CSE461 Internet of ThingsInstitutional InformationDegree Programs Software Engineering (English)Information For StudentsDiploma SupplementErasmus Policy StatementNational Qualifications
Software Engineering (English)

Preview

Bachelor TR-NQF-HE: Level 6 QF-EHEA: First Cycle EQF-LLL: Level 6

Course General Introduction Information

Course Code: CSE461
Course Name: Internet of Things
Course Semester: Fall
Course Credits:
ECTS
6
Language of instruction:
Course Requirement:
Does the Course Require Work Experience?: No
Type of course: Area Ellective
Course Level:
Bachelor TR-NQF-HE:6. Master`s Degree QF-EHEA:First Cycle EQF-LLL:6. Master`s Degree
Mode of Delivery: Face to face
Course Coordinator : Ar.Gör. MUHAMMED TAYYİP KOÇAK
Course Lecturer(s): Prof. Dr. Halis Altun
Course Assistants:

Course Purpose and Content

Course Objectives: Understanding IoT necessities including its architecture, protocols, and application areas.
Course Content: Understanding IoT components, IoT communication and applications, IoT communication protocols and applications, IoT and big data, IoT and cloud computing.

Learning Outcomes

The students who have succeeded in this course;
1) Understanding the components of IoT
2) Understanding the IoT communication and applications
3) Understanding the use of IoT communication protocols and applications including business models
4) Understanding the relation between IoT and big data.
5) Understanding the relation between IoT and cloud computing.

Course Flow Plan

Week Subject Related Preparation
1) Introduction to course none
2) Introduction to IoT none
3) Components of IoT none
4) Business Models of IoT none
5) IoT infrastructure none
6) Necessary technologies to develop IoT applications (RFID, NFC, BLE Beacon, WSN, GSM etc.) none
7) Midterm none
8) IoT application areas and IoT in industry none
9) IoT communication and its protocols (Restful, CoAP, MQTT, DDS, AMQP etc.) none
10) Security in IoT none
11) IoT and big data none
12) IoT and cloud computing none
13) IoT and advanced technologies none
14) Supplementary issues none

Sources

Course Notes / Textbooks: Hanes, D., Salgueiro, G. and P. Grossetete, IoT Fundamentals: Networking Technologies, Protocols, and Use Cases for the Internet of Things, 2017, 1st edition, Cisco Press.
References: Hanes, D., Salgueiro, G. and P. Grossetete, IoT Fundamentals: Networking Technologies, Protocols, and Use Cases for the Internet of Things, 2017, 1st edition, Cisco Press.

Course - Learning Outcome Relationship

No Effect 1 Lowest 2 Medium 3 Highest
       
Program Outcomes Level of Contribution
1) Sufficient knowledge in mathematics, science and software engineering discipline-specific topics; the theoretical and practical knowledge in these areas, the ability to use in complex engineering problems. 2
2) The ability to identify, formulate, and solve complex engineering problems; selecting and applying appropriate analysis and modelling methods for this purpose. 2
3) The ability to design a complex system, process, device or product under realistic constraints and conditions to meet specific requirements; the ability to apply modern design methods for this purpose. 3
4) Ability to develop, select and use modern techniques and tools necessary for analysis and solution of complex problems in engineering applications; ability to use information technologies effectively. 2
5) Ability to design experiments, conduct experiments, collect data, analyse and interpret the results of complex engineering problems or discipline-specific research topics. 2
6) Disiplin içi ve çok disiplinli takımlarda etkin biçimde çalışabilme becerisi; bireysel çalışma becerisi. 2
7) Awareness of the need for lifelong learning; access to knowledge, ability to follow developments in science and technology, and constant self-renewal. 2
8) Effective communication skills in Turkish oral and written communication; at least one foreign language knowledge; ability to write effective reports and understand written reports, to prepare design and production reports, to make effective presentations, to give clear and understandable instructions and to receive. 1
9) Conformity to ethical principles, professional and ethical responsibility; Information on standards used in engineering applications. 2
10) Information on practices in business, such as project management, risk management and change management; awareness about entrepreneurship, innovation; information on sustainable development. 2
11) Information on the effects of engineering applications on health, environment, and safety in universal and social dimensions, and on the problems of the modern age in engineering; awareness of the legal consequences of engineering solutions. 2
12) Adequate skills in the analysis, design, verification, evaluation, implementation, implementation, and maintenance of software systems 3

Learning Activity and Teaching Methods

Anlatım
Course

Measurement and Evaluation Methods and Criteria

Yazılı Sınav (Açık uçlu sorular, çoktan seçmeli, doğru yanlış, eşleştirme, boşluk doldurma, sıralama)

Assessment & Grading

Semester Requirements Number of Activities Level of Contribution
Midterms 1 % 40
Final 1 % 60
total % 100
PERCENTAGE OF SEMESTER WORK % 40
PERCENTAGE OF FINAL WORK % 60
total % 100

İş Yükü ve AKTS Kredisi Hesaplaması

Activities Number of Activities Aktiviteye Hazırlık Aktivitede Harçanan Süre Aktivite Gereksinimi İçin Süre Workload
Course Hours 14 2 28
Application 14 2 28
Homework Assignments 3 25 75
Midterms 1 25 25
Final 1 30 30
Total Workload 186