IoT System Implementation (5 cr)
Code: TTIW0200-3001
General information
- Enrollment
-
03.08.2020 - 30.08.2020
Registration for the implementation has ended.
- Timing
-
31.08.2020 - 18.12.2020
Implementation has ended.
- Number of ECTS credits allocated
- 5 cr
- Local portion
- 5 cr
- Mode of delivery
- Face-to-face
- Unit
- TA10 - IT-instituutti
- Campus
- Lutakko Campus
- Teaching languages
- Finnish
- Seats
- 0 - 32
- Degree programmes
- Bachelor's Degree Programme in Information and Communications Technology
- Teachers
- Lassi Partamies
- Groups
-
TTV19S1Tieto- ja viestintätekniikka
-
TTV19S3Tieto- ja viestintätekniikka
-
TTV19S2Tieto- ja viestintätekniikka
-
TTV19S5Tieto- ja viestintätekniikka
- Course
- TTIW0200
Evaluation scale
0-5
Objective
The students knows the most commonly used technologies and services in the implementation of IoT systems and is able to make the correct technological choices in the requirement specification of an IoT system. The student is able to apply his/her knowledge to practice in an IoT system designed by him/her. Additionally, the student recognizes the potential of IoT systems in the digital era.
Content
IoT sytem
• Requirement specification
• Implemented technologies
• Design based on requirement specification
• Implementation based on the design
Materials
Kirjallisuus on sidoksissa projektiin.
Teaching methods
Kurssi perustuu projektitöihin. Opiskelijat voivat muodostaa 1-4 opiskelijan ryhmiä projektin koon perusteella. Jokaisella opiskelijalla oltava selkeä rooli projektissa.
Exam schedules
Ei tenttiä. Arviointi perustuu tekemiseen
Completion alternatives
Projekti ei ole paikkaan sidottu.
Student workload
Projektin toteutus 135h
Assessment criteria, satisfactory (1)
Excellent 5: The student knows the most common technologies in IoT systems and is able to justify critically the implementation of the used technologies in various operating environments. He/she is able to validate critically and select the correct technologies for the design of a value chain based on requirement specifications. The student is also able to apply his/her technological knowledge into practice. Additionally, the student is able to assess critically his/her own implementation and based on this, validate its development.
Very good 4: The student knows the most commonly used technologies in IoT systems and is able to justify the implementation of used technologies in various operating environments. He/she is able to validate and select the correct technologies for the design of a value chain based on requirement specifications. The student is able to apply his/her technological knowledge into practice. Additionally, the student is able to assess his/her own implementation extensively and validate its development.
Good 3: The student knows the most commonly used technologies in IoT systems and is able to justify the implementation of the used technologies in certain operating environments. He/she is able to validate and select the correct technologies in a simple design of a value chain based on requirement specifications. The student is able to apply his/her technological knowledge into practice. Additionally, the student is able to assess, using versatile points of view, his/her own implementation and validate its development.
Satisfactory 2: The student knows the most commonly used technologies in IoT systems and is able to justify the implementation of the used technologies in simple operating environments. He/she is able to select the applicable technologies in a simple design of a value chain based on requirement specifications. The student is able to apply his/her technological knowledge into practice. Additionally, the student can assess his/her own implementation superficially.
Sufficient 1: The student knows the most commonly used technologies in IoT systems and is able to superficially validate the implementation of the used technologies in a simple operating environment. He/she is able to design a simple value chain and apply his/her technological knowledge into practice. Additionally, the student is able to assess his/her own implementation in a constricted way.
Fail 0: The student does not meet the minimum criteria set for course.
Qualifications
o Applies to degree students
The student must have basic knowledge of operating systems, data networks and programming.