Active Array Measurements using the Portable Laser Guided Robotic Metrology System

M. Piasecki, P. Slater, J. Downey, Bryan L. Schoenholz, K. Lambert
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引用次数: 3

Abstract

In this paper, we will discuss the impact of mounting structures on the installed performance of phased arrays. In particular, performance data for the Conformal, Lightweight Antennas for Aeronautical Communications Technology (CLAS-ACT) antenna will be presented. Performance data from a series of mounting configurations will show that null depth and location is particularly susceptible to change while the main beam steering angle remains relatively stable. In addition, the Portable Laser Guided Robotic Metrology (PLGRM) system will be discussed as a suitable instrument for measuring antenna patterns in complex or difficult locations that are challenging for traditional ranges. The PLGRM system was recently developed at the National Aeronautics and Space Administration’s (NASA) Glenn Research Center (GRC) and deployed to measure in situ antenna patterns.
使用便携式激光制导机器人测量系统的有源阵列测量
在本文中,我们将讨论安装结构对相控阵安装性能的影响。特别是,将介绍用于航空通信技术的保形轻型天线(CLAS-ACT)天线的性能数据。来自一系列安装配置的性能数据表明,在主波束转向角度保持相对稳定的情况下,零深度和位置特别容易发生变化。此外,便携式激光制导机器人测量(PLGRM)系统将被讨论,作为一种适合测量传统范围具有挑战性的复杂或困难位置的天线方向图的仪器。PLGRM系统最近由美国国家航空航天局(NASA)格伦研究中心(GRC)开发,用于测量原位天线方向图。
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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