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A novel portable bipolar near-field measurement system for millimeter-wave antennas: construction, development, and verification

机译:用于毫米波天线的新型便携式双极近场测量系统:构造,开发和验证

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As new antenna designs require higher frequencies and smaller sizes, traditional large-scale antenna measurement systems become ill-suited for such measurements. External mixing, room-sized chambers, and expensive test equipment add large costs and burdens to antenna measurement systems. A smaller and more cost-effective system is presented in this paper. Using the bipolar planar scanning technique developed at UCLA, a portable millimeter-wave antenna measurement system has recently been constructed. The system was designed to fit on the end of a standard optical table, and enjoys the spacesaving and accuracy inherent to the bipolar planar configuration. Simple construction of the chamber allows for relatively easy assembly and disassembly, and allows movement of the system from one table to another, if needed. Antennas of diameters up to 24 in can be accommodated, and scan planes of up to a diameter of 60 in can be measured. Millimeter-wave frequencies from around 30 GHz to 67 GHz can be measured, with potential extension to higher frequencies. Planar nearfield- to-far-field techniques are used to construct the antenna's far-field patterns from the measured near field. In particular, the post processing follows the OSI/EFT method for pattern reconstruction and diagnostics. The design of the scanner configuration allows the incorporation of the phase-retrieval techniques developed for the bipolar configuration. These phaseless measurements allow the use of scalar millimeter-wave test equipment, with much lower cost than comparable vector test equipment.
机译:由于新的天线设计需要更高的频率和更小的尺寸,因此传统的大型天线测量系统不适合此类测量。外部混合,房间大小的腔室和昂贵的测试设备会增加天线测量系统的成本和负担。本文提出了一个较小的,更具成本效益的系统。使用在加州大学洛杉矶分校开发的双极平面扫描技术,最近已经构建了便携式毫米波天线测量系统。该系统设计为可安装在标准光学平台的末端,并具有双极平面配置固有的节省空间和精度的优点。腔室的简单构造允许相对容易地组装和拆卸,并且如果需要的话,允许系统从一张桌子移动到另一张桌子。可以容纳直径最大为24 in的天线,并且可以测量直径最大为60 in的扫描平面。可以测量大约30 GHz至67 GHz的毫米波频率,并且有可能扩展到更高的频率。平面近场至远场技术用于根据测得的近场构造天线的远场方向图。特别地,后处理遵循OSI / EFT方法进行模式重建和诊断。扫描仪配置的设计允许并入为双极配置开发的相位检索技术。这些无相位测量允许使用标量毫米波测试设备,其成本要比同类矢量测试设备低得多。

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