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A bio-inspired electrocommunication system for small underwater robots

  • Wei Wang
  • , Jindong Liu
  • , Guangming Xie
  • , Li Wen
  • , Jianwei Zhang
  • Peking University
  • Imperial College London
  • University of Hamburg

科研成果: 期刊稿件文章同行评审

摘要

Weakly electric fishes (Gymnotid and Mormyrid) use an electric field to communicate efficiently (termed electrocommunication) in the turbid waters of confined spaces where other communication modalities fail. Inspired by this biological phenomenon, we design an artificial electrocommunication system for small underwater robots and explore the capabilities of such an underwater robotic communication system. An analytical model for electrocommunication is derived to predict the effect of the key parameters such as electrode distance and emitter current of the system on the communication performance. According to this model, a low-dissipation, and small-sized electrocommunication system is proposed and integrated into a small robotic fish. We characterize the communication performance of the robot in still water, flowing water, water with obstacles and natural water conditions. The results show that underwater robots are able to communicate electrically at a speed of around 1 k baud within about 3 m with a low power consumption (less than 1 W). In addition, we demonstrate that two leader-follower robots successfully achieve motion synchronization through electrocommunication in the three-dimensional underwater space, indicating that this bio-inspired electrocommunication system is a promising setup for the interaction of small underwater robots.

源语言英语
文章编号036002
期刊Bioinspiration and Biomimetics
12
3
DOI
出版状态已出版 - 29 3月 2017

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