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Syllabus for Fall 2026  (Last update on 2026-07-14)

EECE575 Communication and Sensing Systems (3-0-3)/EECE575 통신 및 센싱 시스템 (3-0-3)

This is a flipped learning course mainly for the RAs affiliated with CISL. 

Office) LG 409

Phone) +82-54-279-2377

E-mail) jcho (at) postech dot ac dot kr

Office Hours: by appointment

It is your responsibility to check every new announcement posted in the homepage. Class notes will be available at Schedule/Downloads.

 

No textbook

준호, 디지털 통신 시스템: 변복조와 전력 스펙트럼, K-MOOC, 2017.

 

강의 영상: https://www.youtube.com/playlist?list=PL2fxOURY4wI4uMGCoPhk-7IHLqAutDzZ0

강의 슬라이드: http://cisl.postech.ac.kr/class/eece575/KMOOC2015/kmooc.htm

 

errata:

    Sorry about that in-phase baseband (IBB) and quadrature baseband (QBB) signals are mistakenly called in-phase and quadrature components in this recorded videos.

The course covers how to mathematically model and analyze the components of radio communication and sensing systems such as a baseband modem, a DAC, an I/Q modulator, an upconversion mixer, an RF chain, a power amplifier, an antenna, a pre-select filter, a low-noise amplifier, an image reject filter, a down-conversion mixer, a channel-select filter, an ADC, an I/Q demodulator. It also covers the structure and difference between a digital baseband and digital IF transceivers. Digitally modulated signals and their power spectra are studied. Channel models and simulators are covered.

  1. Fourier analysis
  2. Complex baseband representation of real bandpass signals
  3. Quadrature modulation vs. polar modulation
  4. I-Q modulator vs. Envelope tracking modulator
  5. Direct up-conversion vs. multi-stage up-conversion
  6. Nonlinear power amplifier
  7. Antennas
  8. Image-band problem and IR filter
  9. How to handle uncertainty in electrical signals
  10. Independence among random variables
  11. Correlation between random variables
  12. Real-valued Gaussian random variables
  13. Proper-complex Gaussian random variables
  14. CT random processes: Temporal characterization
  15. CT random processes: Spectral characterization
  16. Complex baseband representation of real-valued bandpass random process
  17. PSD
  18. Digitally modulated signals and their PSDs
  19. Digital baseband vs. digital IF modems
  20. Multirate signal processing
  21. (Channel Models and simulations)

* The italiced topics are not covered by the KMOOC course.

Undergraduate level: Calculus, Linear Algebra, Signals and Systems, Probability and Random Processes, Communications

Midterm Exam: 60 %

Final Exam: 20 %

HW:  20 %

If the instructor suspects academic dishonesty, the instructor will notify the student(s) and follow the procedure to report to the Graduate School without any exception. Students have the responsibility to be knowledgeable about the consequences of dishonesty.