Approved. Dean of EPEF V.I.Denisenko Syllabus of Discipline
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1 Ministry of Education and Science of the Republic of Kazakhstan Noncommercial Joint-Stock Company "Almaty University of Power Engineering & Telecommunications" Electrical Power Engineering faculty Department of Electric Drive and Automation of Industrial Installations Approved Dean of EPEF V.I.Denisenko Syllabus of Discipline VSVEP 5206 The influence of strong external electromagnetic fields on the modes of operation of the secondary circuit of substations 6M Electrical engineering specialty (Profile magistracy) Course 1 Semester 2 Total credits 3 Total ECTS credits 5 Total contact hours 135 Including: Lectures 30 Practical training 15 Self-studying work of student (SWS) 90 Including SWS under supervision (SWSS) 30 3 CGW Exam Almaty, 2016.
2 Syllabus has been developed by D.Tech.Sc., professor Zhumagulov K.K. on the basis of the working program of discipline.. Syllabus has been and approved at the Electric drive and automation of industrial installations department meeting on, minutes No.. Head of department Sagitov P. I. Syllabus was considered and approved at academic commission meeting of Electrical Power Engineering faculty on, minutes No..
3 1 Instructor: Zhumagulov Kuanysh Kaltaevich D.Tech.Sc., professor. Office: building B, 301. Contacts: 8(727) , 2 Time and place of lessons of the course are shown in timetable. Schedule of SWSS consultation is shown on boards of EDAII department (B301) and Electrical Power Engineering Faculty (С 209). 3 Characteristics of discipline 3.1 Course purposes mastery of basic knowledge of electromagnetic compatibility in electric power industry, mastery of knowledge of the properties and characteristics of the s of the automated electric drive, the methods of calculation parameters, static and dynamic characteristics, the choice of its elements. 3.2 Course objectives study of electromagnetic compatibility in electric power industry, general physical laws of the actuator, the characteristics of the interaction of the elements of the electromechanical, the nature of dynamic processes. 3.3 Course description Discipline is designed for master students specialty "6M Electrical engineering " and aims to familiarize master students with the general laws of electromagnetic compatibility, electromechanical energy conversion, the structure and characteristics of various electric drive s, drive modes for different purposes. By the end of course «The influence of strong external electromagnetic fields on the modes of operation of the secondary circuit of substations» master student has to have conception about: - Methods of analysis of physical phenomena in technical devices and s; - The main means of computer technology and information technology. know: - The basic concepts and laws of electrical and electromagnetic phenomena; - The basic properties of equipment and construction materials; - The main equipment used in power supply s, and its parameters; - The scheme of electric networks and substations schemes; - Basic provisions of normative documents on the device and operation of electrical equipment and power supply s; be able to: - Identify the physical nature of the phenomena and processes; - To use the methods of mathematical analysis to solve complex engineering and technical problems; - Use computer technology in their professional activities. 3.4 Course prerequisites: non-linear and digital automatic control, modern problems of power engineering.
4 4 Structure and contents of course 4.1 Lectures (30 hours) of theme Theme Number of source 1 General concepts. Regulation and standardization in the field of EMC. (2 hours). 2 Electromagnetic interference sources and their origin (2 hours). 3 Modelling of periodic interference (2 hours). 4 Communication mechanisms and methods of its weakening (2 hours). 5 Channels transmitting electromagnetic interference. (2 hours). 6 Electromagnetic screens (2 hours) 7 The degree of transmission. Interference suppression (2 hours). 8 Technical means and organizational measures to ensure electromagnetic compatibility (2 hours). 9 Features of the electromagnetic environment (2 hours). 10 Determination of the electromagnetic environment. (2 hours). 11 The nature of electromagnetic interference in the power generation facilities (2 hours). 12 communication mechanisms and methods of weakening (2 hours). 13 Simulation of electromagnetic interference 14 Technical means and organizational measures to ensure electromagnetic compatibility (2 hours). 15 Features of the electromagnetic environment (2 hours). 4.2 Practical preparation Indicative list of laboratory works (15 hours) of theme Theme Number of source 1 Determination of electromagnetic environment at electric power facilities (2 hours). L. 1, 2 2 Electromagnetic environment in residential and office L.
5 buildings (2:00). 1, 2 3 The standard in the field of electromagnetic safety base (2 hours) L. 1, 2 4 Means and methods of measuring the parameters of the electromagnetic field (2 hours) L. 3, 4 5 Calculation of the electric field transmission line (2 hours) L. 3, 4 6 Monitoring and analysis of power quality in general purpose power supply s (2 hours) L. 1,2,3 7 Calculation methods of electromagnetic interference (3 hours) L. 1,2,3 4.3 Calculation and graphic works Calculation and graphic work 1. Theme: Calculation and determination of the electromagnetic environment at a power plant, which is approved by the head of enterprise.. Calculation and graphic work 2. Theme: EMC calculation between the radio-electronic means of wireless access and terrestrial stations in the fixedsatellite service civilian use networks in the band MHz. Calculation and graphic work 3. Theme: Accounting for transmission and electromagnetic interference receivers. 4.4 Subjects of self-studying of students (90 hours) 1. A discharge of static electricity 2. current switching in inductive circuits 3. Transients in low voltage networks 4. Transients in high voltage networks 5. Transients in testing devices of high voltage and electrical equipment 6. lightning electromagnetic pulse 7. The electromagnetic pulse of a nuclear explosion 8. Environmental classification on interference associated with the wires 9. Classification of environmental protection for the interference caused by electromagnetic radiation 10. The role of electric processes in the functioning of living organisms 11. The electromagnetic conditions in the workplace and at home 12. Mechanisms of exposure to electric and magnetic fields on living organisms 5 The list issues for midterm and final control 1. General concepts 2. Ensuring electromagnetic compatibility
6 3. Product specifications and parameters of technical means affecting the EMC 4. Electromagnetic Interference 5. Measurement equipment and instruments 6 Narrowband and broadband processes 7 antiphase and in-phase noise 8 Land and weight 9 Ways to describe the basic parameters and interference 10 Description of electromagnetic influences in the frequency and time domains 11 Submission of periodic functions of time in the frequency domain. The Fourier series 12. Representing non-periodic functions of time in the frequency domain. Fourier integral 13 Possible values ranges of electromagnetic interference 14. The spectra of some periodic and pulse processes 15 Accounting for transmission and EMI receivers 16 Sources of electromagnetic interference 17 Classification interferers 18 Initial level of noise in the cities 19. Car ignition device 20 Discharge lamps 21. The collector engines 22. Air Line High Voltage. The discharges of static electricity 23. The current switching in inductive circuits 24. Transients in low voltage networks 25. Transients in high voltage networks 26. Transients in testing devices of high voltage and electrical equipment 27. The lightning electromagnetic pulse 28. The electromagnetic pulse of a nuclear explosion 29 Environmental classification on interference associated with the wires 30 Classification of the environment for interference caused by electromagnetic radiation 6 Information on the assessment of achievements students 6.1 Grading The level of your achievements by the course graded according to grading scale of credit of education (table 1). Table 1 Assessment by Alphabet Point Indicate percentage mark Assessment by Traditional А 4, Excellent
7 А- 3, Excellent В+ 3, Good В 3, Good В- 2, Good С+ 2, Satisfactory С 2, Satisfactory С- 1, Satisfactory D+ 1, Satisfactory D- 1, Satisfactory F Fail Assessment of admission rating (AR) by you collects during the semester, and includes all types of academic work and midterm control. Each type of academic work evaluate on a 100-point scale and is included in the average rating of current controls (Aver), taking into account the weighting factor in accordance with Table 2. Table 2 Significance of each assignment in Aver Parameter Weight coefficient Work on practical lessons 0,4 CGW 0,3 Attendance at lectures 0,3 Total average grade of current control 1,0 (Aver) Midterm control (MC) carried out 2 times per semester (M1 and M2) and assesses by the teacher each on point scale. Admission rating calculated by PLATONUS information using next formula: M1 M 2 AR 0,2 Aver 0,8. 2 The final grade is derived as: F 0,6 AR 0,4 E. where E examination grade. 6.2 Grading politics: The maximum grades are rated with regular performance and high quality of work. Evaluation test grades and attendance at lectures are rated on basis of correct answers and number of missing lectures.
8 6.3 Transfer of grades in case of organization of academic mobility of students Transfer by ECTS grades (European Transfer System (translation) and credit accumulation) in the score-letter grade rating of evaluation of educational achievements of students of RK and back is carried out according to Tables 3 and 4. Table 3 - Translations into ECTS grades in the score-letter grade rating of educational achievements of students of RK evaluation. Assessment Assessment by ECTS by Alphabet Numeric equivalent of points Indicate percentage mark А А 4,0 100 Excellent В В+ 3,33 85 С В 3,0 80 Good D С 2,0 65 E D 1,0 50 FX, F F 0 0 Fail Assessment by Traditional Satisfactory Table 4 - Translation of assessment points-rating alphabetic of RK in assessment ECTS. Assessment by Alphabet Numeric equivalent of points Indicate percentage mark А 4, Assessment by Traditional Assessment by ECTS А- 3, Excellent А В+ 3, Good В В 3, В- 2, Good С+ 2, Satisfactory С 2, С- 1, D+ 1, Satisfactory D 1, Satisfactory E F Fail FX, F 7 Course policy: - not be late or miss classes; - closely monitor proposed teacher scenario of lessons actively participating in it; - work out laboratory classes missed for valid reasons (if available from the dean admission); - calculating-graphics work to protect submit no later than in the penultimate week of the semester; С D
9 - to raise level of knowledge. 8 Norms of academic ethics: - Discipline; - good manners; - benevolence; - Honesty; - responsibility; - Work in the classroom with disabled cell phones. Conflict situations should be openly discussed in study groups with a teacher, adviser, and at unsolvability of the conflict brought to the dean's office staff. List of references Main: 1. ЭМС и информационная безопасность в системах телекоммуникаций. Кечиев Л.Н., Степанов П.В. М.: Технологии Электромагнитная совместимость и молниезащита в электроэнергетике. Дьякова А.Ф. М.: Горячая линия-телеком 2009г. 3. Электромагнитная совместимость и молниезащита в электроэнергетике. Дьякова А.Ф., Максимов Б.К., Барисов Р.К. М.: Горячая линия-телеком 2011г. 4. Управление качеством электроэнергии. Ю.В. Шарова. М.: МЭИ 2006 г. 5. Управление качеством электроэнергии. Учебное пособие. Карташев И.И., Тульский В.Н., Ю.В. Шарова. М.: МЭИ 2008г. Additional: 6. Электрические машины переменного тока. Учебное пособие. АУЭС. Авторы Сагитов П.И., Жумагулов К.К., Тойгожинова Ж.Ж с. 7 Сборник задач по электрическим машинам. Под ред. Кацман С.С. - М.: Академия, 2008г. 320 с., ил. 8 Электрические машины. Лабораторные работы на ПК. Под ред. Герман-Галкин С.Г. СРБ.: Корона принт 2010.
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