MECH 533 Automotive Electronics and Control SystemsMEF ÜniversitesiAkademik Programlar Mekatronik ve Robotik Mühendisliği (İngilizce) (Tezli)Öğrenciler için Genel BilgiDiploma EkiErasmus Beyanı
Mekatronik ve Robotik Mühendisliği (İngilizce) (Tezli)
Yüksek Lisans Programın Süresi: 2 Kredi Sayısı: 120 TYYÇ: 7. Düzey QF-EHEA: 2. Düzey EQF: 7. Düzey

Ders Genel Tanıtım Bilgileri

School/Faculty/Institute Graduate School
Course Code MECH 533
Course Title in English Automotive Electronics and Control Systems
Course Title in Turkish Otomotiv Elektroniği ve Kontrol Sistemleri
Language of Instruction EN
Type of Course Flipped Classroom
Level of Course Intermediate
Semester
Contact Hours per Week
Lecture: 3 Recitation: Lab: Other:
Estimated Student Workload 188 hours per semester
Number of Credits 7.5 ECTS
Grading Mode Standard Letter Grade
Pre-requisites None
Expected Prior Knowledge None
Co-requisites None
Registration Restrictions Only Graduate Students
Overall Educational Objective To learn and apply basic principles of Automotive electronics and autonomous driving concerns and trends
Course Description This course introduces electronic communication systems, sensors and control systems used in vehicles. Topics covered in this course: Electronic sensors and interfaces used in automotive, sensor data fusion methods, CAN Ethercat communication protocols used for in-vehicle data communication, automotive diagnostic systems.
Course Description in Turkish Bu ders otomotivde kullanılan elektronik haberleşme sistemleri, sensörler ve kontrol sistemlerini tanıtır. Ele alınan konular şunlardır: Otomotivde kullanılan elektronik sensörler ve ara birimleri, sensör veri birleştirme yöntemleri, taşıt içinde veri iletişimi için kullanılan CAN Ethercat haberleşme protokolleri, otomotiv tanı sistemleri.

Course Learning Outcomes and Competences

Upon successful completion of the course, the learner is expected to be able to:
1) Explain the fundamental electronic components used in automotive;
2) Interpret state of the art electronic hardware systems and communication networks in vehicles
3) Design the block diagram of an ECU;
4) Analyze environmental, safety, security, cost and reliability concerns for autonomous driving
5) Introduce an autonomous driving sub-system to a technical community.
Program Learning Outcomes/Course Learning Outcomes 1 2 3 4 5
1)
2)
3)
4)
5)
6)
7)
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Relation to Program Outcomes and Competences

N None S Supportive H Highly Related
     
Program Outcomes and Competences Level Assessed by
1) H
2) H
3) H
4) H
5) N
6) S
7) H
8) S
9) S
10) H
Prepared by and Date TUBA AYHAN ,
Course Coordinator TUBA AYHAN
Semester
Name of Instructor Dr. Öğr. Üyesi TUBA AYHAN

Course Contents

Hafta Konu
1) Introduction to ECU
2) Fundamental components of automotive
3) EE circuits
4) EE circuits
5) Microcomputer instrumentation and control
6) Sensors for driving
7) In Vehicle communications
8) Security issues in in-vehicle communications
9) Classification and concerns in autonomous vehicles and ADAS
10) Localization and Mapping
11) V2X communication
12) Object detection and tracking
13) Decision making for AV
14) EV fundamentals
15) Final Examination Period
16) Final Examination Period
Required/Recommended ReadingsUnderstanding automotive electronics: an engineering perspective, Ribbens, William B. Wilfried Voss - A Comprehensible Guide to Controller Area Network (2008) (Unmanned System Technologies) Mingfang Du - Autonomous Vehicle Technology_ Global Exploration and Chinese Practice-Springer (2022)
Teaching Methods
Homework and ProjectsEach week is supported by short term assignments, followed by a term report.
Laboratory Work
Computer UseMatlab, AUTOSAR and any other high level tools to analyze autonomous driving algorithms.
Other Activities
Assessment Methods
Assessment Tools Count Weight
Ödev 10 % 80
Projeler 1 % 20
TOTAL % 100
Course Administration

ECTS Student Workload Estimation

Activity No/Weeks Hours Calculation
No/Weeks per Semester Preparing for the Activity Spent in the Activity Itself Completing the Activity Requirements
Ders Saati 14 2 3 2 98
Proje 1 15 3 2 20
Ödevler 10 0 5 2 70
Total Workload 188
Total Workload/25 7.5
ECTS 7.5