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Infiltrating the zebrafish swarm: design, implementation and experimental tests of a miniature robotic fish lure for fish-robot interaction studies

机译:渗透斑马鱼群:用于鱼人机器人交互研究的微型机器人鱼饵的设计,实施和实验测试

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摘要

Robotic fish are nowadays developed for various types of research, such as bio-inspiredrobotics, biomi-metics and animal behavior studies. In the context of our research on the social interactions of the zebrafish Danio Rerio, we developed a miniature robotic fish lure for direct underwater interaction with the living fish. This remotely controlled and waterproof device has a total length of 7.5 cm with the same size ratio as zebrafish and is able to beat its tail with different frequencies and amplitudes, while following the group of living animals using a mobile robot moving outside water that is coupled with the robotic lure using magnets. The robotic lure is also equipped with a rechargeable battery and can be used autonomously underwater for experiments of up to 1 h. We performed experiments with the robot moving inside an aquarium with living fish to analyze its impact on the zebrafish behavior. We found that the beating rate of the tail increased the attractiveness of the lure among the zebrafish shoal. We also demonstrated that the lure could influence a collective decision of the zebrafish shoal, the swimming direction, when moving with a constant linear speed inside a circular corridor. This new robotic fish design and the experimental results are promising for the field of fish-robot interaction.
机译:如今,已经开发出了机器鱼来进行各种类型的研究,例如生物自激进化生物学,仿生模拟和动物行为研究。在我们对斑马鱼Danio Rerio的社交互动的研究的背景下,我们开发了一种微型机器人鱼饵,可直接在水下与活鱼互动。这种远程控制且防水的设备的总长度为7.5 cm,与斑马鱼具有相同的尺寸比,并能够使用不同的频率和幅度拍打它的尾巴,同时使用移动机器人跟随移动的水下机器人跟随一群活体动物用磁铁吸引机器人。机器人诱饵还配备了可充电电池,可以在水下自主使用长达1小时的实验。我们使用机器人在带有活鱼的水族馆内移动进行了实验,以分析其对斑马鱼行为的影响。我们发现,尾巴的跳动率增加了斑马鱼浅滩之间的诱饵的吸引力。我们还证明,当在圆形走廊内以恒定线速度移动时,引诱会影响斑马鱼浅滩的集体决策,游泳方向。这种新的机器人鱼设计和实验结果对于鱼-机器人交互领域很有希望。

著录项

  • 来源
    《Artificial life and robotics》 |2016年第3期|239-246|共8页
  • 作者单位

    Robotic Systems Laboratory, School of Engineering, Ecole Polytechnique Federale de Lausanne, ME B3 30, Station 9, 1015 Lausanne, Switzerland;

    Robotic Systems Laboratory, School of Engineering, Ecole Polytechnique Federale de Lausanne, ME B3 30, Station 9, 1015 Lausanne, Switzerland;

    Laboratoire Interdisciplinaire des Energies de Demain, Universite Paris Diderot Ⅶ, Sorbonne Paris Cite, LIED, UMR 8235, 75205 Paris, France;

    Robotic Systems Laboratory, School of Engineering, Ecole Polytechnique Federale de Lausanne, ME B3 30, Station 9, 1015 Lausanne, Switzerland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biomimetics; Bio-inspired Robotics; Multi-agent systems; Animal-robot interaction;

    机译:仿生;受生物启发的机器人;多代理系统;动物与机器人的互动;

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