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A low complexity algorithm for joint DOA and multipath delay estimation in frequency hopping systems

机译:跳频系统中DOA和多径延迟联合估计的低复杂度算法

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This paper presents a low complexity tree-structured one-dimensional (1D) multiple signal classification (MUSIC)-based algorithm to jointly estimate the directions of arrival (DOA) and multipath propagation delays in frequency hopping (FH) systems. The proposed algorithm makes use of two spatial (S)-MUSIC and one temporal (T)-MUSIC algorithms alternatively to estimate the DOA and delays, respectively. Also, a spatial beamforming process is invoked between the S-MUSIC and T-MUSIC algorithms to partition the incoming signals into appropriate groups to enhance the delay estimation accuracy. Furthermore, the pairing of the estimated DOA and delays is automatically determined. Furnished simulations show that the proposed approach provides satisfactory performance but with substantially reduced computational complexity compared with previous works.
机译:本文提出了低复杂性的树结构一维(1D)多信号分类(音乐),基于算法,​​共同估计了跳频(FH)系统中的到达方向(DOA)和多径传播延迟。所提出的算法利用两个空间--Music和一个时间(t) - 算法分别估计DOA和延迟。此外,在S-Music和T-Music算法之间调用空间波束形成过程,以将输入信号分配到适当的组中以增强延迟估计精度。此外,自动确定估计的DOA和延迟的配对。布置的模拟表明,该方法提供了令人满意的性能,但与以前的作品相比,基本上减少了计算复杂性。

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