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Multiple 3D Far-Field/Near-Field Moving Target Localization Using Wideband Echo Chirp Signals

机译:使用宽带回声线性调频信号进行多个3D远场/近场移动目标定位

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摘要

In this paper, we propose a technique for active detection and estimation of the range, radial velocity and direction-of-arrival (DOA) of multiple moving targets in the three-dimensional space for both far-field and near-field cases using wideband chirp signals. The proposed technique is an extension of the method recently proposed by Leong in [“Multiple target localization using wideband echo chirp signals,” IEEE Trans. Signal Process., vol. 61, no. 16, pp. 4077–4089, Aug. 2013] for the localization of multiple far-field targets in the two-dimensional space. In our approach, the received signals at a sensor array are first decomposed into the spherical harmonic components and a modal preprocessing step is then carried out on the received wideband signals so that they can be further processed using narrowband techniques for parameter estimation. The application of fractional Fourier transform on the modal preprocessed signals allows the proposed method to identify closely spaced targets. This is demonstrated via computer simulations where the proposed technique achieved low root-mean-square errors in the parameters estimated in a scenario with closely spaced targets.
机译:在本文中,我们提出了一种在宽带和远场情况下主动检测和估计三维空间中多个运动目标的范围,径向速度和到达方向(DOA)的技术线性调频信号。提出的技术是Leong最近在[《使用宽带回声线性调频信号进行多目标定位》,IEEE Trans。信号处理,第一卷61号[第16卷,第4077–4089页,2013年8月],用于二维空间中多个远场目标的定位。在我们的方法中,首先将传感器阵列处的接收信号分解为球谐分量,然后对接收的宽带信号执行模态预处理步骤,以便可以使用窄带技术对它们进行进一步处理以进行参数估计。分数阶傅里叶变换在模态预处理信号上的应用使得所提出的方法能够识别间隔较近的目标。这通过计算机仿真得到了证明,其中在目标间距很近的情况下,所提出的技术在估计的参数中实现了低均方根误差。

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