Robust construction of the additively-weighted voronoi diagram via topology-oriented incremental algorithm

  • Lee, M.
  • Sugihara, K.
  • Kim, D.-S.
Citations

SCOPUS

0

초록

Voronoi diagrams tessellate the space where each cell corresponds to an associated generator under an a priori defined distance and have been extensively used to solve geometric problems of various disciplines. Additively-weighted Voronoi diagrams, also called the Voronoi diagram of disks and spheres, have many critical applications and a few algorithms are known. However, algorithmic robustness remains a major hurdle to use these Voronoi diagrams in practice. There are two important yet different approaches to design robust algorithms: the exact-computation and topology-oriented approaches. The former uses high-precision arithmetic and guarantees the correctness mathematically with the cost of a significant use of computational resources. The latter focuses on topological properties to keep consistency using logical computation rather than numerical computation. In this paper, we present a robust and efficient algorithm for computing the Voronoi diagram of disks using a topology-oriented incremental method. The algorithm is rather simple as it primarily checks topological changes only during each disk is incrementally inserted into a previously constructed Voronoi diagram of some other disks.

키워드

Additively-weightedAlgorithmCircleDiskRobustnessTopology-orientedVoronoi diagramComputational geometryGraphic methodsRobustness (control systems)TopologyAdditively-weightedCircleComputational resourcesDiskNumerical computationsTopological propertiesVoronoi diagramsWeighted voronoi diagramAlgorithms
제목
Robust construction of the additively-weighted voronoi diagram via topology-oriented incremental algorithm
저자
Lee, M.Sugihara, K.Kim, D.-S.
DOI
10.1007/978-3-319-42432-3_66
발행일
2016-00
유형
Conference Paper
저널명
Lecture Notes in Computer Science
9725
페이지
514 ~ 521