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Adaptive Beamforming and Recursive DOA Estimation Using Frequency-Invariant Uniform Concentric Spherical Arrays

机译:使用频率不变均匀同心球面阵列的自适应波束形成和递归DOA估计

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This paper proposes recursive adaptive beamforming and broadband 2-D direction-of-arrival (DOA) estimation algorithms for uniform concentric spherical arrays (UCSAs) having nearly frequency-invariant (FI) characteristics. The basic principle of the FI-UCSA is to transform the received signals to the phase mode and remove the frequency dependency of individual phase modes through a digital beamforming network. Hence, the far-field pattern of the array is determined by a set of weights. Thanks to the FI characteristic, traditional narrowband adaptive beamforming algorithms such as minimum variance beamforming and the generalized sidelobe canceller method can be applied to the FI-UCSA. Simulation results show that the proposed adaptive FI-UCSA beamformer achieves a lower steady-state error and converges faster than the conventional tapped-delay line approach while requiring fewer adaptive coefficients. A new broadband 2-D DOA estimation algorithm using ESPRIT techniques for FI-UCSA is proposed to recursively estimate the DOAs of the moving targets. Simulation results show that the proposed DOA estimation algorithm achieves a satisfactory performance for slowly varying sources at low arithmetic complexity.
机译:本文针对具有几乎频率不变(FI)特性的均匀同心球面阵列(UCSA)提出了递归自适应波束成形和宽带2-D到达方向(DOA)估计算法。 FI-UCSA的基本原理是将接收到的信号转换为相位模式,并通过数字波束成形网络消除各个相位模式的频率依赖性。因此,阵列的远场图案由一组权重确定。由于FI的特性,传统的窄带自适应波束成形算法(例如最小方差波束成形和广义旁瓣消除器方法)可以应用于FI-UCSA。仿真结果表明,所提出的自适应FI-UCSA波束形成器与传统的抽头延迟线方法相比,具有更低的稳态误差,并且收敛速度更快,同时所需的自适应系数也更少。提出了一种基于ESPRIT技术的FI-UCSA宽带二维DOA估计算法,用于递归估计运动目标的DOA。仿真结果表明,提出的DOA估计算法在算法复杂度低的情况下,对于缓慢变化的信号源具有令人满意的性能。

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