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2011年度

369103 

○Advanced Electrical and Electronic Engineering Ⅰ(E)

2単位/Unit  春学期/Spring  京田辺/Kyotanabe  講義形式

  松川 真美 戸田 裕之 和田 元 井上 馨

<概要/Course Content Summary>

The course “Advanced Electrical and Electronic Engineering I” covers wide variety of fundamental principles necessary to comprehend research topics in Electrical and Electronic Engineering. Four lecturers give classes on selected topics from electrical power delivery system, optoelectronics, power electronics, and electrical/electronic measurement. Not only introducing fundamental topics, but mathematical methods based upon elementary circuit theory and electrodynamics equations deepen students understanding throughout the course. Students learn how to setup a simplified model out of a complicated electrical/electronic circuits, and recognize how devices measure electrical/electronic signals. They experience how measurement devices work during the class time.

<到達目標/Goals,Aims>

Students can write down equations to express behavior of a simple electrical circuit using complex variables after finishing the course. They will also be familiar to electronic test equipment.

<授業計画/Schedule>

(実施回/
Week)
(内容/
Contents)
(授業時間外の学習/
Assignments)
(実施回/ Week) (内容/ Contents) Introduction of the course. Review of elementary electricity and Magnetisms.  (授業時間外の学習/ Assignments) Prepare electric generators. 
(実施回/ Week) (内容/ Contents) Electrical power generation. Equivalent circuit of a generator connected to a load. Complex variable circuit analysis.  (授業時間外の学習/ Assignments) Prepare electrical energy storage 
(実施回/ Week) (内容/ Contents) Electrical power transmission. Propagation of electromagnetic wave. Lumped constant, and distributed constant circuits.  (授業時間外の学習/ Assignments) Prepare distributed power system 
(実施回/ Week) (内容/ Contents) Advanced power network system. Power conditioning and network circuit modeling  (授業時間外の学習/ Assignments) Report on power management system 
(実施回/ Week) (内容/ Contents) Introduction of optoelectronics. Principles of geometrical optics. Fermat’s law.  (授業時間外の学習/ Assignments) Summarize fundamental rules 
(実施回/ Week) (内容/ Contents) Electromagnetic radiation. Interference of light waves.  (授業時間外の学習/ Assignments) Summarize fundamental rules 
(実施回/ Week) (内容/ Contents) Diffraction phenomena. Index of refraction.  (授業時間外の学習/ Assignments) Summarize fundamental rules 
(実施回/ Week) (内容/ Contents) Lab experiment; An electronic circuit composed of a light emitting diode and a photodiode.  (授業時間外の学習/ Assignments) Report on optoelectronics 
(実施回/ Week) (内容/ Contents) Fundamentals of power electronics; Basic principles and applications  (授業時間外の学習/ Assignments) Prepare DC-DC converter circuits 
(実施回/ Week) 10  (内容/ Contents) Operation principles of DC-DC converter; Basic circuits and applications  (授業時間外の学習/ Assignments) Prepare inverter circuits 
 
(実施回/ Week) 11  (内容/ Contents) Operation principles of inverter circuit; Basic circuits and applications  (授業時間外の学習/ Assignments) Report on inverter converter circuits 
(実施回/ Week) 12  (内容/ Contents) Fundamentals of electrical and electronic measurements. Summary of basic knowledge.  (授業時間外の学習/ Assignments) Summarize multi meter usage 
(実施回/ Week) 13  (内容/ Contents) Measurement of voltage and current; Difference in analog and digital measurements  (授業時間外の学習/ Assignments) Summarize internal impedance 
(実施回/ Week) 14  (内容/ Contents) Electrical and electronic measurements with an oscilloscope.   (授業時間外の学習/ Assignments) Summarize usage of voltage probe 
(実施回/ Week) 15  (内容/ Contents) Measurement of time and frequency. Time and frequency standards. SI units.  (授業時間外の学習/ Assignments) Report on frequency standards 

The professor of the first class ask students of their familiarity to electromagnetic field calculation and electrical circuit theory.

<成績評価基準/Evaluation Criteria>

平常点(出席,クラス参加,グループ作業の成果等)  20%  Student’s performance during class time. 
期末レポート試験・論文  80%  Submit reports to four lecturers. 
クラスへの貢献度   

Plese ask your academic supervisor or regents professor.

<テキスト/Textbook>

B.M. Weedy, B.J. Cory , Electric Power Systems ,  4th edition .   (John Wiley & Sons, 1998) .  ISBN:0-471-97677-6 

 

 

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