. Analog and discrete signals 3. Characteristics of analog and discrete signals 4. Elementary continuous and discrete signals (unit sample, unit step, real and complex exponential, sine, cosine 5. Spectral representation of signals (Fourier series, Fourier transformation) 6. DTFT, DFT 7. Bandpass signals I. - Hilbert transform 8. Bandpass signals II. 9. LTI - Analog systems I. 10. LTI - Analog systems II. 11. LTI - Discrete systems I. 12. LTI - Discrete systems II. 13. Random signals - characteristics

Learning activities and teaching methods
Monologic (reading, lecture, briefing)
Learning outcomes
Introduction to signal processing , Fourier series, Fourier transform, sampling process, discrete DFT, DTFT, FFT, linear time-invariant systems, effects of finite word lengths, random signals and their spectral analysis, examples of digital signal processing systems (audio, image, radar).
Students will have these base skills: Basic principle of digital signal processing Characteristic of signals Fourier series Fourie transform DTFT, FFT Analog and discrete systems Random signals
Prerequisites
Basic skills: mathematics (integral, derivation, function, series, etc.)

Assessment methods and criteria
Oral examination

Students need active interest in lessons, homeworks, etc.
Recommended literature
  • Mitra, S.,K. Digital Signal Processing. McGraw Hill, 2006.
  • Proaksis, J.,G., Manolakis, D., G. Digital Signal Processing (Fourth Edition). Prentica Hall, 2007.
  • Uhlíř, J., Sovka, P. Číslicové zpracování signálu. ČVUT.


Study plans that include the course
Faculty Study plan (Version) Category of Branch/Specialization Recommended year of study Recommended semester
Faculty: Faculty of Transport Engineering Study plan (Version): Electrical Engineering and Electronic Systems in Transport (2013) Category: Transportation and communications 1 Recommended year of study:1, Recommended semester: Winter
Faculty: Faculty of Transport Engineering Study plan (Version): Electrical Engineering and Electronic Systems in Transport (2016) Category: Transportation and communications 1 Recommended year of study:1, Recommended semester: Winter
Faculty: Faculty of Transport Engineering Study plan (Version): Electrical Engineering and Electronic Systems in Transport (2014) Category: Transportation and communications 1 Recommended year of study:1, Recommended semester: Winter