甚高频地杂波的测量、分析与处理

H. Kuschel
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引用次数: 1

摘要

固定地面目标(杂波)的雷达回波测量,在掠掠入射照射下进行,LARISSA在其位于Wachtberg的位置进行。测量是在水平极化下进行的,LARISSA系统使用的频率是甚高频。天线是一个4元阵列,可以定向到任意方位方向进行数据采集。它提供的天线波束宽度为20/声压角/。距离分辨率达到78米。测量的目的是为开发电子扫描低频雷达的杂波消除程序提供一个数据库,以探测低空目标。其目的不是精确测量不同类型地面或植被的反射率,而是获取低频杂波在放牧入射下的动态范围和统计特性的知识。杂波测量主要分析其空间分布,更重要的是分析其时间波动和相干性。地形结构变化很大,从森林起伏的丘陵到平坦的乡村田野和果园。相干分析表明,包含一个分辨率单元的杂波回波的连续脉冲具有较高的相位稳定性。首先,对杂波区域的空间分布进行了预测和测量,并对突发间杂波波动进行了分析,对杂波的时间稳定性进行了概述。通过对脉冲间杂波统计和时间相干性的深入分析,提出了一种相干杂波映射处理器来去除接收信号中的杂波能量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Measurement, analysis and processing of VHF ground clutter
Radar echo measurements of stationary ground targets (clutter), illuminated at grazing incidence, have been conducted with LARISSA at its location in Wachtberg. The measurements were conducted with horizontal polarisation and the frequency used in the LARISSA system was upper VHF. The antenna is a 4-element array that can be directed to an arbitrary azimuth direction for data acquisition. It provides an antenna beamwidth of 20/spl deg/. A range resolution of 78 meters is achieved. The objective of the measurements was to provide a database for the development of clutter cancellation procedures for electronic scanning low frequency radars to detect low level air targets. Rather than measure precisely the reflectivity of different types of ground or vegetation, the intention was to acquire knowledge about the dynamic range and statistical properties of low frequency clutter at grazing incidence. The clutter measurements were analysed with respect to their spatial distribution and more important to their temporal fluctuation and coherence. The terrain structure varied widely from forested rolling hills to flat country fields and orchards. Coherency analysis demonstrated a high phase stability of consecutive pulses, containing clutter returns from one resolution cell. First, the spatial distribution of clutter areas is predicted and measured and the burst to burst fluctuation is analysed to obtain an overview of the temporal clutter stability. An in-depth analysis of the pulse to pulse clutter statistics and time coherence leads to a proposed coherent clutter map processor to remove clutter energy from the received signal.
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