陆军研究实验室超宽带试验台雷达

M. Ressler, L. Happ, L. Nguyen, T. Ton, M. Bennett
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引用次数: 34

摘要

1988年,陆军研究实验室(ARL)开始了一项研究计划,以确定将新兴技术结合在一起的可行性,以分析穿透非均匀介质(如树木/树叶覆盖或地面)的问题。这些研究的结果表明,在这一领域的持续工作和赞助使能技术可以产生一个可实现的系统,从而导致对与树叶和地面穿透雷达相关的物理的理解。基于1988年可用的技术,ARL采用了超宽带(UWB)合成孔径雷达(SAR)来收集支持树叶穿透(FOPEN)和地面穿透(OPEN)研究的数据。这些程序旨在测量和分析脉冲雷达的基本现象,特别是目标、杂波和嵌入杂波中的目标的传播效应。当时,ARL开发的系统缺乏实时数据收集能力。传输功率低,从A/D转换器到数据存档系统的数据传输速率相对较慢,导致系统需要许多脉冲来相干地集成电源,产生大量收集的数据,并且需要50小时的数据收集周期。今天,通过利用商业现成的处理器,先进的A/D转换器,更强大的发射机,并吸取经验教训,作者已经设计并组装了一个更有能力的脉冲实现。本文介绍了升级后的雷达系统及其相关部件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Army Research Laboratory ultra-wide band testbed radars
In 1988, the Army Research Laboratory (ARL) began a research program to determine the feasibility of bringing emerging technologies together to analyze the problem of seeing through an inhomogeneous medium such as tree/foliage cover or the ground. The results of these studies indicated that continuing work in this area and sponsoring enabling technologies could produce a realizable system, thus leading to an understanding of the physics associated with foliage and ground penetration radar. Based on technology available in 1988, ARL instrumented an ultra-wideband (UWB) synthetic aperture radar (SAR) to collect data supportive of foliage penetration (FOPEN) and ground penetration (OPEN) studies. These programs are aimed at measuring and analyzing the basic phenomenology of impulse radar, specifically the propagation effects of targets, clutter, and targets embedded in clutter. At the time, the system developed at ARL lacked real-time data collection capability. Low transmit-power and the relatively slow data-transfer rates from the A/D converter to the data archiving system resulted in a system that needed many pulses to coherently integrate the power up, produced large amounts of collected data, and require a 50-hour data collection period. Today, by taking advantage of commercial off-the-shelf processors, an advanced A/D converter, a more powerful transmitter, and lessons learned, the authors have designed and assembled a more capable impulse implementation. The paper describes this upgraded radar system and the associated components used in the radar.
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