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OF FACULTY of TECHNOLOGY / DEPARTMENT of ELECTRONICS and COMMUNICATION ENGINEERING /
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EHM4013Smart Grids2+0+0ECTS:4
Year / SemesterFall Semester
Level of CourseFirst Cycle
Status Elective
DepartmentDEPARTMENT of ELECTRONICS and COMMUNICATION ENGINEERING
Prerequisites and co-requisitesNone
Mode of Delivery
Contact Hours14 weeks - 2 hours of lectures per week
LecturerDr. Öğr. Üyesi Zeynep HASIRCI TUĞCU
Co-Lecturer
Language of instructionTurkish
Professional practise ( internship ) None
 
The aim of the course:
To gain experience about Smart grid concept, applications, standards, information and communication technologies (ICT) for the smart grid, quality of service (QoS) in smart grid, aims, challenges, and the future.of smart grid technology.
 
Learning OutcomesCTPOTOA
Upon successful completion of the course, the students will be able to :
LO - 1 : have information about the concept and requirements of smart grid.4,6,71,3,5,
LO - 2 : get an idea about the concept of smart grid and ICT.4,6,71,3,5,
LO - 3 : have an idea about the past&future and challenges of the smart grid.4,6,71,3,5,
LO - 4 : have knowledge and experience about the application of smart grid in generation, transmission and distribution systems.4,6,71,3,5,
LO - 5 : have an idea about the communication possibilities in smart grid4,6,71,3,5,
LO - 6 : make professional approaches with gained background.4,6,71,3,5,
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

 
Contents of the Course
Traditional (Conventional) grid and Structure, Operation, Challenges and Concept of Traditional Grid , Structure of Smart Grid, Smart Grid Requirements, Targets of Smart Grid, Concept of ICT, ICT for Smart Grid, Smart Grid System Requirements and Architectures, Quality of Service (QoS) requirements for Smart Grid, Generation Systems in Smart Grid, Alternative Energy Systems, Electric Vehicles, Transmission and Distribution Systems in Smart Grid, Smart Meters, Smart Houses, Smart Devices, Smart Grid Challenges and Future
 
Course Syllabus
 WeekSubjectRelated Notes / Files
 Week 1Traditional (Conventional) grid and Structure
 Week 2Operation, Challenges and Concept of Traditional Grid
 Week 3Structure of Smart Grid
 Week 4Smart Grid Requirements
 Week 5Targets of Smart Grid
 Week 6Concept of ICT
 Week 7ICT for Smart Grid
 Week 8Smart Grid System Requirements and Architectures
 Week 9Midterm exam
 Week 10Quality of Service (QoS) requirements for Smart Grid
 Week 11Generation Systems in Smart Grid
 Week 12Alternative Energy Systems, Electric Vehicles
 Week 13Transmission and Distribution Systems in Smart Grid
 Week 14Smart Meters, Smart Houses, Smart Devices
 Week 15Smart Grid Challenges and Future
 Week 16Final Exam
 
Textbook / Material
1Smart Grid: Technology and Applications, Janaka Ekanayake, Nick Jenkins, Kithsiri Liyanage, Jianzhong Wu, Akihiko Yokoyama, Wiley, 2012.
2Smart Grid: Fundamentals of Design and Analysis, James Momoh, Wiley-IEEE Press, 2012.
3Smart Power Grids 2011 (Power Systems), Ali Keyhani and Muhammad Marwali, Springer, 2012.
 
Recommended Reading
1Yenilenebilir Enerji Sistemlerinde Akıllı Şebeke Tasarımı, Ali Keyhani (Çev. Korhan Gerçek), Wiley-TMMOB Elektrik Mühendisleri Odası, 2013
 
Method of Assessment
Type of assessmentWeek NoDate

Duration (hours)Weight (%)
Mid-term exam 9 20
Presentation 12, 13, 14 10
Homework/Assignment/Term-paper 11 2 20
End-of-term exam 16 1.5 50
 
Student Work Load and its Distribution
Type of workDuration (hours pw)

No of weeks / Number of activity

Hours in total per term
Yüz yüze eğitim 2 14 28
Sınıf dışı çalışma 3 7 21
Arasınav için hazırlık 2 8 16
Arasınav 2 1 2
Ödev 4 6 24
Dönem sonu sınavı için hazırlık 2 6 12
Dönem sonu sınavı 2 1 2
Diğer 1 10 1 10
Diğer 2 5 1 5
Total work load120