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Research Article

Morphological evolution for pipe inspection using Robot Operating System (ROS)

ORCID Icon, ORCID Icon, , , &
Pages 714-724 | Received 06 Mar 2020, Accepted 19 Mar 2020, Published online: 07 May 2020

References

  • Srijith, B.; Thirumalai, R. Inspection Tool for Flexible Manufacturing System. Imp. J. Interdiscip. Res. 2017, 3; pp 387-397.
  • Nishihara, T.; Osuka, K.; Tamura, I. Development of a Simulation Model for Inner-gas-pipe Inspection Robot: SPRING. Proceedings of the SICE Annual Conference. Taipei, Taiwan, 2010; pp 902–904.
  • Kim, J.; Sharma, G.; Boudriga, N.; Iyengar, S. S. SPAMMS: A Sensor-based Pipeline Autonomous Monitoring and Maintenance System. Proceedings of the International Conference on COMmunication Systems and NETworks (COMSNETS). Bangalore, India, 2010; pp 1–10.
  • Nayak, A.; Pradhan, S. Design of a New In-pipe Inspection Robot. Procedia Eng. 2014, 97, 2081–2091.
  • Aaqib, H. S.; Fazil, A. M.; Saquib, H. Pipe Inspection Robot. Int. Res. J. Eng. Techn. 2018, 5; pp 280-285.
  • Tur, M.; M., J.; Garthwaite, W. Robotic Devices for Water Main In-pipe Inspection: A Survey. J. Field Robot. 2010, 27, 491–508. DOI: 10.1002/rob.20347.
  • Hallawa, A.; Schlupkothen, S.; Iacca, G.; Ascheid, G. Energy-efficient Environment Mapping via Evolutionary Algorithm Optimized Multi-agent Localization. Proceedings of the Genetic and Evolutionary Computation Conference (GECCO) Companion. Berlin, Germany, 2017; pp 1721–1726.
  • Hülse, M.; Wischmann, S.; Pasemann, F. Structure and Function of Evolved Neuro-controllers for Autonomous Robots. Connect. Sci. 2004, 16; pp 249–266.
  • Brezocnik, M.; Balic, J. A Genetic-based Approach to Simulation of Self-organizing Assembly. Robot. Comp.-Int. Manuf. 2001, 17, 113–120. DOI: 10.1016/S0736-5845(00)00044-2.
  • Meyers, R. A. Encyclopedia of Complexity and Systems Science; Springer: New York, NY, 2009.
  • Hrabia, C.-E.; Lützenberger, M.; Albayrak, S. Towards Adaptive Multi-robot Systems: Self-organization and Self-adaptation. Knowl. Eng. Rev. 2018, 33; pp 1–24.
  • Brodbeck, L.; Hauser, S.; Iida, F. Morphological Evolution of Physical Robots through Model-free Phenotype Development. PLoS ONE. 2015, 10, 1–17. DOI: 10.1371/journal.pone.0128444.
  • Doncieux, S.; Mouret, J.-B.; Bredeche, N.; Padois, V. Evolutionary Robotics: Exploring New Horizons. In New Horizons in Evolutionary Robotics; Doncieux, S., Bredeche, N., Mouret, J.-B.; Eds., Springer-Verlag: Berlin, Heidelberg, Germany, 2011; 3–25.
  • Floreano, D.; Nolfi, S. Evolutionary robotics: The biology, intelligence, and technology of self-organizing machines; Intelligent Robotics and Autonomous Agents series; MIT Press: Cambridge, MA, 2004.
  • Silva, F.; Correia, L.; Christensen, A. Evolutionary Robotics. Scholarpedia. 2016, 11, 33333. DOI: 10.4249/scholarpedia.33333.
  • Jelisavcic, M.; de Carlo, M.; Hupkes, E.; Eustratiadis, P.; Orlowski, J.; Haasdijk, E.; Auerbach, J. E.; Eiben, A. E. Real-world Evolution of Robot Morphologies: A Proof of Concept. Artif. Life. 2017, 23, 206–235. DOI: 10.1162/ARTL_a_00231.
  • Horodinca, M.; Doroftei, I.; Mignon, E.; Preumont, A. A Simple Architecture for In-pipe Inspection Robots. Proceedings of the International Colloquium on Autonomous and Mobile Systems. Magdeburg, Germany, 2002; pp 61–64.
  • Manhães, M. M. M.; Scherer, S. A.; Voss, M.; Douat, L. R.; Rauschenbach, T. UUV Simulator: A Gazebo-based Package for Underwater Intervention and Multi-robot Simulation. Proc OCEANS MTS/IEEE Monterey. 2016, 1–8.
  • Hornby, G. S.; Pollack, J. B. Evolving L-Systems to Generate Virtual Creatures. Comput. Graph. 2001, 25, 1041–1048. DOI: 10.1016/S0097-8493(01)00157-1.
  • Sen, D. T.; Vinh, T. C. Determination of Added Mass and Inertia Moment of Marine Ships Moving in 6 Degrees of Freedom. Int. J. Of Transp. Eng. Techn. 2016, 2, 8–14.
  • Diaz, R. A.; Herrera, W. J.; Martinez, R. Some Powerful Methods to Calculate Moments of Inertia. arXiv e-prints 2004, physics/0404005.

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