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Studies on microwave antennas : passive intermodulation distortion in antenna structures and design of microstrip antenna elements

机译:微波天线研究:天线结构中的无源互调失真和微带天线元件的设计

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摘要

Passive intermodulation (PIM) measurements of antennas and the design of dual-polarised microstrip antenna elements are investigated in this thesis. The emphasis is on the development of a passive intermodulation source localisation method and on the studies of the PIM source behaviour under various impedance loading conditions.Passive intermodulation distortion can be harmful in wireless communication systems where the difference between the transmitted and the received power is large such as in GSM base stations. One of the most critical components is the antenna. As the antennas become more complex, the risk of getting excessive PIM distortion increases. Therefore, the antenna designer needs to have knowledge about the PIM phenomenon and proper tools to investigate various antenna structure configurations.The concept of PIM near-field measurement is introduced and the implementation of the equipment for the GSM 900 frequency band is presented. The performance of the scanner is analysed and demonstrated with measurements. The scanner is capable of locating PIM sources in antennas and other open structures down to −110 dBm when the transmitted power is 43 dBm. The limiting factors of the scanner sensitivity are considered and several sensitivity measurements are performed. An analysis of the impedance loading effects on PIM measurements is carried out. The conducted measurements support the theory that the loading impedance effects can be several decibels, when the source or load return loss is less than 20 dB, which is the case with many filters and antennas used in base stations.Dual-polarised antenna elements are needed in various array antenna applications. Two compact antenna element designs with moderate bandwidth and dual polarisation are introduced in the 12 GHz frequency band. The elements use a dual-resonant structure in order to achieve an impedance bandwidth of 16 % (Lretn > 10 dB). The arrangement of the antenna feeds results in an isolation of 35 dB between the ports.
机译:本文研究了天线的无源互调(PIM)测量和双极化微带天线元件的设计。重点是无源互调源定位方法的发展以及在各种阻抗负载条件下PIM源行为的研究。无源互调失真在发射功率和接收功率之差较大的无线通信系统中可能是有害的例如在GSM基站中。天线是最关键的组件之一。随着天线变得越来越复杂,PIM失真过大的风险也随之增加。因此,天线设计人员需要具备有关PIM现象的知识以及研究各种天线结构配置的适当工具。介绍了PIM近场测量的概念,并介绍了适用于GSM 900频段的设备的实现。分析扫描仪的性能,并通过测量进行演示。当发射功率为43dBm时,扫描仪能够定位天线和其他开放结构中的PIM源,低至-110dBm。考虑了扫描仪灵敏度的限制因素,并执行了几项灵敏度测量。进行了阻抗负载对PIM测量的影响分析。进行的测量支持以下理论:当源或负载回波损耗小于20 dB时,负载阻抗效应可能为几个分贝,这在基站中使用了许多滤波器和天线时就是这种情况。需要双极化天线元件在各种阵列天线应用中。在12 GHz频带中引入了两种带宽适中,双极化的紧凑型天线元件设计。这些元件采用双谐振结构,以实现16%(Lretn> 10 dB)的阻抗带宽。天线馈源的布置导致端口之间的隔离度为35 dB。

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    Hienonen Sami;

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  • 年度 2005
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