Evolving R2 to R2+: Optimal, Delayed Line-of-sight Vector-based Path Planning

Fuente: arXiv
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Autori principali: Lai, Yan Kai, Vadakkepat, Prahlad, Xiang, Cheng
Natura: Preprint
Pubblicazione: 2024
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author Lai, Yan Kai
Vadakkepat, Prahlad
Xiang, Cheng
author_facet Lai, Yan Kai
Vadakkepat, Prahlad
Xiang, Cheng
contents A vector-based any-angle path planner, R2, is evolved in to R2+ in this paper. By delaying line-of-sight, R2 and R2+ search times are largely unaffected by the distance between the start and goal points, but are exponential in the worst case with respect to the number of collisions during searches. To improve search times, additional discarding conditions in the overlap rule are introduced in R2+. In addition, R2+ resolves interminable chases in R2 by replacing ad hoc points with limited occupied-sector traces from target nodes, and simplifies R2 by employing new abstract structures and ensuring target progression during a trace. R2+ preserves the speed of R2 when paths are expected to detour around few obstacles, and searches significantly faster than R2 in maps with many disjoint obstacles.
format Preprint
id arxiv_https___arxiv_org_abs_2405_04952
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Evolving R2 to R2+: Optimal, Delayed Line-of-sight Vector-based Path Planning
Lai, Yan Kai
Vadakkepat, Prahlad
Xiang, Cheng
Robotics
A vector-based any-angle path planner, R2, is evolved in to R2+ in this paper. By delaying line-of-sight, R2 and R2+ search times are largely unaffected by the distance between the start and goal points, but are exponential in the worst case with respect to the number of collisions during searches. To improve search times, additional discarding conditions in the overlap rule are introduced in R2+. In addition, R2+ resolves interminable chases in R2 by replacing ad hoc points with limited occupied-sector traces from target nodes, and simplifies R2 by employing new abstract structures and ensuring target progression during a trace. R2+ preserves the speed of R2 when paths are expected to detour around few obstacles, and searches significantly faster than R2 in maps with many disjoint obstacles.
title Evolving R2 to R2+: Optimal, Delayed Line-of-sight Vector-based Path Planning
topic Robotics
url https://arxiv.org/abs/2405.04952