Anadolu Info Package Anadolu Info Package
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Profile of the Programme Specific Admission Requirements Qualification Requirements and Regulations Recognition of Prior Learning Educational Staff Programme Director & ECTS Coord. Field Qualifications Key Learning Outcomes Course Structure Diagram with Credits Matrix of Program Outcomes&Field Qualifications Matrix of Course& Program Qualifications Examination Regulations, Assessment and Grading Graduation Requirements Access to Further Studies Occupational Profiles of Graduates
  • Open Education Faculty
  • Generation, Transmission And Distribution Of Electrical Energy
  • Course Structure Diagram with Credits
  • Power Systems Analysis
  • Content
  • Description
  • Content
  • Learning Outcomes
  • Learning Activities and Teaching Methods
  • Course's Contribution to Prog.
  • Assessment Methods

Weeks Topics
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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