Acoustic Random Noise Radar Using Ultra Wide Band Waveforms

S. Axelsson
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引用次数: 2

Abstract

Ultra wideband noise radar gives high range resolution and the range ambiguity is suppressed as a result of the non-periodic waveform. Random noise waveforms could also be applied in acoustic radar (Sodar/Sonar). Both wave generation and signal processing can then be performed on a PC. As a result, some signal processing algorithms used in random noise radar/sodar can be tested simpler using sound waves. This paper presents basic relationships and algorithms for signal processing in random noise radar/sodar, and the noise floor generated by the randomness of the transmitted signal is defined. A PC-controlled acoustic radar with ultra wide band random noise waveform (1-8 kHz) was implemented to test some of the algorithms described Measurements were carried out on both moving objects and stationary scenes. Moving target indication using stretched time processing (Doppler) and change detection algorithms were tested as well. Recording from a bridge shows the potential use of the technique for water level indication as an example.
使用超宽带波形的声学随机噪声雷达
超宽带噪声雷达具有很高的距离分辨率,并且由于其波形的非周期性而抑制了距离模糊。随机噪声波形也可以应用于声雷达(Sodar/Sonar)。波形产生和信号处理都可以在PC机上进行。因此,随机噪声雷达/雷达中使用的一些信号处理算法可以使用声波更简单地进行测试。本文介绍了随机噪声雷达/雷达中信号处理的基本关系和算法,定义了由发射信号的随机性产生的本底噪声。利用pc机控制的超宽带随机噪声波形(1-8 kHz)声学雷达,对所描述的部分算法进行了测试,并对运动物体和静止场景进行了测量。利用拉伸时间处理(多普勒)和变化检测算法对运动目标指示进行了测试。作为一个例子,从一座桥上记录显示了该技术在水位指示方面的潜在用途。
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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