A Compact Reconfigurable Millimeter-Wave Antenna Measurement System Based Upon an Industrial Robot

J. Jerauld, F. Yuen, N. Landy, T. Driscoll
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引用次数: 1

Abstract

Echodyne has recently completed and qualified a new millimeter-wave antenna measurement system for characterization of beam-steering antennas such as our Metamaterial Electronic Steering Arrays (MESAs). Unlike most far-field systems that employ a standard Phi/Theta or Az/El positioner, we use a six-axis industrial robot that can define an arbitrary AUT coordinate system and center of rotation. In different operational modes, the robot is used as an angular AUT positioner (e.g., Az/El) or configured for linear scan areas. This flexible positioning system allows us to characterize the range illumination and quiet zone reflections without modification to the measurement system. With minor modifications, the system could also be used in a planar-near field configuration. Range alignment can be easily performed by redefining the coordinate system of the AUT movement in software. The approximate 5.2-meter range length is within the radiating near-field of many arrays of interest, so we employ spherical near-field (SNF) correction when necessary, using internally-developed code. Specialty tilted absorber was installed in the chamber to improve quiet zone performance, over standard absorber treatment for similar aspect ratio ranges. Narrower ranges often have specular reflections that exceed 60° and benefit from the specialty tilted absorber designed to reduce the angle of incidence. We present an overview of the measurement system and some initial measurement data, along with lessons learned during design and integration.
基于工业机器人的紧凑可重构毫米波天线测量系统
Echodyne最近完成并认证了一种新的毫米波天线测量系统,用于表征波束转向天线,如我们的超材料电子转向阵列(MESAs)。与大多数采用标准Phi/Theta或Az/El定位器的远场系统不同,我们使用六轴工业机器人,可以定义任意AUT坐标系和旋转中心。在不同的操作模式下,机器人被用作角度AUT定位器(例如,Az/El)或配置为线性扫描区域。这种灵活的定位系统使我们能够在不修改测量系统的情况下表征范围照明和安静区反射。稍加修改,该系统也可用于平面近场配置。通过在软件中重新定义AUT运动的坐标系,可以很容易地实现距离对齐。大约5.2米的距离长度在许多感兴趣的阵列的辐射近场范围内,因此我们在必要时使用内部开发的代码使用球面近场(SNF)校正。特殊倾斜吸收器安装在腔室,以提高安静区性能,超过标准吸收器处理类似的长径比范围。较窄的范围通常具有超过60°的镜面反射,并且受益于专门设计的倾斜吸收器,以减少入射角。我们介绍了测量系统的概述和一些初始测量数据,以及在设计和集成过程中吸取的经验教训。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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