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Showing posts with label EE 7th (VII) Semester syllabus. Show all posts
Showing posts with label EE 7th (VII) Semester syllabus. Show all posts
EE705- Industrial Training Syllabus Electrical Engineering(EE) 7th sem RGTU/RGPV Syllabus

EE705- Industrial Training Syllabus Electrical Engineering(EE) 7th sem RGTU/RGPV Syllabus

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RGTU/RGPV EC-705 Industrial Training Syllabus
RGTU/RGPV Industrial Training SYLLABUS
Electronics and Communication Engineering EC 7th Semester Syllabus

EC-705 Industrial Training Course Content:

Duration: 6 weeks after the VI semester in the summer break. Assessment in VII semester.

SCHEME OF EXAMINATION
For the assessment of industrial training undertaken by the students, following components are considered with respective weightage.

(A) Term work In Industry (Marks allotted)
1. Attendance and General Discipline (05)
2. Daily diary Maintenance (05)
3. Initiative and Participative attitude during training (05)
4. Assessment of training by Industrial Supervisor/s (15)
Total (30)
(B) Practical/Oral Examination (Viva-voce In Institution (Marks allotted)
1. Training Report (20)
2. Seminar and cross questioning (defense) (30)
Total (50)


Marks of various components in industry should be awarded to the student, in consultation with the Training and Placement  Officer (TPO)/ Faculty of the institute, who must establish contact with the supervisor/ authorities of the organization where, students have taken training, to award the marks for term work. During training, students will prepare a first draft of the training report in consultation with the section incharge. After training they will prepare final draft with the help of the TPO/ faculty of the institute. Then, they will present a seminar on their training and will face viva-voce on training in the institute.
EEEE704 Major Project  Syllabus Electrical Engineering(EE) 7th sem RGTU/RGPV Syllabus

EEEE704 Major Project Syllabus Electrical Engineering(EE) 7th sem RGTU/RGPV Syllabus

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RGTU/RGPV EE704 Major Project Syllabus
RGTU/RGPV Major Project (Planning & Literature Survey) SYLLABUS
Electrical Engineering EE 7th (VII) Semester Syllabus

EE704 Major Project (Planning & Literature Survey) Course Contents:

 The Major Project Work provides students an opportunity to do something on their own and under the supervision of a guide. Each student shall work on an approved project, which may involve fabrication, design or investigation of a technical problem that may take design, experimental or analytical character or combine element of these areas. The project work involves sufficient work so that students get acquainted with different aspects of manufacture, design or analysis.

The students also have to keep in mind that in final semester they would be required to implement whatever has been planned in the Major Project in this semester. It is possible that a work, which involves greater efforts and time may be taken up at this stage and finally completed in final semester, but partial completion report should be submitted in this semester and also evaluated by an external examiner. At the end of semester, all students are required to submit a synopsis.
EE7203 Generalised Theory of Electrical Machines Syllabus Electrical Engineering(EE) 7th sem RGTU/RGPV Syllabus

EE7203 Generalised Theory of Electrical Machines Syllabus Electrical Engineering(EE) 7th sem RGTU/RGPV Syllabus

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RGTU/RGPV EE7203 Generalised Theory of Electrical Machines Syllabus
RGTU/RGPV  Generalised Theory of Electrical Machines SYLLABUS
Electrical Engineering EE 7th (VII) Semester Syllabus

EE7203 Generalised Theory of Electrical Machines Course Contents:

Unit-I
Review : Primitive machine, voltage and torque equation. Concept of transformation change of variables & m/c variables and transform variables. Application to D.C. machine for steady state and transient analysis, and equation of cross field commutator machine.

Unit-II
Induction Machine : Voltage, torque equation for steady state operation, Equivalent circuit, Dynamic performance during sudden changes in load torque and three phase fault at the machine terminals. Voltage & torque equation for steady state operation of 1- ö induction motor & scharge motor.

Unit-III
Synchronous Machine : Transformation equations for rotating three phase windings, Voltage and power equation for salient and non salient alternator, their phasor diagrams, Simplified equations of a synchronous machine with two damper coils.

Unit-IV
Operational Impedances and Time Constants of Synchronous Machines: Park's equations in operational form, operational impedances and G(P) for a synchronous machine with four Rotor Windings, Standard synchronous machine Reactances, time constants, Derived synchronous machine time constants, parameters from short circuit characteristics.

Unit-V
Approximate Methods for Generator & System Analysis : The problem of power system analysis, Equivalent circuit & vector diagrams for approximate calculations, Analysis of line to line short circuit, Application of approximate method to power system analysis.

References:
  • P.C.Krause, Analysis of Electric Machinery.
  • B.Adkins, The General theory of Electrical Machines.
  • B.Adkins & R.G.Harley, The General theory of AC Machines.
  • P.S.Bhimbra, Generalised theory of Electrical m/c
  • White & Woodson, Electro Mechanical Energy Conversion.
EE7202 Calibration and Testing of Electrical Equipments Syllabus Electrical Engineering(EE) 7th sem RGTU/RGPV Syllabus

EE7202 Calibration and Testing of Electrical Equipments Syllabus Electrical Engineering(EE) 7th sem RGTU/RGPV Syllabus

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RGTU/RGPV EE7202 Calibration and Testing of Electrical Equipments Syllabus
RGTU/RGPV Calibration and Testing of Electrical Equipments SYLLABUS
Electrical Engineering EE 7th (VII) Semester Syllabus

EE7202 Calibration and Testing of Electrical Equipments Course Contents:

 Unit - I
Electricity Rules: Indian Electricity Rules, Indian Electricity Act, Electricity Supply Act.

Unit - II
Standards: Study of Various Indian Standards codes for various important electrical
equipments.

Unit - III
Installation & Commissioning : Installation & Commissioning of out door Indoor
electrical equipments like transformer, Motors, Switchgears, Panels, Relays, CT, PT,
Earthing etc.

Unit - IV
Testing: Testing of new & Old electrical installation as per IS of the following.
Transformer, Cables, Insulating Oil, Protective relays, Circuit Breakers, CT, PT, Meters,
Energy Meters, PVC insulated cables, High voltage Testing & Routing Test, Type test on
above.

Unit - V
Calibration : Calibration of meters, Energy meters, Relays, Circuit breakers, & other
equipments as per IS specification.

References:
M. Subbarao, Installation Commissioning & testing of Electrical Engineering Equipments, Khanna  pub. Jagdishlal, Hanbook of Electricity Laws, Delhi Law House.
I.S. Codes, Indian Standard codes, Indian Standard Institution, Nanak Bhavan, New Delhi.
IS 9283 - Submersible Motor
IS 325 - Induction Motor
IS 2071 - High Voltage Testing
IS 3156 - Potential Transformer
IS 2705 - Current Transformer
IS 1255 - Cables
IS 2026 - Power Transformer
IS 1866 - Transformer Oil
IS 694 - PVC insulated Cables
EE7201 High Voltage EngineeringSyllabus Electrical Engineering(EE) 7th sem RGTU/RGPV Syllabus

EE7201 High Voltage EngineeringSyllabus Electrical Engineering(EE) 7th sem RGTU/RGPV Syllabus

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RGTU/RGPV EE7201 High Voltage Engineering Syllabus
RGTU/RGPV High Voltage Engineering SYLLABUS
Electrical Engineering EE 7th (VII) Semester Syllabus

EE7201 High Voltage Engineering Course Contents:

Unit I  Breakdown in gases
Mechanisms of breakdown in gases, various related ionization processes. Townsends and streamer theories. Paschen’s law, Breakdown in Non-uniform fields. Effect of wave shape of impressed voltage on the breakdown strength. Breakdown of sphere gap arid rod gap.

Unit - II : Breakdown in liquid and solids
Mechanisms of breakdown in liquids, suspended particle, suspended water, cavitation and tubble and electronic breakdown theories. Mechanisms of breakdown in solids; intrinsic electro-mechanical, erosion, surface, thermal and streamer, Relation between electric strength of solids and time, intrinsic breakdown strength.

Unit - III: ; Impulse Generator
Specifications of an impulse voltage Wave, standard impulse, reasons for adopting the particular shape, Analysis and control of simple circuit of impulse generator. Multistage impulse generator (Marks circuit) circuit working, earthing arid tripping. Techniques to observe wave front on C.R.O.
Generation of High Voltage
Methods of generation of power frequency high voltage cascade transformers and resonance methods, Generation of high voltage d.c., voltage stabilization. Tesla coil.

Unit - Potential dividers-resistive
Potential dividers-resistive, capacitive and mixed dividers for high voltage. Sphere gap; construction, mounting, effect of nearby earthed objects, humidity and atmospheric conditions, effect of irradiation and polarity, Electrostatic voltmeter; principle and classification, constructional details of an absolute electrostatic voltmeter. Oscilloscopes and their applications in high voltage measurement.

Unit - I Breakdown in gases
Mechanisms of breakdown in gases, various related ionization processes. Townsends and streamer theories. Paschen’s law, Breakdown in Non-uniform fields. Effect of wave shape of impressed voltage on the breakdown strength. Breakdown of sphere gap arid rod gap.

Unit - II Breakdown in liquid and solids
Mechanisms of breakdown in liquids, suspended particle, suspended water, cavitation and tubble and electronic breakdown theories. Mechanisms of breakdown in solids; intrinsic electro-mechanical, erosion, surface, thermal and streamer, Relation between electric strength of solids and time, intrinsic breakdown strength.

Unit - III - Impulse Generator
Specifications of an impulse voltage Wave, standard impulse, reasons for adopting the particular shape, Analysis and control of simple circuit of impulse generator. Multistage impulse generator (Marks circuit) circuit working, earthing arid tripping. Techniques to observe wave front on C.R.O.
Generation of High Voltage
Methods of generation of power frequency high voltage cascade transformers and resonance methods, Generation of high voltage d.c., voltage stabilization. Tesla coil.

Unit - IV Measurement of High Voltage
Potential dividers-resistive, capacitive and mixed dividers for high voltage. Sphere gap; construction, mounting, effect of nearby earthed objects, humidity and atmospheric conditions, effect  of irradiation and polarity, Electrostatic voltmeter; principle and classification, constructional details of an absolute electrostatic voltmeter. Oscilloscopes and their applications in high voltage measurement.
Unit - V High Voltage Testing
Measurement of insulation resistance of cables. Wet and dry flashover test of insulators. Testing of insulators in simulated polluted conditions. Testing off transformers and rotating machines. Measurement of breakdown strength of oil. Basic techniques of non-destructive testing of insulators; measurement of loss angle, High Voltage Schering bridge, and partial discharge measurement techniques.
Over Voltage and Insulation Coordination
Lighting, Switching and temporary over voltages, BIL, SIL, methods of insulation coordination.

References:
  • L. V. Bewley, “Traveling Waves on Transmission Systems”, Wiley New York.
  • M. S. Naidu and V. Kamaraju,” High Voltage Engineering”, Tata McGraw Hill.
  • D.V. Razevig:” High Voltage Engineering”, translated by Dr.M.P. Chourasia, Khanna Publisher
  • Kuffel & Zingal, High Voltage Engg.
  • Kuffel & Abdullah, High Voltage Engg.
  • Measurement of insulation resistance of cables. Wet and dry flashover test of insulators.
  • Testing of insulators in simulated polluted conditions. Testing off transformers and rotating
  • machines. Measurement of breakdown strength of oil. Basic techniques of non-destructive
  • testing of insulators; measurement of loss angle, High Voltage Schering bridge, and partial
  • discharge measurement techniques.
  • Over Voltage and Insulation Coordination
  • Lighting, Switching and temporary over voltages, BIL, SIL, methods of insulation
  • coordination.
References:
  • L. V. Bewley, “Traveling Waves on Transmission Systems”, Wiley New York.
  • M. S. Naidu and V. Kamaraju,” High Voltage Engineering”, Tata McGraw Hill.
  • D.V. Razevig:” High Voltage Engineering”, translated by Dr.M.P. Chourasia, Khanna Publisher
  • Kuffel & Zingal, High Voltage Engg.
  • Kuffel & Abdullah, High Voltage Engg.
EE7103 Management Information System (MIS) Syllabus Electrical Engineering(EE) 7th sem RGTU/RGPV Syllabus

EE7103 Management Information System (MIS) Syllabus Electrical Engineering(EE) 7th sem RGTU/RGPV Syllabus

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RGTU/RGPV EE7103 Management Information System (MIS) Syllabus
RGTU/RGPV Management Information System (MIS) SYLLABUS
Electrical Engineering EE 7th (VII) Semester Syllabus

EE7103 Management Information System (MIS) Course Contents:

Unit-I : The meaning and role of MIS
What is MIS, Decision support systems, systems approach, The systems view of business, MIS organization within the Company. Management organizational theory and the systems approach:
Development of organizational theory, Management and organizational behavior, Management information and the systems approach.

Unit-II : Information systems for decision-making:
Evolution of an information system, Basic information systems, Decision making and MIS, MIS as technique for making programmed decisions, design assisting information systems. Strategic and project planning for MIS General business planning, app ropriate MIS response, MIS planning-general, MIS planning-details

Unit-III : onceptual System Design
Define the problems, Systems objectives, Establish system constraints, Determine information needs, Determine information sources, Develop alternative conceptual designs and select one, Document the system concept, Prepare the conceptual design report.
Detailed System Design
Information and involve the organization, arm of detailed design, Project management  of MIS detailed design. Identify dominant and trade off criteria define the subsystems, Sketch the detailed operating MIS systems and information flows, Determine the degree of automation of each operation, inform and involve the organization again, Inputs, Outputs and processing, early system testing, Software, Hardware and tools, propose an organization to operate the system, Document the detailed design., Revisit the manager user.

Unit-IV : Implementation, Evaluation and Maintenance of the MIS
Plan the implementation, Acquire floor space and plan space layouts organized for implementation, Develop procedures for implementation, Train the operating personnel, Computer related acquisitions, Develop forms for data collection and information dissemination, Develop the files, Test the system, Cut over, Document the system, Evaluate the MIS, Control and maintain the system. 

Unit-V : Pitfalls in MIS Development
Fundamental weaknesses, Soft spots in planning, Design problem, Implementation the TAR PITF.

References:
  • Murdick R.G., Russ J.B., Clagget J.R., Information Systems for modern management.
  • Effy OZ, Management Information Systems, 3rd edition, Thomson.
  • Jawadekar W.S., Management Information System.
  • Brien J.A.O., Irwin, Management Information Systems, McGraw Hill.
  • Dour’s G.B., Olson M.H., Management Information Systems, 2nd edition, McGraw Hill.
  • Thireramp R.J., Decision Support Systems for Effective Planning and Control, PHI.
  • Sadagopan S., Management Information Systems, 4th edition, Prentice-Hall of India.
  • Kanter J., Managing with Information, 4th edition, Prentice-Hall of India.
  • Ladon K.C., Landon, J.P., Management Information Systems, 4th edition, Prentice-Hall of India.