HVDC and AC Transmission detail syllabus for Electrical & Electronics Engineering (EEE), 2021-22 scheme is taken from AKTUs official website and presented for the AKTU B.Tech students. For the course code (KEE072), exam duration, teaching hr/week, practical hr/week, total marks, internal marks, theory marks, duration, credits, and other details do visit complete semester subjects post given below.
For the EEE 7th Sem Syllabus for AKTU B.Tech 2021-22 Scheme you can visit EEE 7th Sem 2021-22 Scheme. For the Departmental Elective-4 scheme of EEE 7th Sem 2021-22 regulation do refer to Departmental Elective-4 EEE 7th Sem scheme. The detail syllabus for hvdc and ac transmission is as follows.
Pre-Requisites:
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Course Outcomes:
- Describe the comparison of EHVAC and HVDC transmission while understanding various issues related to transmission.
- Calculate and study the corona loss and its impacts. Cite examples of the causes of switching overvoltage, Ferro-resonance.
- Explain the generation and measurement circuits for impulse, high DC & AC voltages. While considering the design parameters evaluate the effect on the performance of the EHV lines.
- Classify the DC links and choice of converter configuration to investigate the impact of inductance on operation of converters and identify different control schemes as well as starting and stopping methods of DC links.
- Describe the converter faults, protections including MTDC types and applications.
Unit I
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Unit II
EHV AC Transmission: Corona loss formulas, corona current, audible noise -generation and characteristics corona pulses their generation and properties, radio interference (RI) effects, over voltage due to switching, ferro-resonance, reduction of switching surges on EHV system, principle of half wave transmission.
Unit III
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Unit IV
EHV DC Transmission – I: Types of dc links, converter station, choice of converter configuration and pulse number, effect of source inductance on operation of converters, working principle and characteristics of a 6 pulse converter with two & three valve conduction mode, three valve conduction mode and three and four valve conduction mode, Principle of DC link control, converter controls characteristics, firing angle control, current and excitation angle control, power control, starting and stopping of DC link.
Unit V
EHV DC Transmission – II: Converter faults, protection against over currents and over voltages, smoothing reactors, generation of harmonics, AC and DC filters, Multi Terminal DC systems (MTDC): Types, control, protection and applications.
Text Books:
- R. D. Begamudre, ‘Extra High Voltage AC Transmission Engineering’ Wiley Eastern.
- K. R. Padiyar, ‘HVDC Power Transmission Systems: Technology and System Reactions’ New Age International.
- J. Arrillaga, ‘High Voltage Direct Current Transmission’ IFFE Power Engineering Series 6, PeterPeregrinus Ltd, London.
- M. S. Naidu & V. Kamaraju, ‘High Voltage Engineering’ McGraw Hill.
Reference Books:
- M. H. Rashid,’Power Electronics: Circuits, Devices and Applications’ Prentice Hall of India.
- S. Rao, ‘EHV AC and HVDC Transmission Engineering and Practice’ Khanna Publisher.
- EPRI, Transmission Line Reference Book, 345 KV and above’ Electric Power Research Institute. PaloAlto, California, 1982.
For the syllabus of all the subjects of B.Tech EEE 7th Sem, 2021-22 scheme do visit EEE 7th Sem syllabus subjects.
For the complete syllabus, results, class timetable, and many other features kindly download the iStudy App
It is a lightweight, easy to use, no images, and no pdfs platform to make students’s lives easier.