低频水平、垂直和全向水下噪声场的统计特性

M. Wilmut, N. Chapman, S. Anderson
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引用次数: 3

摘要

在深海测点采用16元垂直线阵列测量环境噪声,该阵列部署在声道轴线附近。噪音样本的记录时间从30秒到120秒,当地风速从2到15米/秒。采用波束形成数据研究了245 Hz频率下噪声场水平分量的统计特性。众所周知,水声中水平分量对远处船舶噪声敏感,垂直分量对局部水面噪声敏感。结果表明,风速大于7 m/s时,噪声场的两个分量都是独立的、平稳的、正态分布的。然而,在较低的风速下,垂直部分没有通过利利弗的正常测试。结果表明,低风速下地面产生的噪声过程不是正态分布的。全向噪声数据分析结果表明,49 ~ 300 Hz波段的噪声在长达2分钟的时间内是独立的、平稳的和正常的。
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Statistical properties of horizontal, vertical and omnidirectional underwater noise fields at low frequency
Ambient noise was measured at a deep ocean site using 16-element vertical line array which was deployed near the axis of the sound channel. Noise samples were recorded for time periods from 30 s to 120 s, and for local wind speeds from 2 to 15 m/s. Beamformed data were used to study the statistical properties of horizontal components of the noise field at a frequency of 245 Hz. It is well known in underwater acoustics that the horizontal component is sensitive to distant shipping noise and the vertical component is sensitive to local surface noise. The results indicated that both components of the noise field were independent, stationary and normally distributed for wind speeds greater than 7 m/s. However, at lower wind speeds, the vertical component did not pass the Lilliefor's test for normality. This result suggests that the noise process for surface generated noise at low wind speeds is not normally distributed. The results for the analysis of omnidirectional noise data indicated that the noise in the 49-300 Hz band as independent, stationary and normal for periods of up to two minutes.<>
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