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Research on High Gain Antennas and Dielectric Surfaces for RCS Reduction

ABSTRACT第6-8页
CHAPTER 1:GENERAL INTRODUCTION第12-20页
    §1.1. Background第12-14页
    §1.2. Advantages of E-band Communications第14页
    §1.3. E-band Licensing第14-15页
    §1.4. Motivations and Objectives第15-16页
    §1.5. Outline of this thesis第16-17页
    REFERENCES第17-20页
CHAPTER 2:HIGH GAIN ANTENNAS FOR E-BAND APPLICATIONS第20-54页
    §2.1. Lens Corrected Conical Horn Antenna第20-41页
        §2.1.1 Introduction第20-23页
        §2.1.2 Principle of Operation of the Lens第23-24页
        §2.1.3 Lens Horn Antenna Design and Results第24-29页
        §2.1.4 Fabrication and Measurements Results第29-34页
        §2.1.5 Fresnel Lens Design and Comparison第34-41页
    §2.2. High Gain Pyramidal Horn Lens Antenna第41-45页
        §2.2.1. Analysis and Design第41-45页
        §2.2.2. Antenna Manufacturing and Measurements Results第45页
    §2.3. Conclusions第45-46页
    REFERENCES第46-54页
CHAPTER 3:BEAM SCANING LENS ANTENNAS AT E-BAND第54-72页
    §3.1. Introduction第54-56页
    §3.2. Single Beam Lens Antenna Design and Results第56-59页
        §3.2.1 Background第56页
        §3.2.2. Design Principle第56-58页
        §3.2.3. Dielectric lens design and Results第58-59页
    §3.3. Beam Scanning Lens Antenna Design at E-band第59-66页
        §3.3.1. Return Loss Measurements第60-62页
        §3.3.2. Beam Scanning capability investigation第62-66页
    §3.4. Conclusions第66-67页
    REFERENCES第67-72页
CHAPTER 4:PHASE ERROR ANALYSIS OF DISCRETE DIELECTRIC LENS AT 94 GHz第72-90页
    §4.1. Introduction第72-73页
    §4.2. Phase Error Analysis第73-81页
    §4.3. Lens Antenna Fabrication第81页
    §4.4. Measurement Results第81-86页
        §4.4.1. Return Loss |S11| measurements第81-82页
        §4.4.2. Far-Field Radiation Pattern Measurements第82-84页
        §4.4.3. Gain Measurements and Aperture Efficiency Discussion第84-86页
    §4.5. Conclusions第86-87页
    REFERENCES第87-90页
CHAPTER 5:PLANAR SURFACES FOR RADAR CROSS-SECTION REDUCTION AT MILLIMETER WAVES第90-128页
    §5.1. Basics of Radar Cross Section第90-92页
    §5.2. RCS Reducer Surfaces Based on Antenna Array Theory第92-101页
        §5.2.1 Principle of operation of the RCS Reducer Surface第92-93页
        §5.2.2 Dielectric Unit Cell Reflection Phase Characterization第93-94页
        §5.2.3 Dielectric Surfaces Based on Antenna Array Theory第94-101页
        §5.2.4 Fabrication and Measurements第101页
    §5.3. Investigation of the Unit Cell Distribution Effect第101-103页
    §5.4. Dielectric Surfaces for Diffuse Reflections第103-119页
        §5.4.1 Required Effective Permittivity Realization第105-106页
        §5.4.2 Dielectric Surfaces Design and Results第106-116页
        §5.4.3 Fabrication and Measurements第116-119页
    §5.5. Design of Random 2-bit dielectric Surface第119-122页
    §5.6. Conclusions第122-123页
    REFERENCES第123-128页
CHAPTER 6:CONCLUSIONS AND FUTURE WORK第128-132页
    §6.1. Conclusions第128-130页
    §6.2. Future Work第130-132页
作者及其成果简介第132-134页
ACKNOWLEDGEMENT第134页

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