Physics Applied to the Sailboat Optimum Upwind Path Algorithm
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Autonomous vehicles are predicted to be an enormous disrupter to our economy, creating a massive and unpredictable impact, much like the smartphone on telecommunications. Marine transportation is at the leading edge, with automated boats crossing the oceans. Sailboats and sail-assisted boats, in particular, are not just efficient and environmentally friendly, but also allow automated boats to be at sea for extended periods. This is excellent for applications such as oil and gas pipeline monitoring, data collection, and ocean mapping. Navigation is critical, however, one issue unique to sailboats is that it is impossible to sail directly into the wind. In order to navigate upwind the boat needs to follow a zig-zag route towards the destination. Details such as the angles, lengths, and number of zig-zags are critical to maximizing forward progress to the destination. This research includes an approach to determine the optimal zig-zag route for efficiency, which could be used as part of route planning before a journey begins, or as part of an autonomous sailboat system.
Kantor, J. (2008). Learn sailing right! Beginning sailing: the national standard for quality sailing instruction. United States Sailing Association.
Phillips, J. (2021, April 18). Sailing upwind and tacking -Hatteras sailing. Hatteras Sailing. https://hatterassailing.org/learn-to-sail/sailing-upwind-and-tacking/
Sailing, U. (2012). Basic keelboat: The National Standard for Quality Sailing Instruction. United States Sailing Association.
Claughton, A R; Wellicome, J F; Shenoi, R A (2006). Sailing yacht design: theory. Southampton, UK. pp. 109–143. ISBN 0-85432-829-7.
Garrett, R. (1987). The Symmetry of Sailing: The Physics of Sailing for Yachtsmen.
http://ci.nii.ac.jp/ncid/BA85752176
Kluyver, T. (2018). Robotic Sailing Guide. Retrieved from: https://robotic-sailing-intro.readthedocs.io/en/latest/control.html
Grouch, M. (2022). Bareboat Necessities Projects. Retrieved from:
https://bareboat-necessities.github.io/my-bareboat/#_boat_electronics_project
Optimal tacks. (n.d.). https://www.sailtimerapp.com/OptimalTacks.html
Asa, Z. Q. (2022, July 26). How a boat sails upwind. American Sailing. https://asa.com/news/2022/07/26/sailing-upwind/
Gowland, C. (2020, July 10). Focus on ANGLE: a key to upwind performance. International Sailing Academy. https://internationalsailingacademy.com/focus-angle-key-upwind-performance/
Hewitt, P. G. (2009). CONCEPTUAL PHYSICS, 11TH ED. (11th ed.). Pearson.
Headifen, G. (2022, November 23). How do Polar Plots Work on a Sailboat? NauticEd Sailing Blog. https://sailing-blog.nauticed.org/how-do-polar-plots-work-on-a-sailboat/
Giancoli, D. C. (1980). Physics: Principles with Applications. http://ci.nii.ac.jp/ncid/BA71764064
Ashmore, C. (2023). Control system for an autonomous sailboat. ResearchGate. https://doi.org/10.13140/RG.2.2.16745.47200
Burch, D. (n.d.). Introduction to Polar Diagrams and Optimum VMC.
https://davidburchnavigation.blogspot.com/2022/02/VMC.html
Sailing skills Archives - Yachting Monthly. (n.d.). Yachting Monthly.
https://www.yachtingmonthly.com/sailing-skills/
ORC sailboat data. (n.d.). https://jieter.github.io/orc-data/site/index.html#NOR/NOR13455
Sajumonir. (2023, August 28). Harnessing the wind: Advanced Sailing Tactics - Sailing Hack. Sailing Hack. https://sailinghack.com/harnessing-the-wind-advanced-sailing-tactics/
Polar plot — Matplotlib 3.8.2 documentation. (n.d.).
https://matplotlib.org/stable/gallery/pie_and_polar_charts/polar_demo.html