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EHM2004 | Signals and Systems | 3+1+0 | ECTS:4 | Year / Semester | Spring Semester | Level of Course | First Cycle | Status | Compulsory | Department | DEPARTMENT of ELECTRONICS and COMMUNICATION ENGINEERING | Prerequisites and co-requisites | None | Mode of Delivery | | Contact Hours | 14 weeks - 3 hours of lectures and 1 hour of practicals per week | Lecturer | Dr. Öğr. Üyesi Emin TUĞCU | Co-Lecturer | | Language of instruction | Turkish | Professional practise ( internship ) | None | | The aim of the course: | This course aims to provide Electrical and Electonics students with the basic mathematical concepts that useful for communications, circuit design, acoustics, biomedical engineering, energy generation and distribution systems, control, and speech processing. MATLAB based examples included in response to software developments, the wider availability of information technology, developments in the teaching of signal processing. |
Learning Outcomes | CTPO | TOA | Upon successful completion of the course, the students will be able to : | | | LO - 1 : | Understand basic signal properties. | 1,2,3,4 | | LO - 2 : | Analyse linear time invariant (LTI) systems in time domain. | 1,2,3,4 | | LO - 3 : | Analyse LTI systems in frequency domain. | 1,2,3,4 | | LO - 4 : | Understand the Laplace transform and analyse LTI systems in s domain. | 1,2,3,4 | | LO - 5 : | Understand the z transform and analyse LTI systems in z domain. | 1,2,3,4 | | LO - 6 : | Analyse LTI systems with random inputs. | 1,2,3,4 | | CTPO : Contribution to programme outcomes, TOA :Type of assessment (1: written exam, 2: Oral exam, 3: Homework assignment, 4: Laboratory exercise/exam, 5: Seminar / presentation, 6: Term paper), LO : Learning Outcome | |
Introduction. Classification of signals. Time domain analysis of Linear Time Invariant (LTI) Continuous Systems. Frequency domain analysis of Linear Time Invariant (LTI) Continuous Systems. s-domain analysis of Linear Time Invariant (LTI) Continuous Systems. Discrete Systems. Frequency domain analysis of Linear Time Invariant (LTI) Discrete Systems.z- domain analysis of Linear Time Invariant (LTI) Continuous Systems.Time domain analysis of Linear Time Invariant (LTI) Continuous Systems. Discrete systems. Continuous and discrete systems with random inputs. |
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Course Syllabus | Week | Subject | Related Notes / Files | Week 1 | Classification of Signals and Basic Signal Properties. | | Week 2 | Classification of Signals and Basic Signal Properties. | | Week 3 | Time Domain Models of Linear Time Invariant (LTI) Systems. | | Week 4 | Time Domain Models of Linear Time Invariant (LTI) Systems. | | Week 5 | Time Domain Models of Linear Time Invariant (LTI) Systems. | | Week 6 | Frequency Domain Models of LTI Sytems. | | Week 7 | Frequency Domain Models of LTI Sytems. | | Week 8 | Frequency Domain Models of LTI Sytems. | | Week 9 | Mid-term exam | | Week 10 | Frequency Domain Models of LTI Sytems. | | Week 11 | The Laplace Transform and s-Domain Models of LTI Systems. | | Week 12 | The Laplace Transform and s-Domain Models of LTI Systems. | | Week 13 | The z-Transform and z-Domain Models of LTI Systems. | | Week 14 | The z-Transform and z-Domain Models of LTI Systems. | | Week 15 | LTI Systems With Random Inputs. | | Week 16 | End-of-term exam | | |
1 | Oppenheim, A. V. ve A. S. Willsky, "Signals and Systems ", Prentice Hall Int., Inc. (Türkçesi Mevcut) | | |
1 | Hsu, H. ve H. P. Hse, "Schaum's Outline of Signals and Systems ", McGraw-Hill. | | |
Method of Assessment | Type of assessment | Week No | Date | Duration (hours) | Weight (%) | Mid-term exam | 9 | | 2 | 50 | End-of-term exam | 16 | | 2 | 50 | |
Student Work Load and its Distribution | Type of work | Duration (hours pw) | No of weeks / Number of activity | Hours in total per term | Yüz yüze eğitim | 4 | 14 | 56 | Sınıf dışı çalışma | 2 | 14 | 28 | Arasınav için hazırlık | 1 | 8 | 8 | Arasınav | 2 | 1 | 2 | Dönem sonu sınavı için hazırlık | 2 | 12 | 24 | Dönem sonu sınavı | 2 | 1 | 2 | Total work load | | | 120 |
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