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Antennas for IoT

Antennas for IoT PDF Author: Prutha P. Kulkarni
Publisher: Artech House
ISBN: 1630819948
Category : Technology & Engineering
Languages : en
Pages : 286

Book Description
This book provides a comprehensive overview of the latest trends in Internet of Things (IoT) antenna design. IoT is a rapidly growing network of interconnected devices that can collect and exchange data. This data can be used to improve efficiency, safety, and productivity in many applications, including smart cities, grids, industrial internet, computer security, etc. One of the main components of the IoT is the antenna. Antennas are responsible for transmitting and receiving the data that flows between IoT devices. To be effective, IoT antennas must be small, light, and easy to integrate into devices. They must also be able to operate in various environments, including those with elevated interference levels. This resource covers a wide range of topics, including the challenges and opportunities involved in designing antennas for IoT applications and the importance of miniaturization in IoT antenna design. A comprehensive list of references is included, making it a valuable resource for further study. This is an essential resource for engineers, researchers, and anyone who wants to learn more about the latest trends in IoT antenna design.

Antennas for IoT

Antennas for IoT PDF Author: Prutha P. Kulkarni
Publisher: Artech House
ISBN: 1630819948
Category : Technology & Engineering
Languages : en
Pages : 286

Book Description
This book provides a comprehensive overview of the latest trends in Internet of Things (IoT) antenna design. IoT is a rapidly growing network of interconnected devices that can collect and exchange data. This data can be used to improve efficiency, safety, and productivity in many applications, including smart cities, grids, industrial internet, computer security, etc. One of the main components of the IoT is the antenna. Antennas are responsible for transmitting and receiving the data that flows between IoT devices. To be effective, IoT antennas must be small, light, and easy to integrate into devices. They must also be able to operate in various environments, including those with elevated interference levels. This resource covers a wide range of topics, including the challenges and opportunities involved in designing antennas for IoT applications and the importance of miniaturization in IoT antenna design. A comprehensive list of references is included, making it a valuable resource for further study. This is an essential resource for engineers, researchers, and anyone who wants to learn more about the latest trends in IoT antenna design.

Antenna Design for Narrowband IoT

Antenna Design for Narrowband IoT PDF Author: Balachandra Pattanaik
Publisher: Engineering Science Reference
ISBN: 9781799893158
Category : Technology & Engineering
Languages : en
Pages : 315

Book Description
"The purpose of this book is to provide an antenna design concept for Narrowband Internet of Things Applications and to discuss the variety of antenna design concepts and structures for various industrial requirements"--

Antennas for IoT

Antennas for IoT PDF Author: Kulkarni P. Prutha
Publisher: Artech House Publishers
ISBN: 9781630819934
Category : Technology & Engineering
Languages : en
Pages : 0

Book Description
This book provides a comprehensive overview of the latest trends in Internet of Things (IoT) antenna design. IoT is a rapidly growing network of interconnected devices that can collect and exchange data. This data can be used to improve efficiency, safety, and productivity in many applications, including smart cities, grids, industrial internet, computer security, etc. One of the main components of the IoT is the antenna. Antennas are responsible for transmitting and receiving the data that flows between IoT devices. To be effective, IoT antennas must be small, light, and easy to integrate into devices. They must also be able to operate in various environments, including those with elevated interference levels. This resource covers a wide range of topics, including the challenges and opportunities involved in designing antennas for IoT applications and the importance of miniaturization in IoT antenna design. A comprehensive list of references is included, making it a valuable resource for further study. This is an essential resource for engineers, researchers, and anyone who wants to learn more about the latest trends in IoT antenna design.

IoT Architectures, Models, and Platforms for Smart City Applications

IoT Architectures, Models, and Platforms for Smart City Applications PDF Author: Chowdhry, Bhawani Shankar
Publisher: IGI Global
ISBN: 1799812553
Category : Computers
Languages : en
Pages : 291

Book Description
Developing countries are persistently looking for efficient and cost-effective methods for transforming their communities into smart cities. Unfortunately, energy crises have increased in these regions due to a lack of awareness and proper utilization of technological methods. These communities must explore and implement innovative solutions in order to enhance citizen enrollment, quality of government, and city intelligence. IoT Architectures, Models, and Platforms for Smart City Applications provides emerging research exploring the theoretical and practical aspects of transforming cities into intelligent systems using IoT-based design models and sustainable development projects. This publication looks at how cities can be built as smart cities within limited resources and existing advanced technologies. Featuring coverage on a broad range of topics such as cloud computing, human machine interface, and ad hoc networks, this book is ideally designed for urban planners, engineers, IT specialists, computer engineering students, research scientists, academicians, technology developers, policymakers, researchers, and designers seeking current research on smart applications within urban development.

Antenna Design for Narrowband IoT: Design, Analysis, and Applications

Antenna Design for Narrowband IoT: Design, Analysis, and Applications PDF Author: Pattanaik, Balachandra
Publisher: IGI Global
ISBN: 1799893170
Category : Technology & Engineering
Languages : en
Pages : 261

Book Description
In internet of things (IoT) applications, wireless connectivity is a key factor, particularly those that need to be in transition, or where wired communication is not effective or practicable. For top-notch connectivity of the Narrowband IoT (NB-IoT) standard, the 900MHz frequency is generally used by most of the vendors. The radiation quality not only depends on the antenna geometry but on immediate surroundings. Additionally, the IoT product itself and the user of the product can strongly affect the resulting radiation pattern and other characteristics of the antenna. On the other hand, a suitable antenna should also have high efficiency and adequate bandwidth covering the desired frequency range. To take these effects into consideration, the whole IoT product must be included in the antenna simulations. Antenna Design for Narrowband IoT: Design, Analysis, and Applications provides the antenna design concept for narrowband internet of things applications, performs a detailed analysis of the antenna, and discusses the various antenna design concepts and structures. Covering a range of topics such as antenna design and antenna measurement systems, this book is ideal for industry professionals, research scholars, academicians, professors, and students.

Internet of Things Enabled Antennas for Biomedical Devices and Systems

Internet of Things Enabled Antennas for Biomedical Devices and Systems PDF Author: Praveen K. Malik
Publisher: Springer Nature
ISBN: 9819902126
Category : Technology & Engineering
Languages : en
Pages : 269

Book Description
The book consists of the latest research in biomedical and communication integration. It discusses the fabrication and testing outcomes of the Internet of Things-enabled biomedical applications. The book focuses on recent advances in the field of planar antenna design and their applications in space communication, mobile communication, wireless communication, and wearable applications. Planar antennas are also used in medical applications in microwave imaging, medical implants, hyperthermia treatments, and wireless wellness monitoring. This book presents planar antenna design concepts, methods, and techniques to enhance the performance parameters and applications for IoT and device-to-device communication. It provides the latest techniques used for the design of antennas in terms of their structures, defected ground, MIMO, and fractal design. This book also addresses the specific steps to resolve issues in designing antennas and how to design conformal and miniaturized antenna structures for various applications.

Antenna-in-Package Technology and Applications

Antenna-in-Package Technology and Applications PDF Author: Duixian Liu
Publisher: John Wiley & Sons
ISBN: 1119556635
Category : Technology & Engineering
Languages : en
Pages : 416

Book Description
A comprehensive guide to antenna design, manufacturing processes, antenna integration, and packaging Antenna-in-Package Technology and Applications contains an introduction to the history of AiP technology. It explores antennas and packages, thermal analysis and design, as well as measurement setups and methods for AiP technology. The authors—well-known experts on the topic—explain why microstrip patch antennas are the most popular and describe the myriad constraints of packaging, such as electrical performance, thermo-mechanical reliability, compactness, manufacturability, and cost. The book includes information on how the choice of interconnects is governed by JEDEC for automatic assembly and describes low-temperature co-fired ceramic, high-density interconnects, fan-out wafer level packaging–based AiP, and 3D-printing-based AiP. The book includes a detailed discussion of the surface laminar circuit–based AiP designs for large-scale mm-wave phased arrays for 94-GHz imagers and 28-GHz 5G New Radios. Additionally, the book includes information on 3D AiP for sensor nodes, near-field wireless power transfer, and IoT applications. This important book: • Includes a brief history of antenna-in-package technology • Describes package structures widely used in AiP, such as ball grid array (BGA) and quad flat no-leads (QFN) • Explores the concepts, materials and processes, designs, and verifications with special consideration for excellent electrical, mechanical, and thermal performance Written for students in electrical engineering, professors, researchers, and RF engineers, Antenna-in-Package Technology and Applications offers a guide to material selection for antennas and packages, antenna design with manufacturing processes and packaging constraints, antenna integration, and packaging.

Wearable Systems and Antennas Technologies for 5G, IOT and Medical Systems

Wearable Systems and Antennas Technologies for 5G, IOT and Medical Systems PDF Author: Albert Sabban
Publisher: CRC Press
ISBN: 100022354X
Category : Technology & Engineering
Languages : en
Pages : 646

Book Description
Due to progress in the development of communication systems, it is now possible to develop low-cost wearable communication systems. A wearable antenna is meant to be a part of the clothing or close to the body and used for communication purposes, which include tracking and navigation, mobile computing and public safety. Examples include smartwatches (with integrated Bluetooth antennas), glasses (such as Google Glass with Wi-Fi and GPS antennas), GoPro action cameras (with Wi-Fi and Bluetooth antennas), etc. They are increasingly common in consumer electronics and for healthcare and medical applications. However, the development of compact, efficient wearable antennas is one of the major challenges in the development of wearable communication and medical systems. Technologies such as printed compact antennas and miniaturization techniques have been developed to create efficient, small wearable antennas which are the main objective of this book. Each chapter covers enough mathematical detail and explanations to enable electrical, electromagnetic and biomedical engineers and students and scientists from all areas to follow and understand the topics presented. New topics and design methods are presented for the first time in the area of wearable antennas, metamaterial antennas and fractal antennas. The book covers wearable antennas, RF measurements techniques and measured results in the vicinity of the human body, setups and design considerations. The wearable antennas and devices presented in this book were analyzed by using HFSS and ADS 3D full-wave electromagnetics software. Explores wearable medical systems and antennas Explains the design and development of wearable communication systems Explores wearable reconfigurable antennas for communication and medical applications Discusses new types of metamaterial antennas and artificial magnetic conductors (AMC) Reviews textile antennas Dr. Albert Sabban holds a PhD in Electrical Engineering from the University of Colorado at Boulder, USA (1991), and an MBA from the Faculty of Management, Haifa University, Israel (2005). He is currently a Senior Lecturer and researcher at the Department of Electrical and Electronic Engineering at Kinneret and Ort Braude Engineering Colleges.

Smart Antennas

Smart Antennas PDF Author: Praveen Kumar Malik
Publisher: Springer Nature
ISBN: 3030766365
Category : Technology & Engineering
Languages : en
Pages : 421

Book Description
This book presents the latest techniques for the design of antenna, focusing specifically on the microstrip antenna. The authors discuss antenna structure, defected ground, MIMO, and fractal design. The book provides the design of microstrip antenna in terms of latest applications and uses in areas like IoT and device-to-device communication. The book also provides the current methods and techniques used for the enhancement of the performance parameters of the microstrip antenna. Chapters enhance the knowledge and skills of students and researchers in the latest in the communications world like IoT, D2D, satellite, wearable devices etc. The authors discuss applications such as microwave imaging, medical implants, hyperthermia treatments, and wireless wellness monitoring and how a decrease in size of antenna help facilitate application potential. Provides the latest techniques used for the design of antenna in terms of its structure, defected ground, MIMO and fractal design; Outlines steps to resolve issues with designing antenna, including the latest design and design parameters for microstrip antenna; Presents the design of conformal and miniaturized antenna structures for various applications.

Multi-Mode Wearable Fabric Antennas for IoT Applications

Multi-Mode Wearable Fabric Antennas for IoT Applications PDF Author: Umar Hasni
Publisher:
ISBN:
Category : Internet of things
Languages : en
Pages :

Book Description
Applications in the field of wearable electronics have seen significant growth in recent years. The wearable electronics industry itself is expected to grow up to $52 billion by 2022 [1]. Smart watches capable of various IoT and health data acquisition applications account for a large portion of the wearable market. While most wearable devices are capable of extracting health data such as heart and respiratory rate, body motion data extraction require different types of wearable electronics. This directly impacts everyday practicality as at any given time a finite number of devices can be worn by a user. With increasing demand for advanced features such as gesture control and high speed (5G) wireless IoT device interface, multiple wearable sensors/devices are needed prompting development of fully integrated wearable electronics. Examples of these include form-fitting clothing with off-the-shelf electromyogram (EMG) sensors sewn in for applications such as tracking muscle health and movement for gesture control and interactive 3D user space. Although such devices provide important data, they lack human-body conformity. This lack of practicality and comfortable wearability over long periods of time is attributed to the expensive and rigid nature of the integrated sensors. One method of ensuring long-term comfort and usability is to develop devices using everyday fabrics. The research proposed in this dissertation seeks to develop smart wearable antennas for long term use, on fabric substrates for multi-mode operation, sensing applications such as augmented touch, motion tracking and IoT device communication. A new coplanar topology utilizing coplanar wave guides for an ultra-wideband fabric antenna is presented. Method for substrate material (fabrics) relative permittivity property manipulation via commercially available dielectric inks for resonance pinning, in air and on skin, is discussed. A new set of guidelines are shown for wearable antenna designed on fabric materials for long term device viability and usability testing along with IoT device communication and motion capture.