Buch, Englisch, 480 Seiten, Format (B × H): 156 mm x 234 mm
Buch, Englisch, 480 Seiten, Format (B × H): 156 mm x 234 mm
Reihe: Smart Technologies for Engineers and Scientists
ISBN: 978-1-032-82121-4
Verlag: Taylor & Francis Ltd
This book covers both transmitters and receivers of modern microwave devices designed for a wide range of practical applications. It focuses on different types of antennas, filters, amplifiers, and oscillators and their optimization techniques for the design of networks which are most useful in modern communication systems such as the Internet of Things, remote sensing, and space applications.
• Focuses on specific applications of microwave device design such as body-centric networks, wearable, implantable, and internet of medical things.
• Covers the design and implementation of the defense networks and discusses the application of RADAR optimization algorithms.
• Presents advanced topics such as the integration of machine learning, and artificial intelligence for designing microwave devices.
• Examines modern microwave devices for next-generation communication systems, such as 5G and beyond, satellites, and RADAR applications.
• Explains the implementation and challenges for unmanned aerial vehicles (UAV), ground-penetrating radar (GPR), and remote sensing applications (RSA) on aerial platforms.
The text is primarily written for senior undergraduates, graduate students, and academic researchers in the fields including electrical engineering, electronics and communication engineering, computer science and engineering, and telecommunications.
Zielgruppe
Academic, Postgraduate, and Undergraduate Advanced
Autoren/Hrsg.
Fachgebiete
Weitere Infos & Material
1. Different Feeding Networks to Generate Wideband Circular Polarization Waves in Different Shapes of Dielectric Resonators. 2. Development and Analysis of Symmetric Circular Rings Incorporated Modified Circular Patch Antenna for Numerous Wireless Applications. 3. On the Behavior of Multiband, High Gain Fractal Curves based Microstrip Patch Antenna. 4. MIMO Antenna Systems for 5G and Beyond Wireless Communication. 5. Design and Performance Analysis of Metamaterials Incorporated Microstrip Antennas for 5G and Beyond Wireless Applications. 6. Flexible Antennas for Wireless Body Area Network Applications. 7. Metamaterial Based Antennas for Biomedical Applications. 8. A gm/Id based Low Power High Gain CMOS Folded Cascode OTA for Biomedical. 9. Design and Investigations on Conformal Vivaldi Antenna for Wireless Capsule Endoscopic System. 10. The Practical Implementations of Microwave Devices for IoMT, Wearable, Sensors and Healthcare Applications. 11. 5G Beam Steering Techniques. 12. Design Principles and Numerical Analysis of Ultrathin Polarization-Insensitive Hybrid FSS: Dual Wide-Stopband and Triple Passband Characteristics Exploration. 13. RF Energy Harvesting, IOT, Flexible and Implanted Microwave Device. 14. Machine Learning Methods in Drone Detection: A Comprehensive Survey.