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Development of an altitude-keeping system for underwater robots using laser beams

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Abstract

Distribution map of the degree of coral has been developing by Manta method to use coral conservation activities. The manta method is a survey method that divers investigate the degree of coral and whitening states while being towed to a boat. The manta method makes great physical burden. Therefore, the authors think that this task can substitute an underwater robot. This underwater robot is desirable to be able to keep altitude above the seabed. Hence, the authors have been developing the altitude (its distance above the sea floor) keeping system for an underwater robot. Visual recognition of distant underwater objects is possible in the water with high transparency, for example, in the coastal sea area of Okinawa Prefecture, Japan. Therefore, the authors have been adopting the image-processing-based distance measurement method using the two laser beams and a monocular camera. It realizes to keep altitude of an underwater robot using such devices. The evaluation experiments of the altitude-keeping system are carried out in the pool.

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References

  1. Ministry of the Environment (2012) Annual Report on the Environment, the Sound Material-Cycle Society and the Biodiversity in Japan 2012, pp 76–77

  2. Bryant D, Burke L, McManus JW, Spalding M (1998) Reefs at risk, World Resources Institute, p 20

  3. Nature Conservation Division, Okinawa prefecture (2010) Coral reef resources intelligence readiness project—Report on coral reef resources investigation project, around main Okinawa island, pp 69–120 (in Japanese)

  4. Kuroshio Biological Research Foundation (2012) Crown-of-thorns Starfish Control Manual, Introduction to the acetic acid injection method

  5. Sagara S, Ambar RB, Takemura F (2013) A stereo vision system for underwater vehicle-manipulator systems—proposal of a novel concept using pan-tilt-slide cameras. J Robot Mechatron 25(5):785–794

    Article  Google Scholar 

  6. Yamashita A, Shirane Y, Kaneko T (2010) Monocular underwater stereo—3D measurement using difference of appearance depending on optical paths. Proc. IEEE/RSJ International Conference of Intelligent Robots and Systems (IROS2010), pp 3652–3657

  7. Seto ML, Hopkin D (2008) Modelling variable length tows and altitude-keeping with the Canadian remote minehunting and disposal system. Proc. IEEE Conference on OCEANS, pp 1–8

  8. Kondo H, Yu S, Ura T (2001) Object observation in detail by the AUV “Tri-Dog 1” with laser pointers. Proc. MTS/IEEE Conference on OCEANS, pp 390–396

  9. Kondo H, Ura T, Nose Y, Akizono J, Sakai H (2003) Visual investigation of underwater structures by the AUV and sea trials. Proc. IEEE Conference on OCEANS, pp 340–345

  10. Karras GC, Kyriakopoulos KJ (2008) Visual servo control of an underwater vehicle using a laser vision system. Proc. IEEE/RSJ International Conference of Intelligent Robots and Systems (IROS2008), pp 4116–4122

  11. Cain C, Leonessa A (2008) Laser based rangefinder for underwater applications. IEEE American Control Conference, pp 6190–6195

  12. Shigematsu B, Moriya N (1997) Development of a deep-water topological survey system using a laser scanner with a GPS. Jpn Soc Photogramm Rem Sens 36(5):24–34 (in Japanese)

    Google Scholar 

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Acknowledgements

This research was supported by the project “A comprehensive management program of the Crown-of-Thorns Starfish outbreaks in Okinawa”.

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Correspondence to Fumiaki Takemura.

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Takemura, F., Taba, R., Hirayama, K. et al. Development of an altitude-keeping system for underwater robots using laser beams. Artif Life Robotics 22, 405–411 (2017). https://doi.org/10.1007/s10015-017-0377-y

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  • DOI: https://doi.org/10.1007/s10015-017-0377-y

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