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Wideband distributed coherent aperture radar based on stepped frequency signal: theory and experimental results

机译:基于步进频率信号的宽带分布式相干孔径雷达:理论与实验结果

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摘要

As the next generation radar, although the distributed coherent aperture radar (DCAR) has been proposed and some basic works have been developed in recent years, this new radar technology has not been researched systematically. In this study, the concept and closed-loop workflow of DCAR are described in detail first. Then, the coherent parameters (CPs), which play an important role to realise full coherence in DCAR, are estimated based on orthogonal signal and coherent signal. To investigate the limits of estimation accuracy of CPs, the Cramer–Rao lower bounds are derived. The estimation values of CPs are filtered using Kalman filter to improve the estimation accuracy. In the following, the wideband full coherence technology based on stepped frequency signal is proposed to improve system robustness to time synchronisation error, which makes the DCAR technology more realisable in engineering. Furthermore, a grating lobe suppression method based on modified genetic algorithm in synthetic array pattern of DCAR is presented. Ultimately, the experiments are carried out using test system to verify the theory of wideband DCAR.
机译:作为下一代雷达,尽管近年来已经提出了分布式相干孔径雷达(DCAR),并且已经开展了一些基础工作,但是这种新型雷达技术尚未得到系统的研究。在这项研究中,首先详细介绍了DCAR的概念和闭环工作流程。然后,基于正交信号和相干信号,估计在实现DCAR中的完全相干性中起重要作用的相干参数(CPs)。为了研究CP估计精度的极限,推导了Cramer-Rao下界。使用卡尔曼滤波器对CP的估计值进行滤波,以提高估计精度。在下文中,提出了基于步进频率信号的宽带全相干技术,以提高系统对时间同步误差的鲁棒性,这使得DCAR技术在工程上更加可实现。此外,提出了一种基于改进遗传算法的DCAR合成阵列图形光栅波瓣抑制方法。最终,使用测试系统进行了实验,以验证宽带DCAR的理论。

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