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Planar antenna : design, fabrication, testing, and application / Praveen Kumar Malik, editor.
- Format:
- Book
- Series:
- Electrical engineering developments series.
- Electrical Engineering Developments
- Language:
- English
- Subjects (All):
- Microstrip antennas.
- Physical Description:
- 1 online resource (410 pages)
- Place of Publication:
- New York : Nova Science Publishers, Inc., [2021]
- Summary:
- "This book focuses on recent advances in the field of planar antenna design and their applications in various fields of research including space communication, mobile communication, wireless communication, and wearable applications. Planar antennas are also used in medical applications including microwave imaging, medical implants, hyperthermia treatments, and wireless wellness monitoring. However, most of these applications still use bulky antenna systems which hamper their efficiency and applicability despite high application potential. The primary objective of recent antenna research is the reduction in size and complexity. Students, scholars and researchers are used to doing mathematical modelling and pattern measurements in simulated environments only. Our aim is to show academic and industry researchers as well as advanced students and lecturers in electronics, electrical and instrumentation engineering how to do measurements in real-world environments. This book will present planar antenna design concepts, methods, and techniques to enhance performance parameters, as well as applications for IoTs and device-to-device communication. We will provide the latest techniques used for the design of antennas in terms of their structures, defected ground, MIMO, and fractal design. This book will also address the specific steps to resolve issues in designing antennas and how to design conformal and miniaturized antenna structures for various applications"-- Provided by publisher.
- Contents:
- Intro
- Contents
- Preface
- Chapter 1
- Multi-Band Fractal Antenna for Wearable Applications
- Abstract
- Introduction
- Analytical Framework
- Literature Review
- Method
- Antenna Design
- Results and Discussions
- Analysis of Specific Absorption Rate [SAR]
- Conclusion
- References
- Chapter 2
- Design and Analysis of a Smart Circularly Polarized Wearable Textile Antenna for Body Wireless Communication Applications
- Material and Methods
- Surface Morphology Analysis of Cotton
- Surface Morphology Analysis of Silk
- Surface Morphology Analysis of Jute
- Realizing the Conductivity
- Surface Morphology Analysis of Copper Paint After Painted on Jute Material
- The Antenna Topology
- Resonating Frequencies
- Axial Ratios
- Radiation Patterns
- Gain and Efficiency
- Surface Current Distributions
- Chapter 3
- Management of Security Patch Application
- Historical Perspective
- Feeding Techniques
- Applications of Microsript Patch Antenna
- Working of P. Mgnt
- PRP
- PDPT
- PDR
- PI
- PIP
- PRV
- Cost Management for P. Mgnt
- To Patch or not to Patch
- To Automate or Not to Automate
- Lower Costs
- Results
- Chapter 4
- Analysis and Study of Multiband Microstrip Patch Antennas
- 1. Introduction
- 2. Multiband Antennas for Multi Resonance Applications
- 3. Multiband Antenna with Five Resonating Bands
- 4. Study of Multiband Antenna Results
- 5. Multiband Antenna for 5G Applications
- Chapter 5
- Design of Dual-Band Microstrip Patch Antenna Using Square and Octagonal Slots for S-Band and Radio Location Applications
- Proposed Antenna Design
- Design Parameters
- Design Configuration.
- Iteration 1
- Iteration 2
- Iteration 3
- Iteration 4
- Iteration 5
- Simulation Results
- Result Analysis
- Chapter 6
- Printed Antenna Technology
- Planar Transmission Lines
- Types of Printed Antenna
- Patch Antenna
- Printed Slot Antenna
- Printed Dipole Antenna
- Printed Log-Periodic Dipole Array
- Printed Inductive Antenna
- Analysis of Printed Antennas
- Model Based on Transmission-Line Circuit approach
- Model Based on Cavity
- Model Based on Full-Wave Analysis
- Printed Antenna Design Process
- Design of Microstrip Antenna
- Microstrip Patch Antenna Design at 2.45 GHz
- Miniaturization of Microstrip Patch Antenna
- Chapter 7
- Design of Aperture Coupled Patch Antenna Based Ground Terminal with Uplink Frequency of 31GHz for Satellite Communication
- Types of Antenna
- Features of Patch Antenna
- Regular Micro-Strip Antenna
- Literature Survey
- Contact Based Feeding Techniques
- Quarter Wave Line Feed
- Coaxial Feed Line
- Non-Contact Based Feeding Techniques
- Proximity Coupled Patch Antenna
- Aperture Coupled Patch Antenna
- Proposed Aperture Coupled Antenna Design Parameters
- Patch Width
- Extension of the Length (ΔL)
- Ka Band
- Uplink Frequency
- Satellite Communication
- Simulation Environment
- Results and Discussion
- About the Authors
- Chapter 8
- Design of T Shape Miniaturized Metamaterial Antenna for Lower Region of C Band
- Results and Discussions of the Proposed Antennas
- S11, VSWR, Radiation of Antenna 1
- S11, VSWR, Radiation of Antenna 2
- S11, VSWR, Radiation of Antenna 3
- Chapter 9.
- Simulation-Driven Optimization of Slot Antenna Using Genetic Algorithm
- 2. Details of the Proposed Algorithm
- 2.1. Cost Function for Antenna Optimization
- 2.2. Genetic Algorithm for Antenna Design
- 3. Experimental Details
- 4. Experimental Results
- Chapter 10
- Design of Micro-Strip Fed Aperture Coupled Broadside Cylindrical Dielectric Resonator Antenna Array
- Principle of Operation
- Structure of the Antenna
- Results Analysis and Discussion
- Chapter 11
- Design and Fabrication of Modified Swastik FSSs for Planar Antenna Gain Enhancement
- 2. Proposed Unit Cell Design
- 3. Simulation Results
- 4. Measurements
- 4.1. Antenna Configuration with FSS as Superstrate and as a Substrate
- 4.2. Comparison of Simulated and Measured Radiation Pattern
- Chapter 12
- Smart Antenna Technologies: Future Systems Implementation Issues
- Challenges in Mobile Communications and Benefits of Smart Antennas
- Smart Antenna Transceiver Architectures
- Smart Antenna Strategies for Following Non-Programs
- Reconfigurability at the Physical Layer
- Cross-Layer Optimization
- Multi-User Diversity
- Realistic Performance Evaluation
- Execution Method
- Modeling
- Deployment of Smart Antennas in Future Systems Implementation Issues
- Chapter 13
- Performance Analysis of Microstrip Patch Array Antenna for Vehicular Communication
- Proposed Antenna Array
- Chapter 14
- Design of MIMO Microstrip Patch Antenna for 5G Applications
- MIMO Technique
- 1X1 Antenna.
- 2X1 Antenna
- Software Tool
- Design Methodology
- Substrate
- S-Parameter
- VSWR
- Radiation Pattern
- Far Field
- Chapter 15
- Design Frequency Optimization for Dual-Band Patch Antenna
- Methodology
- Design Calculations for RMSA CMSA and TMSA
- Inset Feed
- Circular Microstrip Antenna (CMSA)
- Equilateral Triangle Microstrip Antenna (ETMSA)
- Stub-Loaded Dual-Band MSAs
- Result and Discussions
- The Geometry of First Patch Rectangular Patch with Inset Feed
- Geometry of Rectangular Microstrip Antenna Array
- Design of Dual Band Circular Microstrip Antenna
- Design of Dual-Band Equilateral Triangular Microstrip Antenna (ETMSA)
- Optimization of Design Frequency
- Chapter 16
- Performance Analysis of Multiple Frequency Selective Antenna
- Proposed Design
- Result and Discussion
- Simulation Process
- Results of Proposed Design
- S-Parameter Curve
- VSWR Measurement
- Input Impedance
- Smith Chart
- Polar Chart
- Surface Current
- Hardware Description
- Fabrication of the Antenna
- Chapter 17
- Smart Metamaterial Based Microstrip MIMO Sensor Array Antenna at Millimetre Wave Band for Remote Sensing Applications
- Related Work
- Design of Ferromagnetic Metamaterial Split-Ring Resonator Cell
- Design of Ferromagnetic Metamaterial Based Microstrip Patch Circular Array
- Ferromagnetic Based Split-Ring Resonator Metamaterial
- Microstrip Patch Sensor Array Antenna Coupled with Ferromagnetic Split-Ring Resonator
- Return Loss
- Bandwidth.
- Antenna Gain
- Beam-Width
- Power Density
- Antenna Radiation Efficiency
- Current Density
- Comparison Performance Analysis
- Conclusion and Future-Scope
- Chapter 18
- Performance Enhancement in Printed Antenna Using EBG Structures
- Bandwidth Improvement Using EBG
- Performance Improvement Using EBG and Defected Ground Structure
- Fractal EBG Structure for Axial Ratio Improvement
- Patch Antenna for Imaging System
- Isolation Enhancement Using Fractal UC-EBG Structure and Cross Slot
- Beam Steering Using EBG with Varactors
- Design of Double L Shaped EBG Antenna (Antenna 1)
- Design of Hexagonal Shaped EBG Antenna (Antenna 2)
- Simulated and Fabricated Results
- Parametric Analysis
- Chapter 19
- Smart Antenna for Emerging 5G and Application
- Difference between Conventional Antenna and Smart Antenna
- Smart Antenna - Functions
- Assessment of Direction of Appearance (DOA)
- Beamforming Method
- Types of Smart Antenna
- Phased Array/Beam Smart/Multi-Beam Antenna
- Adaptive Array Antenna
- SIMO (Multiple Output-Single Input)
- MISO (Single Output-Multiple Input)
- Much Input-Multiple Output (MIMO)
- Drawbacks
- Advantages and Disadvantages
- Disadvantages
- Cost
- Size
- Diversity
- Smart Antenna Technology Overview
- Antenna Arrays
- Why Is 5G New Radio (5GNR) Important?
- 5G Needs Smart Antennas
- How Do Smart Antennas Work in 5G
- 5G Smart Antenna Market Support Apps and vo5G
- Application
- Future Scope
- Editor's Contact Information
- Index
- Blank Page
- Blank Page.
- Notes:
- Description based on print version record.
- ISBN:
- 1-68507-042-6
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