本書改編自David M. Pozar所著的Microwave Engineering,Third
Edition一書,刪除了原書中介紹鐵氧體元件理論與設計的第9章,以及分析微波系統的第13章,因為這兩章的內容介紹較為簡單,且市面上有專箸論述。第1章至第4章介紹了電磁場的基本理論和電路理論,第5章至第11章利用相關的概念闡明了各種微波電路和器件。在基本理論方面,本書介紹了經典的電磁場理論,敘述了現代微波工程中常用的分布電路和網絡分析方法。在微波電路和器件方面,增加了平面結構元件和集成電路的設計、振蕩器的相位噪聲、晶體管功率放大器、非線性效應以及當今微波工程師經常使用的工具等內容。在每章結尾提供了習題,並在書末提供了部分習題的答案,可供教師選用和學生自測。
1 ELECTROMAGNETIC THEORY
1.1 Introduction to Microwave Engineering
Applications of Microwave Engineering
A Short History of Microwave Engineering
1.2 maxwell﹀s Equations
1.3 Fields in Media and Boundary Conditions
Fields at a General Material Interface
Fields at a Dielectric Interface
Fields at the Interface with a Perfect Conductor(Electric Wall)
The Magnetic Wall Boundary Condition
The Rediation Condition
1.4 The Wave Equation and Basic Plane Wave Solutions
The Helmholtz Equation
Plane Waves in a Lossless Medium
Plane Waves in a General Lossy Medium
Plane Waves a Good Conductor
1.5 General Plane Wave Solutions
Circularly Polarized Plane Waves
1.6 Energy and Power
Power Absorbed by a Good Conductor
1.7 Plane Wave Reflection from a Media Interface
General Medium
Lossless Medium
Good Conductor
Perfect Conductor
The Surface Impedance Concept
1.8 Oblique Incidence at a Dielectric Interface
Parallel Polarization
Perpendicular Polarization
Total Reflection and Surface Waves
1.9 Some Useful Theorems
The Reciprocity Theorem
Image Theory
2 TRANSMISSION LINE THEORY
2.1 The Lumped-Element Circuit Model for a Transmission Line
Wave Propagation on a Transmission Line
The Lossless Line
2.2 Field Analysis of Transmission Lines
Transmission Line Parameters
The Telegrapher Equations Derived from Field Analysis of a Coaxial Line
Propagation Constant,Impedance,and Power Flow for the Lossless
Coaxial Line
2.3 The Terminated Lossless Transmission Line
Special Cases of Lossless Terminated Lines
2.4 The Smith Chart
The Combined Impedance-Admittance Smith Chart
The Slotted Line
2.5 The Quarter-Wave Transformed
The Impedance Viewpoint
The Multiple Reflection Viewpoint
2.6 Generator and Load Mismatches
Load Matched to Line
Generator Matched to Loaded Line
Conjugate Matching
2.7 Lossy Transmission Lines
The Low-Loss Line
The Distortionless Line
The Terminated Lossy Line
The Perturbation Method for Calculating Attenuation
The Wheeler Incremental Inductance Rule
3 TRANSMISSION LINES AND WAVEGUIDES
3.1 General Solutions for TEM,TE,and TM Waves
TEM Waves
TE Waves
TM Waves
Attenuation Due to Dielectric Loss
3.2 Parallel Plate Waveguide
TEM Modes
TM Modes
TE Modes
3.3 Rectangular Waveguide
TE Modes
TM Modes
TMmO Modes of a Partially Loaded Waveguide
3.4 Circular Waveguide
TE Modes
TM Modes
3.5 Coaxial Line
TEM Modes
Higher Order Modes
3.6 Surface Waves on a Grounded Dielectric Slab
TM Modes
TE Modes
3.7 Stripline
Formulas for Propagation Constant,Characteristic Impedance,and Attenuation
An Approximate Electrostatic Solution
3.8 Microstrip
Formulas for Effective Dielectric Constant,Characteristic Impedance,and Attenuation
An Approximate Electrostatic Solution
3.9 The Transverse Resonance Technique
TEOn Modes of a Partially Loaded Rectangular Waveguide
3.10 Wave Velocities and Dispersion
Group Velocity
3.11 Summary of Transmission Lines and Waveguides
Other Types of Lines and Guides
4 MICROWAVE NETWORK ANALYSIS
5 IMPEDANCE MATCHING AND TUNING
6 MICROWAVE RESONATORS
7 POWER DIVIDERS AND DIRECTIONAL COUPLERS
8 MICROWAVE FILTERS
9 NOISE AND ACTIVE COMPOENTS
10 MICROWAVE AMPLIFIER DESIGN
11 OSCILLATORS AND MIXERS
APPENDICES
ANSWERS TO SELECTED PROBLEMS
UESFUL RESULTS
VECTOR ANALYSIS
INDEX