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Fast Direction of Arrival Estimation Using a Sensor-Saving Coprime Array with Enlarged Inter-Element Spacing

机译:使用传感器节省的COPRIME阵列进行快速到达估计方向,并扩大元素间距

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Direction of arrival (DOA) estimation using coprime array is discussed, and a fast method using a sensor-saving coprime array with enlarged inter-element spacing is proposed. Original coprime array combines the results obtained from two coprime subarrays to uniquely determine the DOA estimation, and it is shown in this paper that one subarray actually only requires half of its original sensor number and can achieve enlarged inter-element spacing based on the array compensation from the cross correlation matrix. Thereafter, a fast DOA estimation method, which extracts the noise subspace without eigenvalue decomposition, is proposed to obtain coprime DOA estimations based on one dimensional root finding technique. Final unique DOA is estimated from the coincide results of the coprime estimations. Simulation results verify that the proposed method can achieve almost the same estimation performance as conventional methods while requiring less sensors.
机译:讨论了抵达方向(DOA)使用COPRIME阵列进行估计,并且提出了一种使用传感器节省的COPRIME阵列的快速方法,该阵列具有放大的元素间距间隔。原始的CopRime阵列将从两个CopRime子阵列获得的结果组合以唯一地确定DOA估计,并且在本文中示出了一个子阵列实际上只需要其原始传感器编号的一半,并且可以基于阵列补偿来实现扩大的元素间距间隔从跨相关矩阵。此后,提出了一种快速的DOA估计方法,其提取没有特征值分解的噪声子空间,以基于一维根发现技术获得共产DOA估计。最终独特的DOA估计了COPRIME估计的重点结果。仿真结果验证了所提出的方法可以在需要较少的传感器的同时实现与传统方法几乎相同的估计性能。

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