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Frequency adaptability and waveform design for OFDM radar space-time adaptive processing

机译:OFDM雷达时空自适应处理的频率适应性和波形设计

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We propose an adaptive waveform design technique for an orthogonal frequency division multiplexing (OFDM) radar signal employing a space-time adaptive processing (STAP) technique. We observe that there are inherent variabilities of the target and interference responses in the frequency domain. Therefore, the use of an OFDM signal can not only increase the frequency diversity of our system, but also improve the target detectability by adaptively modifying the OFDM-coefficients in order to exploit the frequency-variabilities of the scenario. First, we formulate a realistic OFDM-STAP measurement model considering the sparse nature of the target and interference spectra in the spatio-temporal domain. Then, we show that the optimal STAP-filter weight-vector is equal to the generalized eigenvector corresponding to the minimum generalized eigenvalue of the interference and target covariance matrices. With numerical examples we demonstrate that the resultant OFDM-STAP filter-weights are adaptable to the frequency-variabilities of the target and interference responses, in addition to the spatio-temporal variabilities. Hence, by better utilizing the frequency variabilities, we propose an adaptive OFDM-waveform design technique, and consequently gain a significant amount of STAP-performance improvement.
机译:我们提出了一种采用空时自适应处理(STAP)技术的正交频分复用(OFDM)雷达信号的自适应波形设计技术。我们观察到在频域中目标和干扰响应存在固有差异。因此,使用OFDM信号不仅可以增加我们系统的频率分集,而且可以通过自适应地修改OFDM系数来改善目标的可检测性,以利用场景的频率变化。首先,考虑到目标的稀疏性质和时空域中的干扰频谱,我们制定了一个现实的OFDM-STAP测量模型。然后,我们表明,最佳STAP滤波器权重向量等于与干扰和目标协方差矩阵的最小广义特征值相对应的广义特征向量。通过数值示例,我们证明了所得的OFDM-STAP滤波器权重除了时空变化之外,还适用于目标频率变化和干扰响应。因此,通过更好地利用频率可变性,我们提出了一种自适应OFDM波形设计技术,从而获得了很大的STAP性能改进。

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