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由于输入信杂噪比(Signal to Clutter Noise Ratio, SCNR)较低,杂波抑制后超高频(Ultra-High Frequency, UHF)波段合成孔径雷达(Synthetic Aperture Radar, SAR)图像中剩余静止目标杂波导致系统虚警概率较高。该文提出一种动目标筛选方法,能够判断恒虚警概率(Constant False Alarm Rate, CFAR)检测器检测到的目标是否为动目标。提出一种动目原始数据恢复方法,能够从整幅SAR图像中恢复任意孤立点的多普勒相位历史。采用距离多普勒处理对恢复的数据成像,然后采用方位自聚焦处理对所成子图像进行重新聚焦。如果子图像中目标为静止目标,则聚焦前后子图像不变,否则图像被重新聚集。通过检测图像的变化可以排除虚假动目标。仿真及实测数据处理结果说明了该方法的有效性。 相似文献
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利用基于导数更新的双基机载雷达杂波距离依赖性补偿方法 总被引:2,自引:0,他引:2
该文提出了两种利用基于导数更新(DBU)的双基机载雷达杂波距离依赖性补偿新方法,分别以接收载机方向图主瓣方向的接收斜距和接收载机方向图主瓣方向的接收俯仰角余弦为更新变量,利用该方法对回波数据进行补偿后,能够有效降低双基机载雷达杂波的距离依赖性,进而大大提高空时自适应处理 (STAP)的地面动目标检测(GMTI )性能。仿真数据处理结果证明了所提方法的有效性。 相似文献
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地面动目标检测(GMTI)是星载分布式雷达的重要应用之一,利用星载稀疏阵可增加系统虚拟孔径,以改善动目标检测性能.扫描模式干涉雷达(Scanning Pattern Interferometric Radar,简称SPIR)是一种雷达天线阵波束扫描的新型GMTI雷达,用点扩展函数(Point Spread Function,简称PSF)与扫描结果进行解卷积,就能恢复出地物后向散射系数,然后利用杂波位置来检测动目标.本文分析了SPIR方法的基本原理,并对有不同位置误差的阵列进行了SPIR仿真,比较仿真结果发现,在一定误差范围内,准确测量孔径实际位置比精确控制孔径位置更重要. 相似文献
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Multiple-input multiple-output (MIMO) radar with multiple transmitters and multiple receivers can achieve a larger virtual antenna array and more system degrees of freedom; thus applying it to ground moving target indication (GMTI) radar can improve the performance of GMTI. Doppler division multiple access (DDMA) waveforms are approximately orthogonal providing good minimum detectable velocity (MDV) performance. However, in such DDMA systems, a sufficient pulse repetition frequency (PRF) design freedom is required. Furthermore, these waveforms suffer from blind velocities which are serious problems, especially in radar systems with high carrier frequency or low PRF. This paper analyses the blind velocities problem and show that blind velocities are relative to variation of the PRF and/or the carrier frequency. Variable PRF techniques are widely used in conventional GMTI radar including multiple PRFs and variable pulse repetition intervals (PRI). Combined with the characteristics of the DDMA MIMO GMTI radar, this paper proposed two methods to mitigate blind velocities: “multi-PRF DDMA” which employs multiple PRFs over successive coherent processing intervals, and “PRI-dithered DDMA” which employs nonuniform sampling by dithered PRI in slow time. Simulation results demonstrate that both the methods are effective ways to mitigate blind velocities in DDMA MIMO GMTI radar systems. 相似文献
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Jing Yu Guisheng Liao Zhiwei Yang 《AEUE-International Journal of Electronics and Communications》2010,64(12):1182-1185
Clutter suppression is a key process in ground moving target indication (GMTI). Adaptive filtering is an effective method for clutter suppression but the performance degrades severely in heterogeneous clutter environment. To solve this problem, a new clutter suppression method is proposed. The approach uses subspace tracking technique to update clutter subspace of different clutter patches which may mitigating the heterogeneous effects. Simulation results illustrate that the method performs well when lacking of the independent and identically distributed (i.i.d.) samples. 相似文献
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在SAR信号处理中为增大接收增益,提高系统回波的信噪比,可利用数字波束形成(DBF)技术(扫描接收技术)生成灵活控制的高增益窄波用于多通道接收、处理回波信号。分析并推导了距离向多通道的回波信号,然后详细分析了基于偏置相位中心天线(DPCA)的SAR GMTI处理方法。在此基础上给出了一种使用DPCA杂波抑制技术处理基于时变加权DBF SCORE回波的Ka SAR GMTI处理方法,并给出了系统实现原理。与其他SAR GMTI处理方法相比较,使用DBF技术可以提升系统信噪比,有助于改善杂波抑制性能。通过仿真,验证了用DPCA技术处理基于DBF动目标回波的有效性。 相似文献
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