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首页> 外文期刊>Bioinspiration & biomimetics >Collective responses of a large mackerel school depend on the size and speed of a robotic fish but not on tail motion
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Collective responses of a large mackerel school depend on the size and speed of a robotic fish but not on tail motion

机译:大型鲭鱼学校的集体反应取决于机器鱼的大小和速度,而不取决于尾巴运动

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So far, actuated fish models have been used to study animal interactions in small-scale controlled experiments. This study, conducted in a semi-controlled setting, investigates robot 5 interactions with a large wild-caught marine fish school (similar to 3000 individuals) in their natural social environment. Two towed fish robots were used to decouple size, tail motion and speed in a series of sea-cage experiments. Using high-resolution imaging sonar and sonar-video blind scoring, we monitored and classified the school's collective reaction towards the fish robots as attraction or avoidance. We found that two key releasers-the size and the speed of the robotic fish-were responsible for triggering either evasive reactions or following responses. At the same time, we found fish reactions to the tail motion to be insignificant. The fish evaded a fast-moving robot even if it was small. However, mackerels following propensity was greater towards a slow small robot. When moving slowly, the larger robot triggered significantly more avoidance responses than a small robot. Our results suggest that the collective responses of a large school exposed to a robotic fish could be manipulated by tuning two principal releasers-size and speed. These results can help to design experimental methods for in situ observations of wild fish schools or to develop underwater robots for guiding and interacting with free-ranging aggregated aquatic organisms.
机译:到目前为止,在小规模的受控实验中,已使用致动鱼模型来研究动物的相互作用。这项研究是在半控制的环境中进行的,研究了机器人5与大型野生海鱼学校(约3000名个体)在自然社交环境中的相互作用。在一系列海笼实验中,使用了两个拖曳的鱼机器人来分离大小,尾部运动和速度。我们使用高分辨率成像声纳和声纳视频盲目评分,对学校对鱼机器人的集体反应进行了监视和分类,将其归类为吸引或躲避。我们发现,两个关键的释放器-机器鱼的大小和速度-引发了逃避反应或跟随反应。同时,我们发现鱼对尾巴运动的反应微不足道。这条鱼即使很小也躲开了一个快速移动的机器人。然而,鲭鱼跟随小机器人的倾向更大。当缓慢移动时,大型机器人会比小型机器人触发更多的回避响应。我们的结果表明,可以通过调整两个主要释放器的大小和速度来操纵暴露于机器鱼的大型学校的集体反应。这些结果可帮助设计用于野鱼种群现场观察的实验方法,或开发水下机器人以引导自由放养的聚集水生生物并与之互动。

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