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Detection of Direction-Of-Arrival in Time Domain Using Compressive Time Delay Estimation with Single and Multiple Measurements

机译:使用单一和多次测量的压缩时间延迟估计检测到达时间域的到达方向

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摘要

The compressive time delay estimation (TDE) is combined with delay-and-sum beamforming to obtain direction-of-arrival (DOA) estimates in the time domain. Generally, the matched filter that detects the arrivals at the hydrophone is used with beamforming. However, when the ocean noise smears the arrivals, ambiguities appear in the beamforming results, degrading the DOA estimation. In this work, compressive sensing (CS) is applied to accurately evaluate the arrivals by suppressing the noise, which enables the correct detection of arrivals. For this purpose, CS is used in two steps. First, the candidate time delays for the actual arrivals are calculated in the continuous time domain using a grid-free CS. Then, the dominant arrivals constituting the received signal are selected by a conventional CS using the time delays in the discrete time domain. Basically, the compressive TDE is used with a single measurement. To further reduce the noise, common arrivals over multiple measurements, which are obtained using the extended compressive TDE, are exploited. The delay-and-sum beamforming technique using refined arrival estimates provides more pronounced DOAs. The proposed scheme is applied to shallow-water acoustic variability experiment 15 (SAVEX15) measurement data to demonstrate its validity.
机译:压缩时间延迟估计(TDE)与延迟和和波束成形组合以在时域中获得到达方向(DOA)估计。通常,使用波束形成使用检测到水听器的距离的匹配滤波器。然而,当海洋噪声涂抹到轨迹时,歧义在波束成形结果中出现,降低了DOA估计。在这项工作中,施加压缩检测(CS)以通过抑制噪声来精确评估到达,这使得能够正确检测到达。为此目的,CS分两步使用。首先,使用无网通CS在连续时间域中计算实际到达的候选时间延迟。然后,使用传统的CS使用离散时域中的时间延迟来选择构成所接收信号的主导到达。基本上,压缩TDE与单一测量一起使用。为了进一步降低噪声,利用使用扩展压缩TDE获得的多个测量的公共抵达。使用精制到达估计的延迟和和波束成形技术提供了更明显的DOA。该方案应用于浅水声变化实验15(Savex15)测量数据,以证明其有效性。

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