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首页> 外文期刊>International Journal of Microwave and Wireless Technologies >Time reversal imaging based on joint space-frequency and frequency-frequency data
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Time reversal imaging based on joint space-frequency and frequency-frequency data

机译:基于联合空间频率和频率频率数据的时间反转成像

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摘要

A new time reversal (TR) method for target imaging is proposed in this paper. Through single measurement by the antenna array, the received signals are utilized to form the space-frequency-frequency multistatic data matrix (MDM). Singular value decomposition is applied to the matrix to obtain the left singular vectors which span the signal subspace. The obtained vectors are divided into multiple subvectors by two different schemes and used to provide target signatures in the form of coarse frequency dependence and relative phase shifts that can be exploited to construct the imaging function. The performance of the proposed method is investigated through numerical simulations for both single and multiple targets, and the results are compared with the traditional TR method using the frequency-frequency MDM. It turned out that the proposed method is able to achieve high resolution with limited array aperture and shows satisfactory robustness in noise environment. Furthermore, experimental results are provided to show the availability of the method in practical applications.
机译:本文提出了一种用于目标成像的新的时间逆转(TR)方法。通过天线阵列的单个测量,所接收的信号用于形成空频多晶数据矩阵(MDM)。奇异值分解应用于矩阵以获得跨越信号子空间的左奇异矢量。所获得的向量被两个不同的方案划分为多个子视频,并用于提供粗略频率依赖性的形式的目标签名和可以利用以构建成像功能的相对相位偏移。通过单一和多个目标的数值模拟来研究所提出的方法的性能,并将结果与​​使用频率MDM的传统TR方法进行比较。事实证明,该方法能够实现具有有限阵列孔径的高分辨率,并在噪声环境中显示出令人满意的鲁棒性。此外,提供了实验结果以显示在实际应用中的方法的可用性。

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