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About the Programme Academic Staff Program Qualifications Lessons Matrix of Course & Program Qualifications Turkish Qualifications Framework (TQF) TQF & Program Qualifications
  1. Course Structure Diagram with Credits
  2. Power Systems Analysis
  3. Description
  • Description
  • Learning Outcomes
  • ECTS Credit Load
  • Course's Contribution to Program
  • Learning Outcomes & Program Qualifications
Last Updated: 22/10/2025

Code - Course Title Compulsory/Elective Laboratory + Practice ECTS
EİD207U - Power Systems Analysis III. SEMESTER 0 +0 6.0
Language of Instruction Türkçe
Course Type Required Courses
Course Instructor(s) DOÇ. DR. NESLİHAN ŞAHİN
Mode of Delivery Distance Education
Place of Delivery
Used Educational Platforms
Prerequisites There is no prerequisite or co-requisite for this course.
Courses Recomended It is suggested that EİD101U DEVRE ANALİZİ, EİD211U ELEKTRİK ENERJİSİ ÜRETİMİ, EİD201U ELEKTRİK MAKİNALARI ve EİD208U ELEKTRİK ENERJİSİ İLETİMİ VE DAĞITIMI have been taken.
Recommended Resources Ağalar Ş., \\\\\\\"Güç Sistemleri Analizi\\\\\\\", T. C. Anadolu Üniversitesi yayınları no. 2735 , Açıköğretim Fakültesi yayını no. 1696, 2012, 01/11/2012
Work Placement N/A
Aims of the Course

Weeks Learning Outcomes Topics Teaching Methods
Week - 1 basic concepts used in power systems, circuit equations
Week - 2 balanced three-phase circuits, power calculation at balanced three-phase systems, advantages of three-phase systems with respect to single phase systems
Week - 3 definition of symmetrical components, sequence circuits of impedance loads, sequence circuits for series impedances
Week - 4 sequence circuits of three-phase transmission lines, sequence circuits of rotating machines
Week - 5 per-unit sequence models of three phase two winding and three phase three winding transformers, power calculation at sequence circuits
Week - 6 ideal transformer, equivalent circuit of single phase practical trasformer, per-unit system, per-unit equivalent circuit of three-phase two winding transformer, three-phase transformers, auto-transformer
Week - 7 Midterm Exam
Week - 8 electrical networks, towers, cables
Week - 9 isolators, surge arresters, disconnectors, breakers
Week - 10 short and medium transmission line models, differential equations for transmission lines
Week - 11 equivalent pi circuit, lossless transmission lines, maximum power flow
Week - 12 linear algebraic equations, Gauss elimination, Jacobi and Gauss-Seidel method, Newton-Raphson method
Week - 13 Power flow problem, power flow solution with Gauss-Seidel method, power flow solution with Newton-Raphson method, fast decoupled power flow, control of power flow
Week - 14 Final Exam

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Assessment Method and Passing Requirements
Quamtity Percentage (%)
1.Midterm Exam 1 30
Final Exam 1 70
Toplam (%) 100

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