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全向缝隙天线技术(英文版)

全向缝隙天线技术(英文版)

作者:耿军平 著

出版社:上海交通大学出版社

出版时间:2022-08-01

ISBN:9787313271877

定价:¥128.00

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内容简介
  本书为2021年度国家科技著作出版基金资助项目。全书共9章,基于同轴缝隙的全向圆极化天线及其衍生的天线系列的研究思路、原理和方法,详细介绍了同轴TEM行波与正交缝隙阵列泄漏的原理,通过引入多端口网络形成极化分集与空间分集,可重构的多波束天线设计等,为适应不同频率、场景等需求的缝隙天线的设计提供思路和方法。本书的研究成果对于动态环境下的车载通信、空/天地通信等有很好的应用价值,对从事天线和无线通信研究的有关科技工作者和师生有重要的参考价值,可作为从事天线和无线通信研究设计的研究者和技术人员的参考用书。
作者简介
  耿军平,Dr.Junping Geng received his B.E degree in plasticworking of metals,M.S.degree in corrosion and protection ofequipment,add Ph.D.degree in circuit and systemfrom the Northwestem Polytechnical University,Xian,China,in 1996,1999 and 2003,respectively.From 2003 to 2005.he Was a postdoctoral researcher in Shanghai Jiao Tong University,Shanghai,China.InApril 2005,he joined the faculty ofthe Emconic Engi-neering Department,Shanghai Jiao Tong University.He-was promoted to an associated professor in 2008.
目录
l Introduction
1.1 Background and Demand
1.2 Research Development of the Omnidirectional Circularly
Polarized Antennas
1.2.1 Onmidirectional Circularly Polarized Antennas
1.2.2 Research on Omnidirectional Circularly Polarized
TaDered Beam Antenna
1.2.3 Omnidirectional Polarization Reconfigurable
Circularly Polarized Antenna
1.3 Content and Construction ofthe Book
References
2 Basic Theory of Omnidirectional Antenna and Slot Array
2.1 The Basic Theory ofthe Transmission Line
2.1.1 The Uniform Transmission Line
2.1.2 T11e State Parameters and Impedance ofthe TL
2.1.3 111e Short State ofthe Lossless TL
2.2 The Basic neory of CoaxialⅥrave—Guide
2.2.1 The Main Mode of Coaxial Transmission Lin¨EM
2.2.2 TheParametersoftheMainModeinCTL
2.2.3 High Order Modes in the Coaxial Transmission Line
(CTL)
2.3 The Basic Theory to Slot AnteIma
2.4 Basic Theory ofArray Antenna
2.4.1 Product T11eoremofPaRem
2.4.2 Uniform Linear Array
2.4.3 Grating Lobe andthe Interval
2.5 Summary
References
3 Principles of Omnidirectional CP Slot Array Antenna
3.1 Introduction
3.2 Geometry Structure and Principle
3.2.1 Antenna Structure
3.2.2 Design Principle to Omnidirectional CP Radiation
Performance
3.2.3 Impedance Matching and Feed Design
3.3 Antenna Performance Simulation and Verification
3.4 Experiment Results Analysis
3.5 Improved Omnidirectional CP Coaxial Slots Antenna
with Compact Size and High Gain
3.5.1 Improved Antenna Geometry Structure
3.5.2 Improved Antenna Design
3.5.3 AntennaPerformanceDiscussion
3.6 Summary
References
4 Principies of Omnidirectional Dual·CP Slot Array Antenna
4.1 Introduction
4.2 Geometry Structure,Principle and Antenna Design
4.2.1 Antenna Structure
4.2.2 Dual CP Principle
4.3 Antenna Performance Analysis
4.4 Summary
References
5 Dual CP Polarization Diversity and Space Diversity Antennas
Enabled by a Compact T-Shaped Feed Structure
5.1 Introduction
5.2 T-Shaped Feed Structure
5.2.1 TFS Geometry Structure
5.2.2 TFS Impedance Transformation
5.2.3 TFS Performance by Simulation
5.3 The Improved Dual CP Omnidirectional Antenna Fed by TFS
5-3.1 The Principle and Structure ofthe Improved DCPOA
5.3.2 Performance oftheImprovedDCPOA
5_3-3 DCPOA Parametric Study and Analysis
5.3.4 Experimental Verification and Analysis
5.3.5 Comparison with Other Dual CP Antenna
5.4 TFS.Enabled Space Diversity Antealia
5.4.1 The Principle ofthe SDA wim TFS
5.4.2 SDA Structure and Performance
5.4.3 ExperimentalVerification andAnalysis
5.4.4 Comparison with Other Spatial Diversity Antennas
5.5 Summary
References
6 A Circular Truncated Cone Slot Antenna with Circular
Polarized Conical Beam
6.1 Introduction
6.2 Antenna Design and Analysis
6.3 Parameter Analysis
6.4 Results and Discussion
6.5 Summary
References
7 Half-Space Covered Antenna for Air-Ground Communication
7.1 Introduction
7.1.1 111e Principle of the Half Space Covering Antenna
7.1.2 The Key Parameters of the Half Space Covering
Antenna
7.2 Performance Analysis
7.3 Summary
References
8 A Compact Reconligurable Coaxial Slot Antenna
8.1 Introduction
8.2 Design Principle
8.3 Simulation Results
8.4 Summary
References
9 The Omnidirectional,Directional Switchable Antenna Based
on the Curved Microstrip Antenna with Defected Ground
Structure
9.1 Introduction
9.2 Geometry Structure and Analysis Method
9.2.1 Antenna Geometry with Defected Ground
9.2.2 Equivalent Circuit
9.2.3 Simulation Method and Experiment Condition
9.3 ResultAnalysis forPlanarAntennawitIlDGS
9.3.1 Impedance
9.3.2 Lengthl
9.3.3 Length
9.3.4 Cavity
9.3.5 The Opt
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