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首页> 外文期刊>Selected Topics in Signal Processing, IEEE Journal of >Frequency Diverse Coprime Arrays With Coprime Frequency Offsets for Multitarget Localization
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Frequency Diverse Coprime Arrays With Coprime Frequency Offsets for Multitarget Localization

机译:具有互质频偏的频分互质阵列,用于多目标定位

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摘要

Different from conventional phased-array radars, the frequency diverse array (FDA) radar offers a range-dependent beampattern capability that is attractive in various applications. The spatial and range resolutions of an FDA radar are fundamentally limited by the array geometry and the frequency offset. In this paper, we overcome this limitation by introducing a novel sparsity-based multitarget localization approach incorporating both coprime arrays and coprime frequency offsets. The covariance matrix of the received signals corresponding to all sensors and employed frequencies is formulated to generate a space-frequency virtual difference coarrays. By using O(M+N) antennas and O(M+N) frequencies, the proposed coprime arrays with coprime frequency offsets enables the localization of up to O(M2N2) targets with a resolution of O(1/(MN)) in angle and range domains, where M and N are coprime integers. The joint direction-of-arrival (DOA) and range estimation is cast as a two-dimensional sparse reconstruction problem and is solved within the Bayesian compressive sensing framework. We also develop a fast algorithm with a lower computational complexity based on the multitask Bayesian compressive sensing approach. Simulations results demonstrate the superiority of the proposed approach in terms of DOA-range resolution, localization accuracy, and the number of resolvable targets.
机译:与传统的相控阵雷达不同,频率变化阵列(FDA)雷达提供了取决于范围的波束图功能,在各种应用中都具有吸引力。 FDA雷达的空间和距离分辨率从根本上受到阵列几何形状和频率偏移的限制。在本文中,我们通过引入新颖的基于稀疏性的多目标定位方法来克服这一局限,该方法同时包含了互素数组和互素频偏。公式化了与所有传感器和所采用的频率相对应的接收信号的协方差矩阵,以生成空频虚拟差分协阵列。通过使用O(M + N)个天线和O(M + N)个频率,所提出的具有互质频率偏移的互质阵列可以实现分辨率高达O(1 /(MN))的O(M2N2)个目标的定位。角度和范围域,其中M和N是互质整数。联合到达方向(DOA)和范围估计被转换为二维稀疏重建问题,并在贝叶斯压缩感测框架内解决。我们还基于多任务贝叶斯压缩感测方法开发了一种具有较低计算复杂度的快速算法。仿真结果证明了该方法在DOA范围分辨率,定位精度和可分辨目标数量方面的优越性。

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