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Performance evaluation of hexagonal array adaptive beamforming algorithm based on inverse QR-RLS for active sonar application

机译:基于逆QR-RLS的六边形阵列自适应波束形成算法在有源声纳应用中的性能评估

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摘要

In shallow water areas, to enhance underwater targets detection performance improve computation efficiency of active sonar, a computationally efficient adaptive beamformer (spatial filter) based on inverse QR (IQR) and recursive least-squares (RLS) is developed under fast Fourier transform framework, for standard hexagonal receiving array implementation. The IQR-RLS algorithm has good numerical stability and can be mapped onto coordinate rotation digital computer processor-based systolic arrays, which is suitable for real time applications. Using the proposed scheme to construct beamformer, which reduces computational complexity significantly and offers better converge rate than conventional adaptive beamformer. The simulation and lake test results demonstrates the algorithm improves interference (reverberation) suppression ability. It improves SNR about 2dB of still bottom target detection in reverberation limited area.
机译:在浅水区,为了提高水下目标的检测性能,提高有源声纳的计算效率,在快速傅立叶变换框架下,开发了一种基于逆QR(IQR)和递归最小二乘(RLS)的高效计算自适应波束形成器(空间滤波器),用于标准六角形接收阵列实现。 IQR-RLS算法具有良好的数值稳定性,可以映射到基于坐标旋转数字计算机处理器的脉动阵列,适用于实时应用。使用所提出的方案来构造波束形成器,与传统的自适应波束形成器相比,其显着降低了计算复杂度并提供了更好的收敛速度。仿真和湖测试结果表明,该算法提高了干扰(混响)抑制能力。它在混响受限区域中将静止底部目标检测的SNR提高了约2dB。

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