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여자 윈드서핑 선수의 경기 중 Global Positioning System 정보를 활용한 경기력 분석

Analysis of Female Windsurfers' Performance Using Global Positioning System Information During Competitions

  • Chun, Sa Bin (Department of Physical Education, Graduate School of Pukyong National University) ;
  • Park, Jong Chul (Department of Marine Sports, Pukyong National University) ;
  • Park, Sang Ha (Department of Marine Sports, Pukyong National University) ;
  • Kim, Jin Soo (Department of Physical Education, Graduate School of Pukyong National University)
  • 투고 : 2021.06.08
  • 심사 : 2021.09.08
  • 발행 : 2021.09.30

초록

Objective: This study aimed to identify the different wind speed categories and competitive level among windsurfers through GPS variables to provide the useful information on the development of training programs for enhancing windsurfers' performance. Method: Data from 69 female athletes who participated in 27 races during the 2018-2019 windsurfing season were used for the analysis. Average board speed, total race time, total distance, upwind race time, downwind race time, beam reach race time were collected through GPS. Unconfirmed data were excluded along with penalty point data. The wind conditions were classified as light, light to medium, medium, medium to heavy, and heavy wind, the competitive levels were classified as level 1, level 2, and level 3. Results: As for the average board speed, the level 1 or level 2 group showed higher board speed than the level 3 group in all wind conditions except for the light wind. The total race time and upwind race time showed less time in level 1 or level 2 group than level 3 group in all wind conditions. The total distance, downwind race time and beam reach race time showed less distance and time in level1 group than level 3 group under sufficient wind conditions. Conclusion: Our results show that the aerobic capacity to sustain pumping during upwind course in wind conditions below 15 kts effects performance. In wind conditions of 15 kts or more, indicated that the board control for the fast board speed and small distance required during up, down, beam reach courses had an effect on competition performance. This information can be provided to windsurfers and coaching as basic data for training programs to improve performance.

키워드

참고문헌

  1. Anastasiou, A., Jones, T., Mullan, P., Ross, E. & Howatson, G. (2019). Descriptive analysis of olympic class windsurfing competition during the 2017-2018 regatta season. International Journal of Performance Analysis in Sport, 19(4), 517-529. https://doi.org/10.1080/24748668.2019.1631054
  2. Andrianopoulos, V. & Vogiatzis, I. (2017). Windsurfing: The physiology of athletic performance and training. Extreme Sports Medicine, 357-363.
  3. Bojsen-Moller, J., Larsson, B. & Aagaard, P. (2015). Physical requirements in olympic sailing. European Journal of Sport Science, 15(3), 220-227. https://doi.org/10.1080/17461391.2014.955130
  4. Bojsen-Moller, J., Larsson, B., Magnusson, S. P. & Aagaard, P. (2007). Yacht type and crew-specific differences in anthropometric, aerobic capacity, and muscle strength parameters among international olympic class sailors. Journal of Sports Sciences, 25(10), 1117-1128. https://doi.org/10.1080/02640410701287115
  5. Caraballo, I., Conde-Caveda, J., Pezelj, L., Milavic, B. & Castro-Pinero, J. (2021). GNSS applications to assess performance in olympic sailors: Laser class. Applied Sciences, 11(1), 264. https://doi.org/10.3390/app11010264
  6. Caraballo, I., Cruz-Leon, C., Perez-Bey, A. & Gutierrez-Manzanedo, J. V. (2021). Performance analysis of Paralympic 2.4 mR class sailing. Journal of Sports Sciences, 1-7. https://doi.org/10.1080/02640414.2017.1378421
  7. Caraballo Vidal, I., Gonzalez Montesinos, J. L., Casado-Rodriguez, F. & Gutierrez-Manzanedo, J. V. (2021). Performance analysis in olympic sailors of the formula kite class using GPS. Sensors, 21(2), 574. https://doi.org/10.3390/s21020574
  8. Castagna, O., Brisswalter, J., Lacour, J. & Vogiatzis, I. (2008). Physiological demands of different sailing techniques of the new olympic windsurfing class. European Journal of Applied Physiology, 104(6), 1061-1067. https://doi.org/10.1007/s00421-008-0863-y
  9. Chamari, K., Moussa-Chamari, I., Galy, O., Chaouachi, M., Koubaa, D., Hassen, C. B. & Hue, O. (2003). Correlation between heart rate and performance during olympic windsurfing competition. European Journal of Applied Physiology, 89(3), 387-392. https://doi.org/10.1007/s00421-003-0808-4
  10. Coutts, A. J. & Duffield, R. (2010). Validity and reliability of GPS devices for measuring movement demands of team sports. Journal of Science and Medicine in Sport, 13(1), 133-135. https://doi.org/10.1016/j.jsams.2008.09.015
  11. Cummins, C., Orr, R., O'Connor, H. & West, C. (2013). Global positioning systems (GPS) and microtechnology sensors in team sports: A systematic review. Sports Medicine, 43(10), 1025-1042. https://doi.org/10.1007/s40279-013-0069-2
  12. Eiraku, H., Ishii, Y., Funo, T., Nakamura, N., Matsushita, M. & Yamamoto, M. (2013). Quantitative evaluation of the tacking technique in the sailing assessed using GPS: Comparison of flat tacking and roll tacking. The Japan Journal of Coaching Studies, 27(1), 23-32.
  13. Farley, O. R., Abbiss, C. R. & Sheppard, J. M. (2017). Performance analysis of surfing: A review. Journal of Strength and Conditioning Research, 31(1), 260-271. https://doi.org/10.1519/JSC.0000000000001442
  14. Ferretti, R. & Festa, A. (2019). Optimal route planning for sailing boats: A hybrid formulation. Journal of Optimization Theory and Applications, 181(3), 1015-1032. https://doi.org/10.1007/s10957-019-01506-x
  15. Guevel, A. (1999). Heart rate and blood lactate responses during competitive olympic boardsailing. Journal of Sports Sciences, 17(2), 135-141. https://doi.org/10.1080/026404199366235
  16. Hagiwara, M. & Ishii, Y. (2016). Analysis of Racing Factors in Windsurfing under Light Wind. Medicine & Science in Sports & Exercise, 48(5S), 1040. https://doi.org/10.1249/01.mss.0000488128.92942.46
  17. Larsson, P. & Henriksson-Larsen, K. (2001). The use of dGPS and simultaneous metabolic measurements during orienteering. Medicine and Science in Sports and Exercise, 33(11), 1919-1924. https://doi.org/10.1097/00005768-200111000-00018
  18. Legg, S. J. & Mackie, H. W. (2000). Change in knowledge and reported use of sport science by elite new zealand olympic class sailors. Journal of Physiological Anthropology and Applied Human Science, 19(2), 83-92. https://doi.org/10.2114/jpa.19.83
  19. Peeling, P., Cox, G. R., Bullock, N. & Burke, L. M. (2015). Beetroot juice improves on-water 500 m time-trial performance, and laboratory-based paddling economy in national and international-level kayak athletes. International Journal of Sport Nutrition and Exercise Metabolism, 25(3), 278-284. https://doi.org/10.1123/ijsnem.2014-0110
  20. Pluijms, J. P., Canal-Bruland, R., Kats, S. & Savelsbergh, G. J. (2013). Translating key methodological issues into technological advancements when running in-situ experiments in sports: An example from sailing. International Journal of Sports Science & Coaching, 8(1), 89-103. https://doi.org/10.1260/1747-9541.8.1.89
  21. Racing Rules of Sailing. (2021). Retrieved 3.09, 2021, from https://www.sailing.org/documents/racingrules/index.php.
  22. Schram, B. L., Hing, W. A., Climstein, M. & Furness, J. W. (2017). A performance analysis of a stand-up paddle board marathon race. The Journal of Strength & Conditioning Research, 31(6), 1552-1556. https://doi.org/10.1519/jsc.0000000000001707
  23. Scott, M. T., Scott, T. J. & Kelly, V. G. (2016). The validity and reliability of global positioning systems in team sport: A brief review. Journal of Strength and Conditioning Research, 30(5), 1470-1490. https://doi.org/10.1519/JSC.0000000000001221
  24. Smith, T. B. & Hopkins, W. G. (2012). Measures of rowing performance. Sports Medicine, 42(4), 343-358. https://doi.org/10.2165/11597230-000000000-00000
  25. Vogiatzis, I. & De Vito, G. (2015). Physiological assessment of Olympic windsurfers. European Journal of Sport Science, 15(3), 228-234. https://doi.org/10.1080/17461391.2014.920925