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TR

SIGNALS AND SYSTEMS

Course
EEE321 - SIGNALS AND SYSTEMS
Department
Electrical - Electronic Engineering - English - Master
Course Type
Scientific Preparation
Status
Required
Language
English
Credit
0
ECTS
0
T+P+L
0 + 0 + 0
Course Coordinator(s)
-
Prerequisite
-
Keywords
-

Course Description

-

SIGNALS AND SYSTEMS

Evaluation Tools (Active Term)

Item Type Weight (%)
Midterm Midterm 35
Final Final 45
Lab Project 10
Quiz 1 Quiz 5
Quiz 2 Quiz 5
Total 100

Course outcomes

  1. 01 Identify the concepts of Discrete Time and Continuous Time signals and systems,
  2. 02 Compute and draw the Discrete Time and Continuous Time time-domain operations of signals,
  3. 03 Characterize systems depending on their properties.
  4. 04 Draw and analyze a systems block diagram.
  5. 05 Derive the output signal of a system for a given input.
  6. 06 Derive the transformation of signals from time domain to frequency domain or vica versa,
  7. 07 Implement signals and systems by using a numerical modelling software (MATLAB).

Course Syllabus

Week Topic
Week 1 Course introduction. Basic CT and DT signals, time-frequency domains introduction. Transformation of the independent variable, signal energy and power.
Week 2 Course introduction. Basic CT and DT signals, time-frequency domains introduction. Transformation of the independent variable, signal energy and power.
Week 3 Classification of Signals. Elementary Signals. Basic operations on signals.
Week 4 CT and DT systems. Basic system properties. Linear Time-invariant systems
Week 5 DT-LTI systems Convolution sum.
Week 6 CT-LTI systems convoltion integral.
Week 7 MIDTERM EXAMS
Week 8 Properties of LTI systems. Interconnection of LTI systems. Relations between LTI system properties and the impulse response.
Week 9 Difference and differential equation representations of LTI systems. Block diagram representations.
Week 10 Fourier representations for four classes of signals.
Week 11 Fourier representations for four classes of signals.
Week 12 Fourier representations for four classes of signals.
Week 13 Properties of Fourier Representations.
Week 14 Properties of Fourier Representations.
Week 15 -

Reference Books & Course Materials

  1. 01 Oppenheim, A. V., Willsky A. S. with Nawab, S. H., Signals & Systems, 2nd Edition, Prentice-Hall, 1997.
  2. 02 Simon Haykin & Barry Van Veen, Signals and Systems, 2nd edition, John Wiley & sons, Inc 2003.
  3. 03 Buck, J. R., Daniel, M. M. and Singer, A. C., Computer Explorations in Signals and Systems Using MATLAB, Prentice-Hall, 1997.
  4. 04 Kwakernaak, H., Sivan, R., Modern Signals and Systems, Prentice-Hall, 1991.

Learning Outcomes

  1. L01 Identify the concepts of Discrete Time and Continuous Time signals and systems,
  2. L02 Compute and draw the Discrete Time and Continuous Time time-domain operations of signals,
  3. L03 Characterize systems depending on their properties.
  4. L04 Draw and analyze a systems block diagram.
  5. L05 Derive the output signal of a system for a given input.
  6. L06 Derive the transformation of signals from time domain to frequency domain or vica versa,
  7. L07 Implement signals and systems by using a numerical modelling software (MATLAB).

Program Outcomes

  1. Based on master's-level qualifications, be able to develop and deepen current and advanced knowledge in the field at the level of expertise through original thinking and/or research, and achieve original conceptualizations that contribute innovation to the field.
  2. Should be able to comprehend the interdisciplinary interactions related to their field and employ specialized knowledge to analyze, synthesize, and evaluate new and complex ideas, leading to original conclusions.
  3. Should be able to systematically evaluate and apply new knowledge in their field.
  4. Should be able to develop innovative ideas, methods, designs, and/or applications that contribute to the advancement of the field, or apply existing ideas, methods, designs, and/or applications to a different field. Should be able to investigate, comprehend, design, adapt, and implement original research topics.
  5. hould be able to critically analyze, synthesize, and evaluate new and complex ideas.
  6. Should demonstrate advanced proficiency in the application of research methods in studies related to their field.
  7. Should be able to independently conduct original research that develops innovative ideas, methods, designs, and/or applications, or applies existing ideas, methods, designs, and/or applications to a different field, thereby contributing to the advancement of their field.
  8. Should be able to extend the frontiers of knowledge in their field by publishing at least one scientific article in a national and/or international peer-reviewed journal and/or by producing or critically interpreting an original work.
  9. Should be able to demonstrate leadership in addressing original and interdisciplinary problems within complex environments.
  10. Should be able to develop innovative ideas and methods in their field through the effective use of higher-order cognitive skills, including creative and critical thinking, problem-solving, and decision-making.
  11. Should be able to critically analyze and enhance social relationships and the norms that shape these relationships, and lead actions toward their transformation when necessary.
  12. Should be able to defend original viewpoints when discussing issues related to their field with experts and establish effective communication that demonstrates their expertise and competence in the field.
  13. Should be able to conduct advanced written, oral, and visual communication and participate in discussions using at least one foreign language at the C1 level of the European Language Portfolio.
  14. Should be able to contribute to the development and sustainability of a knowledge society by disseminating scientific, technological, social, and cultural advancements related to their field.
  15. Should be able to engage in effective interactions by employing strategic decision-making processes to address and solve problems encountered in their field.
  16. Should be able to contribute to solving social, scientific, cultural, and ethical issues related to their field and promote the advancement of these values.
  17. Based on master's-level qualifications, be able to develop and deepen current and advanced knowledge in the field at the level of expertise through original thinking and/or research, and achieve original conceptualizations that contribute innovation to the field.

Po-Lo Matrix

LO Average
L01 - - - - - - - - - - - - - - - - - -
L02 - - - - - - - - - - - - - - - - - -
L03 - - - - - - - - - - - - - - - - - -
L04 - - - - - - - - - - - - - - - - - -
L05 - - - - - - - - - - - - - - - - - -
L06 - - - - - - - - - - - - - - - - - -
L07 - - - - - - - - - - - - - - - - - -