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Comparisons of echo-integration performance from two multiplexed echosounders

机译:两个多路回波测深仪回波积分性能的比较

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A time-series of acoustically derived aquatic biomass estimates relies on the acoustic equipment maintaining the same performance throughout the time-series. This is normally achieved through a regular calibration process. When the acoustic equipment changes it is necessary to verify that the new equipment produces a similar result to the old equipment, otherwise an unknown bias can be introduced into the time-series. The commonly used Simrad EK60 echosounder has been superseded by the Simrad EK80 echosounder and the performance of these two scientific echosounder systems was compared using interleaved pinging through the same transducer. This was repeated for multiple transducer frequencies (18, 38, 70, 120, and 200 kHz) and from two vessels (Norway's G.O. Sars in the North Sea and The Netherlands' Tridens in the Northeast Atlantic Ocean). The broadband facility of the EK80 was not used. Regressions of the grid-integrated backscatter from the two systems were highly linear. The difference in area backscattering coefficients in typical survey conditions was less than 0.6 dB (12%) at the main survey frequency of 38 kHz. In most conventional fish acoustic surveys, the observed differences are less than other sources of survey bias and uncertainty.
机译:声音得出的水生生物量估计值的时间序列依赖于在整个时间序列中保持相同性能的声学设备。通常,这是通过常规的校准过程来实现的。当音响设备发生变化时,有必要验证新设备产生的结果与旧设备相似,否则会在时间序列中引入未知的偏差。 Simrad EK80回声测深仪已取代了常用的Simrad EK60回声测深仪,并且使用同一传感器的交错式ping比较了这两个科学回声测深仪系统的性能。从两个船只(北海的挪威G.O. Sars和北大西洋的荷兰的Tridens)和多个换能器频率(18、38、70、120和200 kHz)重复此操作。未使用EK80的宽带设施。来自两个系统的网格积分反向散射的回归高度线性。在38 kHz的主测量频率下,典型测量条件下区域后向散射系数的差异小于0.6 dB(12%)。在大多数常规鱼类声学调查中,观察到的差异小于其他调查偏差和不确定性来源。

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