Phased array receiver filtering and demonstration of digital beamforming on measured wideband data

D. Scarpone, J. Stringer, G. Akers
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引用次数: 0

Abstract

The MCWESS array is a 256-element, 16-channel phased array receiver which was recently built for research purposes in the Air Force Research Laboratory (AFRL) Sensors Directorate. Current research at AFIT includes signal processing techniques for adaptive wideband digital beamforming. To support the research, with the help of engineers at AFRL, wideband data was collected using the MCWESS array. The signals collected were received from three different, spatially separated, bandlimited, thermal noise sources. The noise sources have the wide bandwidth desired to support wideband digital beamforming (DBF) research. When the resulting data from the receiver did not correlate with the transmitted noise signal as expected, a closer examination of the set hardware processing done on the signal revealed the signal's true nature. This paper outlines the systematic process followed to determine the actual content of the data, shows that direction of arrival (DOA) estimation is possible when using wideband beamforming techniques even on only a partial signal spectrum, and demonstrates wideband beamforming on measured data using a time reversal beamforming algorithm developed by AFRL.
相控阵接收机滤波及基于实测宽带数据的数字波束形成演示
MCWESS阵列是一种256单元、16通道相控阵接收器,最近在美国空军研究实验室(AFRL)传感器理事会为研究目的而建造。AFIT目前的研究包括自适应宽带数字波束形成的信号处理技术。为了支持这项研究,在AFRL工程师的帮助下,使用MCWESS阵列收集宽带数据。采集的信号来自三个不同的、空间分离的、带宽有限的热噪声源。噪声源具有支持宽带数字波束形成(DBF)研究所需的宽带带宽。当来自接收器的结果数据与预期的发射噪声信号不相关时,对信号进行的硬件处理的更仔细检查揭示了信号的真实性质。本文概述了确定数据实际内容的系统过程,表明即使仅在部分信号频谱上使用宽带波束形成技术也可以估计到达方向(DOA),并演示了使用AFRL开发的时间反转波束形成算法对测量数据进行宽带波束形成。
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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