Electrical Power Utilization & System Protection detailed syllabus for Electrical & Electronics Engineering (EEE) for 2015 revision curriculum has been taken from the SITTTRs official website and presented for the EEE students. For course code, course name, number of credits for a course and other scheme related information, do visit full semester subjects post given below.
For Electrical & Electronics Engineering 6th Sem scheme and its subjects, do visit EEE 6th Sem 2015 revision scheme. The detailed syllabus of electrical power utilization & system protection is as follows.
Course Outcomes:
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Specific Outcome:
MODULE I Fuse and Circuit Breakers
- To define fuse.
- To define important terms for the analysis of fuses.
- To describe the factors effecting current carrying capacity of fuse elements.
- To describe inverse current characteristics of fuse.
- To state advantages and disadvantages.
- To explain the classifications of fuses.
- To explain the constructions of HRC.
- To describe the working of HRC fuses.
- To describe the selection of HRC fuses.
- To state the advantages and disadvantages of fuse.
- To define circuit breaker (CB).
- To explain the arc phenomena and arc extinction.
- To describe the terms associated with circuit breaking.
- To describe the Classification of CB.
- To describe the working principle of oil CB.
- To explain the Air blast CB.
- To explain the principle and operation of SF6 CB
- To explain the principle and operation of vacuum CB
- To define CB ratings.
- To explain the difference between fuse and CB
MODULE -II Protective Relays and Protection
- To define protective relays.
- To State the basic requirements of protective relaying.
- To describe the typical time current characteristics.
- To explain the principles involved in obtaining Inverse time characteristics of relays.
- To explain the principles involved in Inverse definite minimum time lag.
- To explain the principle involved in different time settings.
- To classify the relay based on construction.
- To explain the relay based on principles of operation.
- To explain the relay based on time of operation.
- To explain the principles of operation & applications of the attracted armature type relays and solenoid plunger type relays.
- To describe the construction and principle of operation of an induction type over current relay.
- To explain the working of directional over current relay
- To explain the construction and operation of distance relay.
- To explain the primary and back up protection.
- To explain the differential protection of alternators.
- To explain the earth leakage protection of alternators.
- To explain the Merz – Prize protection of 3 phase transformers.
- To describe the working of Buchholz relay.
- To describe the Protection of bus bars.
- To explain the various protections of transmission lines.
- To explain the apparatus used in power stations and sub stations.
- To explain the protection by ground wires.
- To describe different protection methods used against lightning.
- To explain operation of the Lightning arrester.
- To describe thyrite types lightning arresters.
- To State the soil resistivity.
- To explain how the soil resistivity is measured.
- To explain different methods of neutral earthing
MODULE III Lighting, Heating, Welding and Electrolysis
- To state modes of heat transfer
- To list the advantages of electric heating
- To list the requirements of good heating material
- To explain with sketches
- Direct resistance heating
- Indirect resistance heating
- To state the Industrial application of the direct & indirect resistance heating.
- To explain direct arc furnace & indirect arc furnace with diagram.
- To explain the principle of operations of low and high frequency induction furnaces.
- To explain the principle of operations of core type and core less type induction furnaces.
- To explain the principle of dielectric heating.
- To list the industrial applications of the dielectric heating.
- To state different types of Electric welding.
- To explain the principles and applications of
- Spot
- Seam
- butt welding.
- To explain the characteristics of a welding generator.
- To explain with sketch the principle of operation of welding transformer used with a reactance coil.
- To describe the process of electrolysis.
- To state the Faraday’s laws of electrolysis.
- To explain the field of applications of electrolysis.
- To understand the lighting applications of electricity.
- To explain the main lighting loads.
- To describe the main objects of street lighting.
- To explain the various flood lighting schemes.
- To compute simple problems.
MODULE IV Electric Traction
- To state the advantage of Electric drives.
- To list the factors governing the selection of motors.
- To classify the electric drives.
- To state the advantages and disadvantages of group drive.
- To state the advantages and disadvantages of individual drive.
- To explain different systems of traction.
- To state the advantages of electric traction.
- To state the importance of the speed time curves.
- To state each stage of the speed time curve.
- To sketch the simplified speed time curve and derive the relation.
- To explain the Practical importance of the above curves.
- To solve the simple problems using speed time curves.
- To explain the meaning of traction effort.
- To explain the term specific energy consumption.
- To derive the formula for energy output of drive axles in accelerations;
- To overcome friction.
- To overcome gradient.
- To list the factors affecting specific energy consumption.
- To state the important requirements of traction motor.
- To explain the suitability of motors for electric traction DC series motor or series motor.
- To state the advantages of electric braking.
- To explain the methods of electric braking;
- Plugging.
- Regenerative.
- Rheostatic.
- To state the method of regenerative braking of DC shunt motor, DC series motor and 3-phase induction motor.
- To explain the method of Rheostatic braking on DC shunt motor and series motor
MODULE – I
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MODULE- II
Bus-bar protection- different protection- fault bus protection – protection of lines- time graded over current protection- differential protection-distance protection. Protection against over voltage – voltage surge- causes of over voltages (internal of external causes). Lightning – protection against lightninglightning arresters – rod gap arresters – horn gap arresters – surge absorber- neutral groundingequipment grounding- advantages of neutral grounding- methods of neutral grounding- solid grounding – resistance grounding- reactance grounding- voltage transformer earthing.
MODULE- III
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MODULE- IV
Electric drive definitions- components of electric drive- block diagram- advantages- selection of drive- -factors governing the selection of motor- nature of drive- group drive- industrial drive- applications-advantages and disadvantages. Traction definition- different types of traction- electric supply for traction- speed time curve- importance of speed time curve- comparison- main line service- urban- sub urban service- different terms- average speed- scheduled speed- crest speed- simplification of speed time curve – simple problems – traction effort- specific energy consumption – derivation- energy output at drive axles- friction and gradient.
Reference Books:
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..
For detailed syllabus of all other subjects of Electrical & Electronics Engineering, 2015 revision curriculum do visit EEE 6th Sem subject syllabuses for 2015 revision.
To see the syllabus of all other branches of diploma 2015 revision curriculum do visit all branches of SITTTR diploma 2015 revision.