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Enhanced Bezier curve-based trajectory planning for high-altitude autonomous trucks.


ABSTRACT: Highway freight transport is the backbone of Tibet's logistics network, accounting for 76.4% of regional freight movement (Tibet Bureau of Statistics, 2024). Challenging alpine road conditions-characterized by steep grades, sharp curves, and narrow lanes-combine with the substantial dimensions of heavy trucks to create significant operational difficulties. Autonomous truck development offers a potential solution; however, their trajectory planning algorithms exhibit limitations in high-altitude environments. To address these challenges, we propose a novel trajectory planning method using quartic Bézier curves. These 4th-order parametric curves provide G² continuity. Our approach integrates speed profiles into a three-dimensional curve representation and employs a two-phase optimization process to ensure safety and efficiency. Simulation results demonstrate the method's effectiveness in maintaining truck stability while enabling responsive maneuvering under Tibet's demanding road conditions.

SUBMITTER: Chigan D 

PROVIDER: S-EPMC12469162 | biostudies-literature | 2025

REPOSITORIES: biostudies-literature

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Enhanced Bézier curve-based trajectory planning for high-altitude autonomous trucks.

Chigan Du D   Liu Jianbei J   Zhao Yang Y   Zhao Jianyou J  

PloS one 20250926 9


Highway freight transport is the backbone of Tibet's logistics network, accounting for 76.4% of regional freight movement (Tibet Bureau of Statistics, 2024). Challenging alpine road conditions-characterized by steep grades, sharp curves, and narrow lanes-combine with the substantial dimensions of heavy trucks to create significant operational difficulties. Autonomous truck development offers a potential solution; however, their trajectory planning algorithms exhibit limitations in high-altitude  ...[more]

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