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Computing configuration space obstacles using polynomial transforms

Wenjie Shu, Zhiqiang Zheng

Year
2004
Citations
2

Abstract

In this paper, we propose an algorithm to compute configuration space obstacles based on the polynomial transform (PT) which requires only real arithmetic. The PT-based algorithm is not restricted by the geometrical characteristics of the robot and obstacles in the world and also it can be expanded to the three-dimensional work space without any difficulties. We prove the minimum possible number of multiplications of constructing the configuration space bitmap and present a quantificational standard to select the size of the resolution N. By comparing our algorithm with works prior, the experimental results show that our PT-based algorithm is efficient.

Keywords

BitmapSpace (punctuation)PolynomialComputer scienceAlgorithmResolution (logic)Time complexityMathematicsArtificial intelligence

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