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Grounding-aware RRT* for Path Planning and Safe Navigation of Marine Crafts in Confined Waters

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arxiv 2109.06967 v1 pith:L3K5AT24 submitted 2021-09-14 cs.RO cs.SIcs.SYeess.SY

classification cs.ROcs.SIcs.SYeess.SY
keywords pathwatersconfineddepthnavigationplanningshipachieves
verification ladder T0 review T1 audit T2 compute T3 formal
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The paper presents a path planning algorithm based on RRT* that addresses the risk of grounding during evasive manoeuvres to avoid collision. The planner achieves this objective by integrating a collective navigation experience with the systematic use of water depth information from the electronic navigational chart. Multivariate kernel density estimation is applied to historical AIS data to generate a probabilistic model describing seafarer's best practices while sailing in confined waters. This knowledge is then encoded into the RRT* cost function to penalize path deviations that would lead own ship to sail in shallow waters. Depth contours satisfying the own ship draught define the actual navigable area, and triangulation of this non-convex region is adopted to enable uniform sampling. This ensures the optimal path deviation.

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