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Methods for estimating detection efficiency and tracking acoustic tags with mobile transect surveys

机译:利用移动断面勘测估算探测效率和跟踪声学标签的方法

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Mobile transect surveys were conducted for 5 years in a deep fjord looking for weak acoustic tags, most of which were in dead fishes lying on the seabed. Detection efficiencies were quantified because inferences about fish presence were made from tag detection data but a considerable proportion of tags were not detected. Methods for assessing transect widths using cumulative probabilities of measured perpendicular distances from blind transect lines to triangulated tag locations are described. Three methods for estimating detection efficiencies are presented: fitting attenuation functions to perpendicular distance data, simultaneous use of two receiver systems and test tag surveys. Several factors that influenced these detection efficiencies and ranges are shown, including boat speed, depth of tag, tag type, different hydrophone-receiver systems and variation among individual hydrophones and receivers of the same model. The trade-off between detection efficiency per unit area and area swept is discussed, which is largely based on boat speed during transects. Finally, several methods are suggested for increasing decoding efficiencies in mobile tracking studies when tags are heard but are difficult to decode.
机译:在较深的峡湾进行了5年的移动横断面调查,以寻找弱声标签,其中大部分位于海床上的死鱼中。由于根据标签检测数据推断出鱼类是否存在,因此对检测效率进行了量化,但未检测到相当大比例的标签。描述了使用从盲样线到三角标签位置的垂直距离的累积概率评估样线宽度的方法。提出了三种估计检测效率的方法:将衰减函数拟合到垂直距离数据,同时使用两个接收器系统和测试标签调查。显示了影响这些检测效率和范围的几个因素,包括船速,标签深度,标签类型,不同的水听器接收器系统以及同一型号的各个水听器和接收器之间的差异。讨论了单位面积检测效率与扫掠面积之间的权衡,这主要取决于样线期间的船速。最后,提出了几种方法,用于在听到标签但难以解码时提高移动跟踪研究中的解码效率。

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