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Passive wideband source localization based on cylindrical focused beamforming in shallow water

机译:基于圆柱聚焦波束形成在浅水中的被动宽带源定位

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This paper addresses the problem of passive wideband localization of a shallow water noise source in near-field with a horizontal array in the presence of multipath propagation. Multipath propagation gives rise to attenuated and time-delayed replicas of the original transmitted signal. The conventional beamforming approach to wideband localization involves the coherent signal-subspace method (CSM) via the transformation of signal subspace. In shallow water scenarios, multipath effect yields source localization bias using the conventional beamforming approach, source resolution accuracy degrades owing to the higher side lobe contributions to the beamformer output. In this paper, the steering vector is constructed in accordance with the characteristic of shallow water acoustic channel based on passive time reversal method. Cylindrical focused beamforming is used according to the shape of acoustic radiant surface. Simulation results demonstrate that source localization performance of conventional beamforming approach is improved significantly in multipath environment.
机译:本文在存在多径传播时,用水平阵列解决近场浅水噪声源的被动宽带定位问题。多径传播产生了原始发送信号的衰减和时间延迟副本。宽带定位的传统波束形成方法涉及通过信号子空间的变换的相干信号 - 子空间方法(CSM)。在浅水场景中,多径效应利用传统的波束形成方法产生源定位偏置,由于较高的侧瓣对波束形成器输出的贡献较高的侧瓣贡献,源分辨率精度降低。本文基于被动时间反转方法,根据浅水声沟道的特性构造转向载体。根据声学辐射表面的形状使用圆柱形聚焦波束形成。仿真结果表明,多径环境中传统波束形成方法的源定位性能显着提高。

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