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首页> 外文期刊>The Journal of the Acoustical Society of America >Proof of principle for inversion of vector sensor array data
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Proof of principle for inversion of vector sensor array data

机译:矢量传感器阵列数据反演的原理证明

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Acoustic data collected from a 22 m long horizontal line array with elements comprised of omni-directional hydrophone sensors co-located with acceleration vector sensor triplets are analyzed for seabed geo-acoustic information. Broadband and continuous wave tone data were recorded from the passage of a surface vessel source, the R/V Montague, in an August 2006 experiment conducted in Monterey Bay. The water depth at the array and along the source track was approximately 85 m. Simultaneous inversions for source track and geo-acoustic parameters were performed with 18 tones from the 62-415 Hz tone data for source ranges 0.5-2.0 km. The efficacy of inversions with vector sensor data is demonstrated by the fact that data from vector sensor acceleration components parallel to the array line of bearing produced inversion solutions approximately identical to the solutions obtained from the inversion of data for the same tones from the hydrophone array components. In addition the source spectra derived from these inversions are in nominal agreement with the source spectra obtained from an independent measurement.
机译:分析了从22 m长的水平线阵列中收集的声学数据,其中包含由与加速度矢量传感器三元组共置的全向水听器传感器组成的元素,以获取海床地质声学信息。在2006年8月于蒙特利湾进行的一项实验中,宽带和连续波声调数据是通过水面船只声源R / V Montague的记录而记录的。阵列和沿源径的水深约为85 m。在62-415 Hz音调数据中,对于0.5-2.0 km的音源范围,用18个音调同时进行了声源轨迹和地声参数的反演。矢量传感器加速度反演的有效性通过以下事实证明:来自矢量传感器加速度分量的数据与轴承的阵列线平行,产生的反演解与从水听器阵列分量相同音调的数据反演所得的解近似相同。另外,从这些反演中得到的源光谱与从独立测量中获得的源光谱在名义上是一致的。

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