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Expanded Douglas–Peucker Polygonal Approximation and Opposite Angle-Based Exact Cell Decomposition for Path Planning with Curvilinear Obstacles

Jin-Woo Jung, Byung-Chul So, Jin-Gu Kang, Dong‐Woo Lim, Yunsik Son

Year
2019
Citations
32
Access
Open access

Abstract

The Expanded Douglas–Peucker (EDP) polygonal approximation algorithm and its application method for the Opposite Angle-Based Exact Cell Decomposition (OAECD) are proposed for the mobile robot path-planning problem with curvilinear obstacles. The performance of the proposed algorithm is compared with the existing Douglas–Peucker (DP) polygonal approximation and vertical cell decomposition algorithm. The experimental results show that the path generated by the OAECD algorithm with EDP approximation appears much more natural and efficient than the path generated by the vertical cell decomposition algorithm with DP approximation.

Keywords

Curvilinear coordinatesApproximation algorithmDecompositionPath (computing)Motion planningAlgorithmComputer scienceMathematicsMathematical optimizationRobot

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