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RTU Syllabus 2020 - Check and Download Syllabus PDF Here

| Updated: Jul 06, 2020, 09:55 IST

RTU Syllabus 2020 - RTU(Rajasthan Technical University)established in 2006. It is an affiliating university with 202 affiliated colleges. At present, the university offers B.Tech, B.Arch, and BHMCT courses at UG level and M.Tech, M.Arch, MBA, MAM, MTM, and MCA courses at the postgraduate level. RTU(Rajasthan Technical University)also offers a Ph.D. program in various specializations at the Doctorate level. Students can check the RTU Syllabus for Various Streams on this page.


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RTU Syllabus 2020 - Check and Download Syllabus PDF Here

RTU Syllabus 2020 - Check and Download Syllabus PDF Here

RTU Syllabus-2020

The Rajasthan Technical University(RTU) performs the Rajasthan Engineering Admission Process (REAP) for admission to BE/ B.Tech and B.Arch programs. JEE Main qualified candidates will prefer for the REAP process. Access to the BHMCT program is entirely merit-based. Entry to the B.Tech. Curriculum-based on the marks secured by the candidate in the Class 10+2 qualifying exam followed by REAP counseling, but preference will give to those who have applied based on the JEE Main score. So, RTU Syllabus is essential for the Exam. We have provided the link to download the RTU Syllabus. Students can download the Various Streams Syllabus Here.

Download RTU Syllabus Click Here.

Registration Process for B.Tech-2020

  • Visit the official site of REAP and fill the application form.
  • Pay the application fee of INR. 750/- through e-Mitra Kiosk or online payment via credit card/debit card or net banking.
  • For the selected e-Mitra Kiosk, the student must take a printout of the generated invoice of INR. 750/- and pay the amount at the nearest e-Mitra Kiosk. Once the fee deposited, the applicants will provide a 12 or 16-digit code, which will be required to log in again for the application confirmation process.
  • In case of online payment, once the amount completed, the candidate will receive an alphanumeric code which must retain for later use.
  • Applicants should upload a recent passport photograph (100 KB) and signature (50 KB) in JPG.
  • RTU Final admission is subject to choice locking and allotment of seats at the time of counseling.

Hints: Candidates must note that they have to bring all the desired documents (Two self-attested copies along with originals) at the time of final admission.

What are the Important Dates for RTU Syllabus?

RTU Syllabus Events RTU Syllabus Details

University 

Rajasthan Technical University

Establishment

2006

Formation

Govt. of Rajasthan

Type of University

State

Approvals

UGC

Admission through:

Merit-Based

Affiliations

AICTE

University Location

Rajasthan Technical University,

Rawatbhata Road Kota-324010, Rajasthan, India.

What is the RTU Syllabus 2020 for Power System Planning?

Unit-1

Introduction of power planning, National and Regional Planning, structure of P.S., planning tools Electricity Regulation, Electrical Forecasting, forecasting techniques modeling.

Unit-2

Generation planning, Integrated power generation cogeneration/captive power, Power pooling and power trading. Transmission and distribution planning. Power system Economics. Power sector finance, financial planning, private participation Rural Electrification investment, concept of Rational tariffs.

Unit-3

Power supply Reliability, Reliability planning. System operation planning, load management, load prediction, reactive power balance
Online power flow studies, state estimation, computerized management, power system simulator.

Unit-4

Computer aided planning, wheeling. Environmental effects, the greenhouse effect Technological impacts. Insulation coordination. Reactive compensation.

Unit-5

Optimal power system expansion planning: Formulation of least cost optimization problem incorporating the capital, Operating and maintenance cost of candidate plants of different types (Thermal, Hydro, Nuclear, Non-conventional etc.) and minimum assured reliability constraint – optimization techniques for solution by programming.

What is the RTU Syllabus 2020 for Power System Analysis?

Unit-1

Percent and per unit quantities. Single line diagram for a balanced 3-phase system Admittance Model: Branch and node admittances Equivalent admittance network and calculation of Y bus. Modification of an existing Y bus.

Unit-2

  • Impedance Model: Bus admittance and impedance matrices. Thevenin’s theorem and Z bus. Direct determination of Z bus. Modification of an existing bus. Symmetrical fault Analysis: Transient on a Transmission line, short circuit of a synchronous machine on no load, short circuit of a loaded synchronous machine. Equivalent circuits of synchronous machine under sub transient, transient and steady state conditions. Selection of circuit breakers, Algorithm for short circuit studies. Analysis of three-phase faults.

Unit-3

Symmetrical Components: Fortescue theorem, symmetrical component transformation. Phase shift in star-delta transformers. Sequence Impedances of transmission lines, Synchronous Machine and Transformers, zero sequence network of transformers and transmission lines. Construction of sequence networks of power system. Fault Analysis: Analysis of single line to ground faults using symmetrical components, connection of sequence networks under the fault condition.

Unit-4

Unsymmetrical Fault Analysis: (i) Analysis of line-to-line and double line to ground faults using symmetrical components, connection of sequence networks under fault conditions. Analysis of unsymmetrical shunt faults using bus impedance matrix method.

Unit-5

Load Flow Analysis:Load flow problem, development of load flow equations, bus classification Gauss Seidel, Newton Raphosn, decoupled and fast decoupled methods for load flow analysis. Comparison of load flow methods.

What is the RTU Syllabus 2020 for Artificial Intelligence Techniques?

Unit-1

Artificial Intelligence: Introduction to AI and knowledge based Expert systems, Introduction, Importance and Definition of AI, ES, ES building tools and shells.

Unit-2

Knowledge Representation: Concept of knowledge, Representation of knowledge using logics rules, frames. Procedural versus. Declarative knowledge, forward versus backward chaining Control Strategies: Concept of heuristic search, search techniques depth first search, Breadth first search, Generate & test hill climbing, best first search.

Unit-3

Artificial Neural Network: Biological Neurons and synapses, characteristics Artificial Neural Networks, types of activation functions.

Perceptions: Perception representation, limitations of perceptrons. Single layer and multilayer perceptrons. Perceptron learning algorithms.

Unit-4

Basic Concepts in Learning ANN: Supervised learning, Back propagation algorithm, unsupervised learning, Kohonen’s top field network & Algorithm.

Unit-5

  • Fuzzy Logic: Fuzzy logic concepts, Fuzzy relation and membership functions, Defuzzification, Fuzzy controllers, Genetic Algorithm: concepts, coding, reproduction, crossover, mutation, scaling and fitness.

NWhat is the RTU Syllabus 2020 for non-Conventional Energy Sources?

Unit-1

  • Introduction: World energy situation, conventional and non-conventional energy sources, Indian energy scene. Tidal Energy: Introduction to tidal power. Components of tidal power plants, double basin arrangement. Power generation. Advantages and limitations of tidal power generation. Prospects of tidal energy in India.

Unit-2

  • Solar Energy: Solar radiation, solar radiation geometry, solar radiation on tilted surface. Solar energy collector. Flat- plate collector, concentrating collector – paraboloidal and heliostat. Solar pond. Basic solar power plant. Solar cell, solar cell array, basic photo-voltaic power generating system.

Unit-3

  • Wind Energy: Basic principle of wind energy conversion, efficiency of conversion, site selection. Electric power generation-basic components, horizontal axis and vertical axis wind turbines, towers, generators, control and monitoring components. Basic electric generation schemes- constant speed constant frequency, variable speed constant frequency and variable speed variable frequency schemes. Applications of wind energy.

  • Geothermal Energy: Geothermal fields, estimates of geothermal power. Basic geothermal steam power plant, binary fluid geothermal power plant and geothermal preheat hybrid power plant. Advantages and disadvantages of geothermal energy. Applications of geothermal energy. Geothermal energy in India.

Unit-4

  • Nuclear Fusion Energy: Introduction, nuclear fission and nuclear fusion. Requirements for nuclear fusion. Plasma confinement magnetic confinement and inertial confinement. Basic Tokamak reactor, laser fusion reactor. Advantages of nuclear fusion. Fusion hybrid and cold fusion.

Unit-5

  • Biomass Energy: Introduction, biomass categories, bio-fuels. Introduction to biomass conversion technologies. Biogas generation, basic biogas plants-fixed dome type, floating gas holder type, Deen Bandhu biogas plant, Pragati design biogas plant. Utilization of biogas. Energy plantation. Pyrolysis scheme. Alternative liquid fuels –ethanol and methanol. Ethanol production.

What is the Power System Engineering Syllabus 2020?

Unit-1

Economic Operation of Power Systems: Introduction, system constraints, optimal operation of power systems. Input output, heat rate and incremental rate curves of thermal generating units. Economic distribution of load between generating units within a plant. Economic distribution of load between power stations, transmission loss equation. Introduction to unit commitment and dynamic programming.

Unit-2

Power System Stability-I: Power angle equations and power angle curves under steady state and transient conditions. Rotor dynamics and swing equation (solution of swing equation not included). Synchronizing power coefficient. Introduction to steady state and dynamic stabilities, steady state stability limit.

Unit-3

Power System Stability-II: Introduction to transient stability. Equal area criterion and its application to transient stability studies under basic disturbances. Critical clearing angle and critical clearing time. Factors affecting stability and methods to improve stability.

Unit-4

Excitation Systems: Introduction of excitation systems of synchronous machines, types of excitation systems, Elements of various excitation systems and their control (functional block diagrams and their brief description)-DC excitation systems, AC excitation systems, brushless excitation system.

Interconnected Power Systems: Introduction to isolated and interconnected powers systems. Reserve capacity of power stations, spinning and maintenance resaves. Advantages and problems of interconnected power systems. Power systems interconnection in India.

Unit-5

Tap Changing transformer, phase angle control and phase shifting transformer. Series compensation of transmission lines, location and protection of series capacitors, advantages and problems Introduction to power system security. Introduction to voltage stability.

What is the Electromagnetic Field Theory RTU Syllabus 2020?

Unit-1

Introduction: Vector Relation in rectangular, cylindrical, spherical and general curvilinear coordinate system. Concept and physical interpretation of gradient, Divergence and curl, Green’s Stokes and Helmholz theorems

Unit-2

Electrostatics: Electric field vectors-electric field intensity, flux density & polarization. Electric field due to various charge configurations. The potential functions and displacement vector. Gauss’s law, Poisson’s and Laplace’s equation and their solution. Uniqueness theorem. Continuity equation. Capacitance and electrostatics energy. Field determination by method of images. Boundary conditions. Field mappings and concept of field cells.

Unit-3

Magnetostatics: Magnetic field vector: Magnetic field intensity, flux density & magnetization, Biot-Savart's law, Ampere’s law, Magnetic scalar and vector potential, self & mutual inductance. Energy stored in magnetic field, Boundary conditions, Analogy between electric and magnetic field, Field mapping and concept of field cells.

Unit-4

Time Varying Fields: Faraday’s law, Displacement currents and equation of continuity. Maxwell’s equations, Uniform plane wave in free space, dielectrics and conductors, skin effect sinusoidal time variations, reflections, refraction & polarization of UPW, standing wave ratio. Pointing vector and power considerations.

Unit-5

Transmission Lines: The high-frequency circuit. LCR ladder model. The transmission Lin equation. Solution for loss-less lines. Wave velocity and wave impedance. Reflection and Transmission coefficients at junctions. VSWR.

What is the Computer Aided Design Of Electrical RTU Syllabus 2020?

Unit-1

Basic Principles of Electrical Machine Design: Specifications, Factors affecting the design, Limitations, main dimension, loadings, output equation, factor affecting the size and rating, Electrical Engineering Materials: conducting, magnetic and insulating materials.

Magnetic Circuit Calculation: Ohm’s law for magnetic circuit, mmf required for air gap and iron parts, tapered teeth, real and apparent flux density, magnetizing current.

Unit-2

Heating and Cooling of Electrical Machines: heat dissipation and heat flow equations, Newton’s law of cooling, equations for temperature rise, Rating of Machines: Continuous, short and intermittent ratings, mean temperature rise, hydrogen cooling of turbo alternators, quantity of cooling medium.

Unit-3

Computer Aided Design of Transformers: Power and Distribution Transformers, core and yoke cross sections, square and stepped core, output equations, main dimensions, types & design of windings, optimization concepts.

Unit-4

Computer Aided Design of Synchronous Machines: Turbo and Hydro alternators, choice of specific magnetic & electric loading, short circuit ratio and its effects air gap length, output equation, main dimensions, flow charts for design of synchronous machine, design of stator core & winding.

Unit-5

Computer Aided Design of Induction Machines: Output equation, main dimensions, design criteria, flow charts for design of induction motor, air gap length, design of stator core and winding, rotor design.

Economic Operation Of Power Systems

Unit-1

Economics of Power Generation: Introduction, cost of electrical energy, expression for cost of electrical energy, depreciation, power plant cost analysis, economics in plant selection, selection of types of generation and types of equipments, factors affecting economic generations and distributions, generating cost, economics of different types of generating plants

Unit-2

Economical Operations of Thermal Power Plants: Methods of loading turbo generators, input, output and heat rate characteristics, incremental cost, two generations units, large no of units, sequence of adding units, effects of transmission losses, economic scheduling considering transmission losses, coordination equations, penalty factors

Unit-3

Hydro Thermal coordination: Advantages of combined operation, base load peak load operation requirement, combined working of run-off river and steam plant Reservoirs hydro plants and thermal plants (long term operational aspects), short term hydro thermal coordination, coordination equations, scheduling methods and applications.

Unit-4

Parallel Operations of Generators: Conditions, synchronizing current and power, two alternators in parallel (effect of change in excitation, load sharing, sharing of load currents), Infinite bus bars, active and reactive power control, synchronizing power, torque, operating limits of alternators, operating characteristics of cylindrical alternator rotor.

Unit-5

Economics for Electrical Engineers: Concepts of physical and financial efficiencies of electrical goods and services, supply and demand, break even and minimum cost analysis, linear and nonlinear break even, min cist analysis.

Experiments:

  • Status of National and Regional Planning, for power system

  • Write components of Structure of power system

  • Explain in detail various planning tools.

  • Write short note on Electricity Regulation

  • Modeling of Electrical Forecasting techniques

  • Transmission and distribution planning

  • concept of Rational tariffs

  • Rural Electrification

What is the Power System Modelling And Simulation Lab RTU Syllabus 2020?

  • Simulate Swing Equation in Simulink (MATLAB)

  • Modeling of Synchronous Machine.

  • Modeling of Induction Machines.

  • Simulate simple circuits using Circuit Maker.

  • (a) Modeling of Synchronous Machine with PSS (b) Simulation of Synchronous Machine with FACTS device.

  • (a) Modeling of Synchronous Machine with FACTS device (b) Simulation of Synchronous Machine with FACTS devices.

  • FACTS Controller designs with FACT devices for SMIB systems.

What is the RTU Syllabus 2020 Digital Logic Design?

Unit-1

Hardware  Description Languages and their use in digital logic design

VHDL: Modelling Concepts, Lexical Elements & Syntax Descriptions,  Scalar Data types & Operations, Sequential Statements, Composite Data Types & Operations,  Basic  Modelling  Constructs.

Case Study:  VHDL Simulation of Ripple  Carry,  & Look Ahead carry Adders.

Unit-2

VHDL: Subprograms, Packages & Use Clauses, Aliases, Resolved Signals, Components & Configurations, Generate Statements, Concurrent  Statements. Use of VHDL  in simulation and synthesis.

Unit-3

Clocked Sequential circuits. Design steps for synchronous sequential circuits. Design of a sequence detector. Moore and Mealy Machines. Design using JK flip-flops and D flip-flops. State reduction, State assignment, Algorithmic State Charts,  converting  ASM charts to hardware, one-hot state assignment.

Considerations of clock skew, set-up time, hold-time and other flip-flop parameters, Time constraints. Programmable Logic Devices. Read-only memory. Boolean function implementation through ROM.  PLD,  PGA, PLA, PAL,  FPGA.

Unit-4

Event-driven Circuits. The design procedure for asynchronous circuits, stable and unstable states, races, race-free assignments. State reduction of incompletely specified machines. Compatibility and state reduction procedure. Hazards in combinational networks. Dynamic risks, Function Hazards, and Essential Hazards.  Eliminating hazards.

Unit-5

Field Programmable Gate Arrays: Introduction, Logic Elements & programmability, Interconnect structures & programmability, Extended Logic Elements, SRAM, Flash Memory & Antifuse Configuration, Case Studies of Altera  Stratix  & Xilinx  Virtex-II pro.

Technology Mapping for FPGAs: Logic Synthesis, Lookup Table Technology Mapping.

What is the RTU Syllabus 2020 for Telecommunication Fundamentals?

Unit-1

Data Transmission: Terminology, Frequency, spectrum, bandwidth, analog & digital transmission, Transmission impairments, channel capacity, Transmission Media.

Wireless Transmission: Antenna and antenna gain. Network Reference Models (OSI/ISO and  TCP/IP)

Physical Layer: Line Encoding Schemes. The concept of the bit period, the effect of clock skew, Synchronous, and Asynchronous communication.

Data Link Layer: Functions of the data link layer and design  issues

Flow Control: Flow control in lossless and lossy channels using stop-and-wait, sliding window protocols. Performance of protocols used for flow control.

Unit-2

Error Control Coding: Error Detection, Two Dimensional  Parity  Checks,  and Internet Checksum. Polynomial Codes, Standardized polynomial codes, error detecting capability of polynomial codes. Linear codes, the performance of linear codes, error detection & correction using linear systems.

Data Link Control: HDLC & PPP including frame structures.

MAC sublayer: Channel Allocation Problem, Pure and slotted Aloha, CSMA, CSMA/CD, collision-free multiple access. Throughput analysis of pure and slotted Aloha. Ethernet Performance.

Unit-3

Wireless LAN: Hidden node and Exposed node Problems, RTS/CTS based protocol, 802.11 Architecture, a protocol stack, Physical layer, MAC   Sublayer.

Bluetooth Architecture and Protocol Stack Data Link Layer Switching: Bridges (Transparent, Learning and Spanning Tree), Virtual LANs

Unit-4

Multiplexing: Frequency division, time division (Synchronous and statistical) multiplexing. ADSL, DS1 and DS3  carriers.

Multiple Accesses: TDMA frame structure, TDMA Burst Structure, TDMA Frame efficiency, TDMA Superframe structure, Frame acquisition, and synchronization, Slip rate in digital terrestrial networks.

Switching: Qualitative description of Space division, time division, and space-time- space division switching.

Unit-5

Spread Spectrum Techniques: Direct sequence(DSSS) & frequency hopping(FHSS); Performance consideration in DSSS & FHSS;

Code Division Multiple Access (CDMA): frequency & channel specifications, forward & reverse CDMA channel, pseudo-noise (PN) sequences, m-sequence, gold sequence, orthogonal code, gold sequences, Walsh codes, synchronization, power control, handoff, the capacity of a CDMA system, IMT-2000, WCDM.

 

What is the RTU Syllabus 2020 for Database Management System?

Unit-1

Introduction to Database System: Overview and History of DBMS. File System v/s DBMS.An advantage of DBMS Describing and Storing Data in a  DBMS. Queries in DBMS. Structure of a  DBMS.

Unit-2

Entity-Relationship Model: Overview of  Data  Design  Entities,  Attributes and Entity Sets, Relationship and Relationship Sets. Features of the ER Model- Key Constraints, Participation Constraints, Weak Entities, Class Hierarchies, Aggregation, Conceptual Data Base, Design with ER Model-Entity v/s Attribute, Entity vs. Relationship Binary vs. Ternary Relationship and Aggregation v/s ternary Relationship Conceptual Design for a Large  Enterprise.

Unit-3

Relationship Algebra & Calculus: Relationship  Algebra Selection and Projection, Set Operations, Renaming, Joints, Division, Relation Calculus, Expressive Power of Algebra and  Calculus.

Unit-4

SQL Queries Programming & Triggers:  The Forms of a  Basic SQL Query, Union, Intersection and Except, Nested Queries, Correlated Nested Queries, Set-Comparison Operations, Aggregate Operators, Null Values and Embedded SQL, Dynamic SQL, ODBC and JDBC, Triggers and Active  Databases.

Unit-5

Schema Refinement & Normal Forms: Introductions to Schema Refinement, Functional Dependencies, Boyce-Codd Normal Forms, Third Normal  Form, Normalization-Decomposition into BCNF Decomposition into  3-NF.


 

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