Graphs with the adjacent vertex property, but not the fixed clique property

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Graphs with the adjacent vertex property, but not the fixed clique property

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  • Research Article
  • Cite Count Icon 17
  • 10.1016/0304-3975(94)00220-d
Efficient parallel algorithms for doubly convex-bipartite graphs
  • Aug 1, 1995
  • Theoretical Computer Science
  • Chang-Wu Yu + 1 more

Efficient parallel algorithms for doubly convex-bipartite graphs

  • Research Article
  • Cite Count Icon 6
  • 10.1186/s10033-020-00521-8
Similar Vertices and Isomorphism Detection for Planar Kinematic Chains Based on Ameliorated Multi-Order Adjacent Vertex Assignment Sequence
  • Feb 15, 2021
  • Chinese Journal of Mechanical Engineering
  • Liang Sun + 4 more

Isomorphism detection is fundamental to the synthesis and innovative design of kinematic chains (KCs). The detection can be performed accurately by using the similarity of KCs. However, there are very few works on isomorphism detection based on the properties of similar vertices. In this paper, an ameliorated multi-order adjacent vertex assignment sequence (AMAVS) method is proposed to seek out similar vertices and identify the isomorphism of the planar KCs. First, the specific definition of AMAVS is described. Through the calculation of the AMAVS, the adjacent vertex value sequence reflecting the uniqueness of the topology features is established. Based on the value sequence, all possible similar vertices, corresponding relations, and isomorphism discrimination can be realized. By checking the topological graph of KCs with a different number of links, the effectiveness and efficiency of the proposed method are verified. Finally, the method is employed to implement the similar vertices and isomorphism detection of all the 9-link 2-DOF(degree of freedom) planar KCs.

  • Research Article
  • Cite Count Icon 16
  • 10.1137/0307009
On the Tours of a Traveling Salesman
  • Feb 1, 1969
  • SIAM Journal on Control
  • Katta G Murty

Adjacency properties of tours on their convex hull are discussed. A rule is given by which it can be tested whether any two tours are adjacent vertices on this convex hull or not. Based on this rule an algorithm is described for generating all the adjacent tours of a given tour.

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