Course Title : CONVENTIONAL ELECTRICAL POWER GENERATION Course Code : 1EE301

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1 GANPAT UNIVERSITY INSTITUTE OF TECHNOLOGY (DIPLOMA-DEGREE SIX YEAR DUAL DEGREE INTEGRATED COURSE) GANPAT UNIVERSITY, MEHSANA [ ] COURSE CURRICULUM OF DIPLOMA PROGRAMME Course Title : CONVENTIONAL ELECTRICAL POWER GENERATION Course Code : 1EE301 Learning Outcomes : Upon completion of this course, students will acquire knowledge about to: Maintain the various generating and auxiliary equipments of power plants. Operate various control equipment in normal and abnormal conditions. Interpret the flow diagram/line diagram related to power generation Syllabus : Unit Topics No. 1. Thermal Power Station 1.1 Energy conversion process for thermal power station with plant layout 1.2 Selection criteria for site of thermal power station 1.3 Line diagram of thermal power station (TPS); Different cycles of TPS 1.4 Major equipment and auxiliaries of TPS 1.5 Load curve and load duration curve 1.6 Base load and peak load power plants 1.7 Pollution generated by thermal power stations and methods to reduce them. 1.8 Major TPS in Gujarat 2. Hydro Power Station 2.1 Energy conversion process for hydropower station (HPS) with plant layout 2.2 Selection of site for HPS site 2.3 Major features of HPS 2.4 Classification of HPS: based on head, Storage and pondage, Plant Layout, types of hydro turbines; Auxiliaries 2.5 Difference between Generators for Thermal Plant and Hydro Plants. 2.6 Advantages of Hydro Power Plants and their effect on ecology/environment 2.7 Hydro power stations in Gujarat 3. Nuclear Power Station 3.1 Energy conversion process for NPS: Nuclear fusion and fission, Chain reaction 3.2 Selection of site for NPS 3.3 Working of nuclear power station

2 3.4 Various types of reactors 3.5 Special precautions for NPS 3.6 Advantages and disadvantage of NPS 3.7 Nuclear power stations in Gujarat Text Books 1. V.K. Mehta, Electrical Power system, S. Chand 2. S.L. Uppal, Electrical Power, Khanna publication 3. P K Nag Power plant Engineering, Tata McGraw Hill

3 GANPAT UNIVERSITY INSTITUTE OF TECHNOLOGY (DIPLOMA-DEGREE SIX YEAR DUAL DEGREE INTEGRATED COURSE) GANPAT UNIVERSITY, MEHSANA [ ] COURSE CURRICULUM OF DIPLOMA PROGRAMME Course Title : FUNDAMENTALS OF DC MACHINES AND TRANSFORMER Course Code : 1EE302 Learning Outcomes : Upon completion of this course, students will acquire knowledge about to: Operate D.C. Machines and Transformers by himself as per Industrial needs. Able to Perform and check the given specifications, performing acceptance test of D.C. machines and transformers. Syllabus : Unit Topics No. 1. D.C. GENERATOR 1.1 Principle of working, construction and types. 1.2 Materials used for different parts. 1.3 Simple lap and wave winding. 1.4 Armature reaction & commutation. 1.5 Performance characteristic of different types of Generator. 1.6 Losses & efficiency. 2. D.C. MOTOR 2.1 Principle of working and types. 2.2 D.C. Motor Starter & grading. 2.3 Performance characteristics of D.C. motor. 2.4 Speed control of D.C. motor. 2.5 Losses & efficiency. 2.6 Testing, brake test and Swinburn test. 2.7 Applications of D.C. motors. 3. SINGLE PHASE TRANSFORMER 3.1 Principle of working, construction and types. 3.2 No load and on load vector diagrams. 3.3 Regulation, losses & efficiency. 3.4 O.C. & S.C. and Sumpner test. 3.5 Equivalent circuit.

4 3.6 Auto transformer. 3.7 Instrument transformer CT and PT 4. POLY PHASE TRANSFORMER 4.1 Construction and types of connection of 3-phase transformer. 4.2 Comparison of a bank of 3 No. single phase transformer and a three phase transformer. 4.3 Parallel operation of 3-phase transformer. 4.4 Accessories of transformer. Text Books 1. B.L. Theraja, Electrical Technology Vol-II, S. Chand 2. M.V. Despande, Electrical Machines PHI Learning 3. S.L. Uppal Electrical Technology, Khanna Publication 4. I.J. Nagrath and D.P. Kothari, Electrical Machine, Tata McGraw Hill 5. J. B Gupta, Electrical Machine-I Kataria & Sons

5 [ ] GANPAT UNIVERSITY INSTITUTE OF TECHNOLOGY (DIPLOMA-DEGREE SIX YEAR DUAL DEGREE INTEGRATED COURSE) GANPAT UNIVERSITY, MEHSANA COURSE CURRICULUM OF DIPLOMA PROGRAMME Course Title : BASIC ELECTRONICS Course Code : 1EE303 Learning Outcomes : Upon completion of this course, students will acquire knowledge about: To make aware about analog electronics. To familiarize with the applications of solid state devices. To understand basic electronic equipment and its function. Syllabus : Unit Topics No. 1. INTRODUCTION TO SEMI CONDUCTORS 1.1 (a) Electronic emission (b) work function (c) electron volt. 1.2 Different electron emission methods. 1.3 Distinguish between semiconductors, conductors and insulators. 1.4 Intrinsic and Extrinsic semiconductors. 2. DIODES AND APPLICATIONS 2.1 Biasing the P-N Junction and its effects on depletion layer. 2.2 V-I Characteristics of P-N Junction diode. 2.3 Diode as a rectifier. 2.4 Working of single-phase half wave, full-wave and bridge rectifier with input and output wave forms. 2.5 Derivation of the Average value of current of half-wave and full-wave output. 2.6 Significance of PIV. 2.7 Need and types of filters. 2.8 Zener diode : Symbol, construction, characteristics and working of Zener diode. 2.9 Symbol, construction, working and applications of 1. L.E.D. 2. Photo diode 3. BIPOLAR JUNCTION TRANSISTOR

6 3.1 Symbols, construction and working of PNP and NPN Transistor. 3.2 Transistor characteristics in 1. Common collector 2. Common base 3. Common emitter configuration. 3.3 Relationship between Alpha and Beta. 3.4 The need of biasing for the working of a transistor. 3.5 Methods of biasing. 1. fixed base bias, 2. collector to base, 3. emitter resistance and 4. potential divider - voltage divider. 3.6 Specification, coding, testing of resistor, capacitor, diode and transistor using color code chart, data sheet and multimeter. 4. SPECIAL SEMICONDUCTING DEVICES Construction, Characteristic and applications of; 4.1 FET and MOSFET 4.2 UJT 4.3 SCR 4.4 DIAC and TRIAC 5. VOLTAGE AND POWER AMPLIFIER 5.1 Transistor as an amplifier. 5.2 Need of cascading of amplifier. 5.3 Methods of cascading amplifiers. 5.4 Frequency response of an R-C coupled amplifier. 5.5 Concept of power amplifier. 5.6 Classification of power amplifiers on the basis of power handling efficiency, conduction angle and distortion. 5.7 Class - B push-pull amplifier 6. SIMPLE CIRCUIT USING IC 6.1 Need of I.C. 6.2 Operational amplifier (OPAMP). 6.3 Characteristic and specification of OPAMP- IC IC 555 timer and applications 6.5 Block diagram of IC555 time Terminal Fixed/variable voltage regulator: 78xx, 79xx, LM317 Text Books 1. V.K. Mehta, Principle of Electronics, S.Chand, 2. Albert Malvino, Electronics Principles, TMH 3. Ramakant Gayakwad, Opamp and Linear integrated circuits, PHI

7 [ ] GANPAT UNIVERSITY INSTITUTE OF TECHNOLOGY (DIPLOMA-DEGREE SIX YEAR DUAL DEGREE INTEGRATED COURSE) GANPAT UNIVERSITY, MEHSANA COURSE CURRICULUM OF DIPLOMA PROGRAMME Course Title : ELECTRICAL MEASUREMENTS Course Code : 1EE304 Learning Outcomes : Upon completion of this course, students will acquire knowledge about to: Know the operation of various measuring instruments. Use, calibrate and maintain different types of electrical instrumentation systems. Understanding of the construction, material used and principle of operation of various types of measuring instruments. Syllabus : Unit Topics No. 1. FUNDAMENTALS OF MEASUREMENTS 1.1 Fundamentals of measurements 1.2 Aims of measurement 1.3 Definition of basic terms related to measurement 1.4 Types & sources of error 2. POTENTIOMETERS & BRIDGES 2.1 D.C. potentiometer, principle, working and list of applications. 2.2 Dial type potentiometer, construction and working 2.3 Wheatstone bridge, Kelvin s double bridge and Wien bridge for resistance measurement. 2.4 Universal impedance bridge 2.5 Balanced and unbalanced bridges. 2.6 Self balancing bridges. 3. ELECTROMECHANICAL INSTRUMENTS 3.1 Classification of instruments. 3.2 Essential torques in indicating instruments. 3.3 Construction, working, common errors and applications of 1. P M M C instrument 2. Moving iron instrument

8 3. Dynamometer type watt meter 4. Energy meter (single phase, three phase) 5. P.F. meter 6. Trivector meter 7. Maximum demand meter 8. Megger 9. Earth tester 10. Phase sequence indicator 11. Analog multimeter 12. Solid state energy meter 13. Clip-on meter 3.4 Extension of range of measuring instruments using shunt, multipliers and C.T and P.T. 4. CALIBRATION & TESTING 4.1 Need for calibration. 4.2 Calibration of ammeter, Watt meter and voltmeter as per I.S. 4.3 Calibration of single phase energy meter and its adjustments as per I.S. code. Text Books 1. A.K. Sawhney, Electrical and Electronic instruments Dhanpat Rai Publication 2. M.U. Reissland, Electrical Measurements: fundamentals, concepts, applications New Age International Publication 3. J.B. Gupta, A course in electronics & electrical measurement & instrumentation S.K. Katariya

9 GANPAT UNIVERSITY INSTITUTE OF TECHNOLOGY (DIPLOMA-DEGREE SIX YEAR DUAL DEGREE INTEGRATED COURSE) GANPAT UNIVERSITY, MEHSANA [ ] COURSE CURRICULUM OF DIPLOMA PROGRAMME Course Title : COMPUTER AIDED ELECTRICAL DRAWING & SIMULATION Course Code : 1EE305 Learning Outcomes : Upon completion of this course, students will acquire knowledge about to: Understand computer applications and softwares used for Electrical engineering. Use software for Electrical and Electronic circuit simulation. Develop awareness about different softwares. Syllabus : Unit No. Topics 1. COMPUTER AIDED ELECTRICAL DRAWING 1.1 Draw Electrical symbols (take Print out) 1.2 Draw D.C. m/c parts (take print out) 1.3 Draw A.C. m/c parts (take print out) 1.4 Draw R-L series circuit (take print out) 1.5 Draw R-C series circuit (take print out) 1.6 Draw R-L-C series circuit (take print out) 1.7 Draw winding diagrams (take print out) 2. COMPUTER AIDED ELECTRONIC DRAWING 2.1 Draw Electronic Symbol (take Print out) 2.2 Draw rectifier circuit (take print out) 2.3 Draw Amplifier circuit (take print out) 2.4 Draw Oscillator circuit (take print out) 3. COMPUTER AIDED ELECTRICAL CIRCUIT SIMULATION

10 3.1 Simulation of R-L, R-C, R-L-C circuit (take print out) 3.2 Electrical machines circuits simulation (take print out) 4. COMPUTER AIDED ELECTRONICS CIRCUIT SOLUTION 4.1 Rectifier circuit simulation (take print out) 4.2 Amplifier circuit simulation (take print out) 4.3 Oscillator circuit simulation (take print out) Timer simulation (take print out) Text Books 1. Inside AUTO-CAD by Racter & Rice 2. Mastering AUTO-CAD by Georse Omura

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