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Receiving Performance Enhancement of Active GPS Antenna with Periodic Structure

机译:具有周期性结构的有源GPS天线的接收性能增强

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The purpose of this study is to design the high gain active GPS antenna module and analyze the performance improvement implemented with periodic structure. Since the utilization of high-impedance surface of periodic structures as reflector not only significantly reduces the antenna profile with phase enhancement, but it will also enhance its gain and directivity performance. We first investigated the electromagnetic radiation suppression characteristic of Electromagnetic Band-Gap (EBG) structure and utilized the microstrip measurement method to verify the simulation result for required stopband and performance. In this study, we design microstrip antenna and periodic structure with center frequency at 1.575 GHz for Global Positioning System (GPS) to investigate the effect with applications of EBG structure on antenna. Microstrip antenna has the industrial demanding characteristics of light weight, low profile, and easy integration with circuits on PCB. We investigated surface wave suppression and axial ratio improvement with the antenna surrounded by matching resonant EBG structure. Finally, we design the front-end low noise amplifier (LNA) with center frequency at 1.575 GHz to integrate with antenna to further improve GPS receiving sensitivity.
机译:本研究的目的是设计高增益有源GPS天线模块,并分析采用周期性结构实现的性能改进。由于利用周期性结构的高阻抗表面作为反射器,不仅通过相位增强显着减小了天线轮廓,而且还将增强其增益和指向性。我们首先研究了电磁带隙(EBG)结构的电磁辐射抑制特性,并利用微带测量方法验证了所需阻带和性能的仿真结果。在这项研究中,我们为全球定位系统(GPS)设计了中心频率为1.575 GHz的微带天线和周期结构,以研究EBG结构在天线上的应用效果。微带天线具有重量轻,外形小巧且易于与PCB上的电路集成的工业要求特性。我们研究了天线在匹配谐振EBG结构包围下的表面波抑制和轴向比率的改善。最后,我们设计了中心频率为1.575 GHz的前端低噪声放大器(LNA),与天线集成在一起,以进一步提高GPS接收灵敏度。

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