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Remote Control Management System for Autonomous Ship

자율운항선박을 위한 원격제어관리시스템

  • Lee, Kwangil (Division of Automation and Control, Korea Maritime and Ocean University)
  • 이광일 (한국해양대학교 제어자동화공학부)
  • Received : 2018.09.11
  • Accepted : 2018.11.20
  • Published : 2018.11.28

Abstract

Autonomous ship has been sportlighted as a core technology for the maritime industry in Industry 4.0 era. Autonomous ship is expeected to improve the safety, reliability, efficiency and environment significantly. For the realization of the autonomous ship, the remote control of the ship is one of the core functionality in addition to the autonomous ship control functionality in a ship. In this paper, we address a autonomous ship control system based on remote control. This paper proposes a remote control autonomous system and standardized ship-to-shore remote control protocol with for open platform. Finally, we implemented the system and tested with a real experiments with the test ship in order to demonstrate the feasibility of the proposed remote control autonomous system.

자율운항선박은 제4차 산업혁명을 맞이하여 조선해양분야에서 가장 주목을 받고 있는 기술이다. 특히, 자율운항선박기술은 해상에서의 안전성, 신뢰성, 효율성 및 친환경을 달성할 수 있는 핵심기술로서 간주되고 있다. 자율운항선박의 실현을 위해서는 선박이 자유적으로 운항할 수 있는 기술 뿐 아니라, 육상에서 원격으로 선박을 제어할 수 있는 기술도 중요하다. 본 논문에서는 육상에서 다양한 선박을 원격에서 관제할 수 있는 육상관제시스템에 대해서 다루고 있다. 본 논문에서는 원격관제를 위한 개방형 자율운항 시스템 구조로서 육상과 선박간 원격과제 및 원격 모니터링을 수행하기 위한 표준화된 원격관제 프로토콜과 선박 제어방안을 제안하고 있다. 또한, 본 논문에서는 모의선박을 통한 테스트베드 구축과 원격제어 기능에 대한 테스트를 통해 제안된 시스템의 적합성을 확인하였다.

Keywords

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Fig. 1. Autonomous system control mode

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Fig. 2. Remote control system architecture

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Fig. 3. Remote control message exchange scenario

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Fig. 4. Route data model for autonomous ship

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Fig. 5. Test-bed system structure

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Fig. 6. Route data model for autonomous ship

References

  1. O. J. Rodseth (2016, April), Sustainalble and Competitive Cyber-Shipping through Industry 4.0, Singapore Maritime Sustainability Forum, Suntec city, Singapore.
  2. K. Lee, S. Hwang (2018), "Trends of International Standards for Autnomous ship" TTA Journal, vol. 175, 115-122.
  3. IMO. http://www.imo.org
  4. H. C. Burmeister, W. Bruhn, o. J. Rodseth. & T. Porathe. (2014). Autonomous Unmanned Merchant Vessel and its Contribution towards the e-Navigation Implementation: The MUNIN Perspective. International Journal of e-Navigation and Maritime Economy, 1, 1-13. https://doi.org/10.1016/j.enavi.2014.12.002
  5. M. Hoyhtya, J. Huusko, M. Kivirantam K. Solbergg and J. Rokka (2017), Connectivity for Autonomous Ships: Architecture, Use cases and Research Challenges, 8th International Conference on IT Convergence, Jeju, Korea.
  6. K. Lee and S. W. Hwang (2017). Remote Control and Monitoring babsed on Common Maritime Data Struccture for Autonomous Ship. Proceedings of International Conference on Maritime Technology. Busan, Korea.
  7. J. Poikonen (2016), Ship Communication Challenges for Autonomous and Remote-controlled Vessels, European Maritime Day 2016, Turku, Norway.
  8. O. J. Rodseth, B. Kvamstad, T. Porathe. H. C. Burmeister. (2013). Communication architecture for an unmanned merchant ship. Proceedings of IEEE Oceans 2013. Bergen, Norway.
  9. IEC (2015), IEC 61174 Ed. 4.0. Maritime navigation and radiocommunication equipment and systems - Electronic chard display and information system - Operational and performance requirements, methods of testing and required test results, Gneva : IEC.
  10. IEC (2017), IEC 80/895/CD. Maritime navigation and radiocommunication equipment and systems - Data interfaces - Part 1: Route Plan based on S-100, Gneva : IEC.
  11. Proboat. http://www.proboat.co.uk
  12. IEC (2014), IEC 62288. Maritime navigation and radiocommunication equipment and systems - Presentation of navigation-related information on shipborne navigational displays - General requirements, methods of testing and required test results, Gneva : IEC
  13. O. J. Rodseth & K. Lee (2015, May), Secure communication for e-Navigation and remote control of unmanned ships, Conference on Computer Applications and Information Technology in the Maritime Industries, Ulrichshusen, Germay.
  14. J. Han, B. Koo & K. Cheoi (2017), Obstacle Detection and Recognition System for Autonomous Driving Vehicle, Journal of Convergence for Information Technology, Korea.
  15. J. Hong (2017), Review on Security Communication Environment in Intelligent Vehicle Transport System, Journal of Convergence for Information Technology, Korea.