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Acoustic tracking: Issues affecting design, analysis and interpretation of data from movement studies

机译:声学跟踪:影响运动研究数据的设计,分析和解释的问题

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摘要

Acoustic telemetry systems are an increasingly common way to examine the movement and behaviour of marine organisms. However, there has been little published on the methodological and analytical work associated with this technology. We tested transmitters of differing power outputs simultaneously in several trials, some lasting ~50 days, to examine the effects of power output and environmental factors (water movement, temperature, lunar cycle and time of day). There were considerable and volatile changes in detections throughout all trials. Increased water movement and temperature significantly reduced detection rates, whereas daytime and full-moon periods had significantly higher detection rates. All nine transmitters (from seven transmitter types tested) showed a sigmoidal trend between detection frequency and distance. Higher-powered transmitters had a prolonged detection distance with near-maximal detections, whereas lower-powered transmitters showed an almost immediate decline. Variation of detection frequency, transmitter type and the modelled relationship between distance and detection frequency were incorporated into a positioning trial which resulted in markedly improved position estimates over previous techniques.
机译:声学遥测系统是检查海洋生物运动和行为的越来越普遍的方法。但是,关于与该技术相关的方法和分析工作的文献很少。我们在数个持续约50天的试验中同时测试了不同功率输出的发射机,以检查功率输出和环境因素(水流,温度,月球周期和一天中的时间)的影响。在所有试验中,检测值均发生了相当大的变化。水流和温度增加会大大降低检测率,而白天和满月时段的检测率会大大提高。所有九个发射器(来自测试的七个发射器类型)在检测频率和距离之间呈S形趋势。高功率发射器的检测距离延长,检测次数接近最大,而低功率发射器几乎立即下降。探测频率,发射器类型的变化以及距离和探测频率之间的建模关系的变化被并入了定位试验,与以前的技术相比,位置估计得到了显着改善。

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