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(Ebook) Antennas and Wave Propagation 1st Edition by GSN Raju ISBN 9781299444560 1299444563

  • SKU: EBN-21889362
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Authors:G. S. N. Raju
Pages:510 pages.
Year:2006
Editon:1st
Publisher:Pearson
Language:english
File Size:6.5 MB
Format:pdf
ISBNS:9781299444560, 9788131701843, 9788131775998, 9789332508163, 1299444563, 8131701840, 8131775992, 933250816X
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(Ebook) Antennas and Wave Propagation 1st Edition by GSN Raju ISBN 9781299444560 1299444563

(Ebook) Antennas and Wave Propagation 1st Edition by GSN Raju - Ebook PDF Instant Download/Delivery: 9781299444560 ,1299444563
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Product details:

ISBN 10: 1299444563
ISBN 13: 9781299444560
Author: GSN Raju

The book is written for the first course on Antennas and Wave Propagation. The book begins with an Introduction that discusses the fundamental concepts, notations, representation and principles that govern the field of antennas. A separate chapter on Mathematical Preliminaries is discussed followed by chapters on every aspect of antennas from Maxwell's equations to antenna array analysis, antenna array synthesis, antenna measurements and wave propagation.

(Ebook) Antennas and Wave Propagation 1st Edition Table of contents:

Chapter 1: Mathematical Preliminaries

  • Fundamentals of Scalars and Vectors

  • Cartesian Coordinate System

  • Cylindrical Coordinate System

  • Spherical Coordinate System

  • Divergence of a Vector A

  • Curl of a Vector A

  • Vector Identities

  • Laplacian Operator

  • Decibel and Neper Concepts

  • Properties of Complex Numbers

  • Logarithmic Series and Identities

  • Cubic Equations

  • Determinants

  • Properties of Determinants

  • Types of Matrices

  • Properties of Matrices

  • Combinations

  • Exponential Series

  • Hyperbolic Functions

  • Sine, Cosine, Tan and Cot Functions

  • Bessel Function

  • Partial Derivative

  • Some Differentiation Formulae

  • Some Useful Integration Formulae

  • Radian and Steradian

  • Divergence Theorem

Supplementary:

  • Points to Remember

  • Solved Problems

  • Objective Questions

  • Exercise Problems


Chapter 2: Maxwell’s Equations and Electromagnetic Waves

  • Introduction

  • Equation of Continuity for Time-Varying Fields

  • Maxwell’s Equations for Time-Varying Fields

  • Conversion to Integral Form

  • Maxwell’s Equations for Static Fields

  • Proof of Maxwell’s Equations

  • Maxwell’s Equations in Phasor Form

  • Influence of Medium

  • Boundary Conditions on Fields

  • Maxwell’s Equations Approach

  • Electromagnetic Waves

  • Wave Equations in Free Space and Conducting Medium

  • Uniform Plane Waves

  • Relation Between E and H

  • Wave Propagation in Lossless and Conducting Media

  • Intrinsic Impedance

  • Polarisation of a Wave

  • Direction Cosines

  • Wave Reflection (Normal and Oblique Incidence)

  • Brewster Angle

  • Poynting Theorem

  • Complex Poynting Vector

Supplementary:

  • Points to Remember

  • Solved Problems

  • Objective Questions

  • Exercise Problems


Chapter 3: Radiation and Antennas

  • Definition of Antenna

  • Network Theorems

  • Antenna Parameters

  • Basic Antenna Elements

  • Radiation Fields of Oscillating Elements

  • Radiated Power and Resistance

  • Radiation, Induction, and Electrostatic Fields

  • Hertzian Dipole

  • Half-wave and Quarter-wave Dipole Radiation

  • Dipole Radiation Characteristics

Supplementary:

  • Points to Remember

  • Solved Problems

  • Objective Questions

  • Exercise Problems


Chapter 4: Analysis of Linear Arrays

  • Directional Characteristics

  • Radiation Pattern Expressions

  • Two-Element and Uniform Linear Arrays

  • First Side Lobe Ratio

  • Broadside and End-fire Arrays

  • Array of Non-Isotropic Radiators

  • Pattern Multiplication

  • Binomial Arrays

  • Earth Effect on Vertical Patterns

  • Impedance Matching

  • Friis Transmission Formula

  • Antenna Temperature and SNR

Supplementary:

  • Points to Remember

  • Solved Problems

  • Objective Questions

  • Exercise Problems


Chapter 5: Array Synthesis

  • Schelkunoff Polynomial Method

  • Fourier Transform Method

  • Woodward-Lawson Method

  • Dolph-Chebychev Method

  • Taylor’s Method

  • Laplace Transform Method

  • Standard Amplitude Distributions

Supplementary:

  • Points to Remember

  • Solved Problems

  • Objective Questions

  • Exercise Problems


Chapter 6: HF, VHF and UHF Antennas

  • Isotropic Radiators

  • Resonant and Non-resonant Antennas

  • HF, VHF, UHF Antennas

  • Folded Dipole

  • V-Antenna and Inverted V-Antenna

  • Rhombic Antenna

  • Yagi-Uda Antenna

  • Log-Periodic, Loop, and Helical Antennas

  • Ferrite Rod and Turnstile Antennas

  • Discone and Notch Antennas

Supplementary:

  • Points to Remember

  • Solved Problems

  • Objective Questions

  • Exercise Problems


Chapter 7: Microwaves Antennas

  • Plane and Corner Reflectors

  • Parabolic and Offset Reflectors

  • Spherical Reflector, Cassegrain Feed

  • Fanned, Sector, and Cosecant Beams

  • Horn and Corrugated Horn Antennas

  • Slot Antennas and Impedance

  • Babinet’s Principle

  • Method of Moment (MoM)

  • Lens Antennas

  • Microstrip or Patch Antennas

Supplementary:

  • Points to Remember

  • Solved Problems

  • Objective Questions

  • Exercise Problems


Chapter 8: Antenna Measurements

  • Accurate Measurement Methods

  • Measurement Ranges

  • Impedance Measurement

  • Pattern Measurement

  • Radiation Resistance and Gain Measurements

  • Directivity, Beam Width, Efficiency

  • Aperture Efficiency

  • Polarisation and Phase Measurement

Supplementary:

  • Objective Questions


Chapter 9: Wave Propagation

  • Ground Wave Propagation

  • Surface Reflection

  • Space Wave and Tropospheric Effects

  • Earth’s Curvature and Imperfections

  • Atmospheric Ducting

  • Ionospheric Propagation (Mechanism, Refraction, Reflection)

  • Fading, Diversity Techniques, Faraday Rotation

  • Magnetic Field Effects

  • Whistlers

Supplementary:

  • Points to Remember

  • Solved Problems

  • Objective Questions

  • Exercise Problems

  • Multiple Choice Questions

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