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Time varying gain (TVG) measurements of a multibeam echo sounder for applications to quantitative acoustics

机译:用于应用于定量声学的多芯回声发声器的时间变化增益(TVG)测量

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Protocols of calibration procedures of a multibeam echo sounder have been suggested previously [Foote et at., 2005, J. Acoust. Am. 117: 2013-2027], in which the time-varying-gain (TVG) of the multibeam system was assumed to follow the nominal system settings and was not investigated thoroughly. In the current study, the influence of the measured TVGs on system performance was investigated quantitatively. Specifically, measured TVGs were compared to those derived from the nominal system settings for the Simrad SM20 90-kHz multibeam echo sounder (formerly the SM2000 90-kHz),. It was found that for resolved targets, the difference between the theoretically predicted TVG and the measured TVG averaged over all 128 beams was less than 25% for ranges greater than 8 m, equivalent to about 1.0 dB uncertainty in target strength estimates. For unresolved targets, the TVG error is approximately 8 dB at a range of 20 m, resulting in a possible change by a factor of 6 in abundance estimates. For ranges greater than 120 m, the error reduces to within 1.0 dB, corresponding to about a 25% error in abundance estimate.
机译:的多波束测深仪校准程序协议已经被先前建议[富特等人,2005,美国声。是。 117:2013至2027年],其中,所述多波束系统的随时间变化的增益(TVG)被假定为遵循标称系统设置并彻底没有研究。在目前的研究中,对系统性能的测量TVGs的影响进行了定量分析。具体地,测得的TVGs相比,这些从标称系统设置导出了西姆拉德SM20 90千赫多波束测深仪(原SM2000 90千赫),.据发现,为解决目标,理论预测TVG和测量TVG之间的差平均超过所有128个光束是为范围小于25%大于8μm时,相当于在目标强度的估计约1.0分贝不确定性。对于未解决的目标,所述TVG误差为约8分贝的范围内为20μm,导致由6中丰度估计的一个因素的可能变化。对于范围大于120米时,误差减小到1.0 dB范围内,对应于约在丰度估计有25%的误差。

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