Microwave RF Antennas and Circuits. Nonlinearity Applications in Engineering
โ Scribed by Ofer Aluf
- Publisher
- Springer
- Year
- 2017
- Tongue
- English
- Leaves
- 1060
- Category
- Library
No coin nor oath required. For personal study only.
โฆ Synopsis
This book describes a new concept for analyzing RF/microwave circuits, which includes RF/microwave antennas. The book is unique in its emphasis on practical and innovative microwave RF engineering applications. The analysis is based on nonlinear dynamics and chaos models and shows comprehensive benefits and results. All conceptual RF microwave circuits and antennas are innovative and can be broadly implemented in engineering applications.
Given the dynamics of RF microwave circuits and antennas, they are suitable for use in a broad range of applications. The book presents analytical methods for microwave RF antennas and circuit analysis, concrete examples, and geometric examples. The analysis is developed systematically, starting with basic differential equations and their bifurcations, and subsequently moving on to fixed point analysis, limit cycles and their bifurcations.
Engineering applications include microwave RF circuits and antennas in a variety of topological structures, RFID ICs and antennas, microstrips, circulators, cylindrical RF network antennas, Tunnel Diodes (TDs), bipolar transistors, field effect transistors (FETs), IMPATT amplifiers, Small Signal (SS) amplifiers, Bias-T circuits, PIN diode circuits, power amplifiers, oscillators, resonators, filters, N-turn antennas, dual spiral coil antennas, helix antennas, linear dipole and slot arrays, and hybrid translinear circuits. In each chapter, the concept is developed from the basic assumptions up to the final engineering outcomes. The scientific background is explained at basic and advanced levels and closely integrated with mathematical theory.
The book also includes a wealth of examples, making it ideal for intermediate graduate level studies. It is aimed at electrical and electronic engineers, RF and microwave engineers, students and researchers in physics, and will also greatly benefit all engineers who have had no formal instruction in nonlinear dynamics, but who now desire to bridge the gap between innovative microwave RF circuits and antennas and advanced mathematical analysis methods.
โฆ Table of Contents
Front Matter....Pages i-xvii
RFID Antennas Systems Descriptions and Analysis....Pages 1-153
Microwave Elements Description and Stability Analysis....Pages 155-277
Microwave Semiconductor Amplifiers Analysis....Pages 279-403
Small Signal (SS) Amplifiers and Matching Network Stability Analysis....Pages 405-511
Power Amplifier (PA) System Stability Analysis....Pages 513-600
Microwave/RF Oscillator Systems Stability Analysis....Pages 601-672
Filters Systems Stability Analysis....Pages 673-781
Antennas System Stability Analysis....Pages 783-902
Microwave RF Antennas and Circuits Bifurcation Behavior, Investigation, Comparison and Conclusion....Pages 903-911
Back Matter....Pages 913-1052
๐ SIMILAR VOLUMES
This newly and thoroughly revised edition of the 1988 Artech House classic offers you a comprehensive, up-to-date treatment of nonlinear microwave and RF circuits. It gives you a current, in-depth understanding of the theory of nonlinear circuit analysis with a focus on Volterra-series and harmo
This newly and thoroughly revised edition of the 1988 Artech House classic offers you a comprehensive, up-to-date treatment of nonlinear microwave and RF circuits. It gives you a current, in-depth understanding of the theory of nonlinear circuit analysis with a focus on Volterra-series and harmonic-
Designed for microwave and RF engineers, this is a presentation of nonlinear microwave and RF circuits. It offers an understanding of the theory of nonlinear circuit analysis that they need for their work in the field. There is guidance on designing nonlinear circuits and modelling solid-state devic
Designed for microwave and RF engineers, this is a presentation of nonlinear microwave and RF circuits. It offers an understanding of the theory of nonlinear circuit analysis that they need for their work in the field. There is guidance on designing nonlinear circuits and modelling solid-state devic