DOI QR코드

DOI QR Code

Setting Up of VTS Areas Around Jeju Using AIS Data

AIS 데이터를 활용한 제주지역 VTS 관제구역 설정

  • Yoo, Sang-Lok (Research Institute, Future Ocean Information Techonology, Inc.) ;
  • Kim, Kwang-Il (Department of Marine Industry and Maritime Police, Jeju National University)
  • 유상록 ((주)미래해양정보기술 기업부설연구소) ;
  • 김광일 (제주대학교 해양산업경찰학과)
  • Received : 2022.05.17
  • Accepted : 2022.06.15
  • Published : 2022.06.30

Abstract

On the Jeju coast, international cruise ships, passenger ships, and other ships pass frequently, as well as many fishing boats. Thus, there is a high risk of marine accidents and frequent ship collisions. Accordingly, it is urgent to establish a coastal VTS for systematic safety management of ships passing through the coastal waters of Jeju. The purpose of this study was to set the area of the VTS to be newly established. In this study, to calculate the workload of the VTS operators, a formula was proposed that reflects the monitoring workload considering the monitoring frequency and required time for target as well as non-target ships and the workload for ship collision situations. The proposed formula was applied to the newly established VTS area in Jeju. Three control sectors were set up in each VTS center. The average number of workstations per hour was approximately 1, so the division between sectors was appropriate. Thus, it was deduced that there would be no workload for the VTS operators. It is expected that the method proposed in this study can be used as primary data for calculating the appropriate number of workstations for the current VTS, and setting the VTS area for a new coastal VTS in the future.

제주 연안은 국제크루즈선, 여객선, 유 도선 등의 통항이 빈번하고 조업 어선이 많아 해양사고 위험성이 높고 선박 충돌사고가 빈번히 발생하고 있다. 이에 따라 제주 연안 해역을 통항하는 선박의 체계적인 안전관리를 위해 연안 VTS 구축이 시급하다. 본 연구의 목적은 신설될 제주지역 연안 VTS의 관제구역을 설정하고자 한다. 관제사의 업무부하를 측정하기 위해 관제대상 선박과 비관제대상 선박에 대한 모니터링 빈도 및 소요시간 등을 고려한 모니터링 업무량과 선박충돌 조우상황 등에 대한 관제업무량을 반영한 산정식을 설계하여 신설될 제주지역 VTS의 각 관제섹터에 적용하였다. 각 VTS 센터에 3개의 관제섹터를 설정하였으며, AIS 데이터 한 달 치를 이용하여 시간당 평균 관제석을 분석한 결과, 1석 내외로 나타나 섹터간 구획 획정은 적절하여 관제사의 업무부하는 없는 것으로 나타났다. 본 연구에서 제안한 방법은 현재 운영 중인 VTS의 적정 관제석 산출 및 향후 신설될 연안 VTS의 관제구역 설정 등에 기초자료로 활용할 수 있을 것으로 기대된다.

Keywords

Acknowledgement

이 논문은 2021학년도 제주대학교 교원성과 지원사업에 의하여 연구되었음.

References

  1. Abdulla, A. M.(2011), "Regulating Vessel Traffic Service (VTS) to Mitigate Maritime Accidents at Port Approaches", World Maritime University, pp. 1-117.
  2. Bakhvalov, N. S.(1977), "Numerical Methods: Analysis, Algebra, Ordinary Differential Equations", Mir Publishers. pp. 1-663.
  3. Goerlandt, F., Montewka, J., Ravn, E. S., Hanninen, M., and Mazaheri, A.(2012), "Analysis of the NearCollisions using AIS Data for the Selected Locations in the Baltic Sea", Report, Department of Applied Mechanics.
  4. Hsu, W. K. K.(2012), "Ports' Service Attributes for Ship Navigation Safety", Safety Science, Vol. 50, No. 2, pp. 244-252. https://doi.org/10.1016/j.ssci.2011.08.057
  5. IALA(2012), "VTS Manual 2012", Ed. 5, pp. 1-176.
  6. Jeong, J. Y. and Jung, C. Y.(2012), "Empirical Study on the Performance Analysis and Function of Jindo Coastal Vessel Traffic Service", Journal of the Korean Society of Marine Environment & Safety, Vol. 18, No. 4, pp. 308-315. https://doi.org/10.7837/kosomes.2012.18.4.308
  7. KCG(2011), "Research Report on the Feasibility of Expanding and Building Coastal VTS", Korea Coast Guard, pp. 1-152.
  8. KCG(2017), "Research Report for Analysis of the Effect of Integrated Coastal VTS Establishment", Korea Coast Guard, pp. 1-144.
  9. KCG(2018), "Research Report for the Efficient Mid-to-Long-Term Operation of Vessel Traffic Service (VTS) Staffing", Korea Coast Guard, pp. 1-305.
  10. Kee, D. H., Jun, G. T., Waterson P. and Haslam, R.(2017), "A systemic analysis of South Korea Sewol ferry accident-Striking a balance between learning and accountability", Applied ergonomics, Vol. 59, pp. 504-516. https://doi.org/10.1016/j.apergo.2016.07.014
  11. Kim, K. I., Jeong, J. S. and Lee, B. G.(2017), "Study on the Analysis of Near-miss Ship Collisions using Logistic Regression", Journal of Advanced Computational Intelligence and Intelligent Informatics, Vol. 21, No. 3, pp. 467-473. https://doi.org/10.20965/jaciii.2017.p0467
  12. Kim, K. I. and Ahn, J. Y.(2018), "A Study on Appearance Frequencies and Fishing Ground Exploration of Low-run Fishing Obtained by Analyzing AIS Data of Vessels in the Sea around Jeju Island", Journal of the Korean Society of Fisheries and Ocean Technology, Vol. 54, No. 2, pp. 157-163. https://doi.org/10.3796/KSFOT.2018.54.2.157
  13. KMST(2017), "Mokpo Regional Maritime Safety Tribunal Judgment paper No. 2017-069", Korea Maritime Safety Tribunal, pp. 1-11.
  14. KMST(2020a), "Busan Regional Maritime Safety Tribunal Judgment paper No. 2020-063", Korea Maritime Safety Tribunal, pp. 1-9.
  15. KMST(2020b), "Mokpo Regional Maritime Safety Tribunal Judgment paper No. 2020-039", Korea Maritime Safety Tribunal, pp. 1-13.
  16. KMST(2021), "Maritime Accident Statistics in 2020", Korea Maritime Safety Tribunal, pp. 1-189.
  17. Lee, C. H. and Ahn, J. Y.(2019), "A Study on Appearance Frequencies and Fishing Ground Exploration of Trawl Vessels Obtained by Analyzing AIS Data of Vessels in the Sea around Jeju Island", Journal of the Korean Society of Fisheries and Ocean Technology, Vol. 55, No. 2, pp. 138-144. https://doi.org/10.3796/KSFOT.2019.55.2.138
  18. MOF(2017), "The 2nd National Maritime Safety Master Plan(2017~2021)", Ministry of Oceans and Fisheries, pp 1-280.
  19. MOLEG(2021), Ministry of Government Legislation, https://law.go.kr/ (accessed 7th, Jun. 2022).
  20. Park, J. S. and Kim, J. O.(2000), "A Study on the Establishment of VTS Service Area in Pohang", Journal of the Korean Society of Marine Environment and Safety, Vol. 6, No. 2, pp. 1-15.
  21. Saytel(2021), "Jeju Seogwipo coastal VTS system construction basic and detailed design", pp 1-72.
  22. Segar Abdullah, M.(2000), "VTS in the Singapore strait: an Investigation into Mandatory Traffic Control", World Maritime University, pp. 1-111.
  23. Smierzchalski, R.(2005), "Ships' Domains as Collision Risk at Sea in the Evolutionary Method of Trajectory Planning", In Information Processing and Security Systems, pp. 411-422.
  24. Xie, Y.(2013), "The staffing levels at VTS centre: a case study of the Shenzhen VTS centre", World Maritime University, pp. 1-79.
  25. Xu, G., Chen, C. H., Li, F. and Qiu, X.(2020), "AIS Data Analytics for Adaptive Rotating Shift in Vessel Traffic Service", Industrial Management & Data Systems, Vol. 120, No. 4, pp. 749-767. https://doi.org/10.1108/IMDS-01-2019-0056
  26. Yang, H. S.(2010), "A Study on the Sector Division for Effective Vessel Traffic Service: Focused on Daesan, Pyeongtaek and Inchon Harbour", Journal of Navigation and Port Research, Vol. 34, No. 4, pp. 265-270. https://doi.org/10.5394/KINPR.2010.34.4.265
  27. Yoo, S. L. and Jung, C. Y.(2018), "Accident Reduction Effects Analysis of the Coastal Vessel Traffic Services Installation", Proceedings of the Korean Society of Marine Environment & Safety, p. 130.
  28. Yoo, S. L. and Kim, K. I.(2021), "Optimal Staffing for Vessel Traffic Service Operators: A Case Study of Yeosu VTS", Sensors, Vol. 21, No. 23, pp. 1-17. https://doi.org/10.1109/JSEN.2020.3039123