卷积噪声干扰下基于序统计量CFAR的时间压缩叠加雷达系统性能评价

Ahmed Youssef, P. Driessen, F. Gebali, B. Moa
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引用次数: 4

摘要

我们介绍了一种将时间压缩叠加(TC-OLA)扩频技术集成到雷达系统中的新方案,更具体地说是线性调频脉冲压缩(LFM-PC)雷达。该技术提高了信噪比(SNR),因此,与传统的雷达LFM-PC系统相比,可以获得更大的处理增益。此外,TC-OLA允许雷达设计人员控制信号的传播,因此对强大的干扰技术提供了更好的免疫力。在我们的仿真中,我们扩展了传统的LFM-PC雷达模型,分别在发射机和接收机上适当地增加了时间压缩(TC)和重叠添加(OLA)块。在AWGN和一种称为卷积噪声干扰(CNJ)的智能干扰技术下,采用不同的恒定虚警率(CFAR)算法,即Cell-Average (CA)、Greatest-Of (GO)和Order-Statistics (OS) CFAR,对所提出的系统和常规LFM进行了性能评估。使用基于tc - ola的LFM雷达系统,我们证明了我们在保持与传统LFM雷达系统相同的多普勒频移和目标时延的同时具有更高的信噪比。此外,所提出的雷达模型仅在常规LFM雷达发射机阻塞后和常规LFM雷达接收机阻塞前依赖于高采样率。因此,它不需要改变常规雷达块的任何参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance evaluation of time compression overlap-add radar systems based on order-statistics CFAR under convolution noise jamming
We introduce a new scheme that integrates the Time Compression OverLap-Add (TC-OLA) spread spectrum technique into radar systems, more specifically the Linear Frequency Modulation Pulse Compression (LFM-PC) radar. This technique increases the signal to noise ratio (SNR) and, as a consequence, enables a greater processing gain compared to the traditional radar LFM-PC systems. In addition, TC-OLA allows the radar designer to control the spreading of the signal and therefore provides a better immunity against powerful jamming techniques. In our simulation, we extend the conventional LFM-PC radar model by appropriately adding Time Compression (TC) and Overlap-add (OLA) blocks at the transmitter and receiver, respectively. The evaluation performance of the proposed system and the convention LFM are done under AWGN and under one of the smart jamming technique called Convolution Noise Jamming (CNJ) using different Constant False Alarm Rate (CFAR) algorithms, namely, Cell-Average (CA), Greatest-Of (GO), and Order-Statistics (OS) CFAR. Using the TC-OLA-based LFM radar system, we show that we have higher SNRs while preserving the same Doppler shift and target time delay as the conventional LFM radar system. Furthermore, the proposed radar model relies on high sample rates only after the conventional LFM radar transmitter blocks and before conventional LFM radar receiver blocks. Therefore, it does not require changing any parameters of the conventional radar blocks.
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