编码序列对地侦察雷达系统的设计与实现及改进的Golay码目标探测

A. Alejos, D. Muhammad, H. Mohammed
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引用次数: 5

摘要

探地雷达(GPR)是一种用于地球物理测量的非破坏性、非侵入性数据采集技术。设计并研制了载波频率为500 MHz、带宽为250 MHz的探地雷达系统。现有的大多数探地雷达系统存在的主要问题是强副瓣掩盖了较弱回波。利用互补的Golay序列可以在很大程度上减少这一问题。在降低副瓣水平方面,Golay序列的性能被认为优于伪随机(PN)、Barker或其他最大长度序列。我们分别使用4096和8192长度的序列测试了Golay和PRBS序列的性能。将两个M长度的Golay序列与一个2M长度的PRBS序列进行相关性比较,Golay序列的副瓣电平几乎被消除。这导致更好的性能来检测较弱的回报。然而,这种说法在低信噪比下可能不成立。我们已经在消声室中展示了结果。实验表明,Golay序列的旁瓣电平比PN序列低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Implementation of Ground Peneration Radar System using Coded Sequences and Improved Target Detection using Golay Codes
Ground penetration radar (GPR) is one of the non-destructive and non-intrusive data collecting technologies used in geophysical measurements. A GPR system operating at carrier frequency 500 MHz and a bandwidth of 250 MHz was designed and developed. The major problem in most of the existing Ground Penetration Radar systems is masking of the weaker returns by the strong sidelobes. This problem can be minimized to a great extent with the help of complementary Golay sequences. The performance of Golay sequences in terms of reduced sidelobe levels is considered better than that of pseudorandom (PN), Barker or other maximal length sequences. We have tested the performance of Golay and PRBS sequences using 4096 and 8192 length sequences, respectively. When the correlation obtained using two M length Golay sequence is compared with one 2M length PRBS sequence, sidelobe level for Golay sequence is almost eliminated. This results in better performance to detect weaker returns. However, this claim may not hold true at low SNR's. We have shown the results in anechoic chamber. Our tests indicate that Golay sequence has lower sidelobe level than PN sequences.
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