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TR

IOT FOR ENGINEERING

Course
ENGI416 - IOT FOR ENGINEERING
Department
Faculty of Engineering
Course Type
Course
Status
Required
Language
English
Credit
3
ECTS
5
T+P+L
2 + 0 + 2
Course Coordinator(s)
-
Prerequisite
-
Keywords

Course Description

This course is designed to explore the intricate world of Internet of Things (IoT) technologies with a focus on providing engineering students a comprehensive understanding from the ground up. Throughout the course, students will master IoT device programming, exploring different platforms, as well as analyzing sensing and actuating technologies. The course emphasizes networking principles, backhaul design strategies, and security enforcement relevant to IoT systems. Students will engage in practical assignments aimed at providing real-world experience. The projects include deploying a distributed Wi-Fi monitoring service and creating a cloud-based IoT service platform tailored for industrial settings. Upon completion of this course, students will gain a comprehensive understanding of IoT technologies and will be equipped to tackle challenges commonly encountered in industrial engineering environments.

IOT FOR ENGINEERING

Evaluation Tools (Active Term)

No evaluation items have been defined.

Course outcomes

No course outcomes have been defined yet.

Course Syllabus

Week Topic
Week 1 Getting to know students
Week 2 Introduction to IOT
Week 3 IOT application
Week 4 Basic Hardware and Software in IOT
Week 5 Arduino Simulation Environment
Week 6 Sensor & Actuators with Arduino
Week 7 IoT Protocols and applicationle
Week 8 Basic Networking with ESP8266 Wi-Fi modul
Week 9 ESP32- ESP free firmware
Week 10 Raspberry pi in IOT
Week 11 Platforms for IOT-NodeRed
Week 12 Factory Visit for project
Week 13 IOT database and data analyzing
Week 14 project presentaion
Week 15 project presentaion

Reference Books & Course Materials

No reference books have been listed.

Learning Outcomes

No learning outcomes have been defined.

Program Outcomes

  1. Should be able to write effective reports, understand written reports, and prepare design and production reports.
  2. Should have the ability to make effective presentations.
  3. Should have the ability to give and have clear and understandable instructions.
  4. Should gain consciousness (awareness) about the necessity of lifelong learning.
  5. Should have the ability to access information.
  6. Should have the ability to follow developments in science and technology and constantly renew himself/herself.
  7. Should gain the awareness of professional and ethical responsibility and should act in accordance with ethical principles.
  8. Should gain knowledge about the standards used in engineering applications.
  9. Should gain knowledge about project management, risk management, and change management practices in business life.
  10. Should gain awareness about entrepreneurship, and innovation.
  11. Should gain knowledge about development in sustainability.
  12. Should gain knowledge about the effects of engineering practices on health, environment, and security at universal and social dimensions and the problems of the age reflected in the field of engineering.
  13. Awareness should be gained about the legal consequences of engineering solutions.
  14. Should have sufficient knowledge in mathematics, science, and subjects specific to the relevant engineering discipline.
  15. Should have the ability to use theoretical and applied knowledge in mathematics, science, and related engineering disciplines in complex engineering problems.
  16. Should have the ability to detect, define, formulate, and solve complex engineering problems.
  17. Should have the ability to select and apply appropriate analysis and modeling methods to solve complex engineering problems.
  18. Should have the ability to design a complex system, process, device, or product to meet specific requirements under realistic constraints and conditions.
  19. Should have the ability to apply modern design methods.
  20. Should have the ability to develop, select, and use modern techniques and tools necessary for the analysis and solution of complex problems encountered in engineering applications.
  21. Should have the ability to use information technologies effectively.
  22. Should have the ability to design experiments, for the study of complex problems or discipline-specific research topics.
  23. Should have the ability to conduct experiments, collect data, analyze and interpret results for the study of complex problems or discipline-specific research topics.
  24. Should have the ability to work in intradisciplinary teams.
  25. Should have the ability to work in interdisciplinary teams.
  26. Should have the skills to work individually.
  27. Should have the ability to communicate effectively verbally and in writing.
  28. Should have the knowledge of at least one foreign language.

Po-Lo Matrix

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