Improved data structures for fully dynamic biconnectivity

Henzinger MH. 2000. Improved data structures for fully dynamic biconnectivity. SIAM Journal on Computing. 29(6), 1761–1815.

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Abstract
We present fully dynamic algorithms for maintaining the biconnected components in general and plane graphs. A fully dynamic algorithm maintains a graph during a sequence of insertions and deletions of edges or isolated vertices. Let m be the number of edges and n be the number of vertices in a graph. The time per operation of the best deterministic algorithms is 𝑂(π‘›βˆš) in general graphs and O(log n) in plane graphs for fully dynamic connectivity and O(min m2/3 ,n}) in general graphs and 𝑂(π‘›βˆš) in plane graphs for fully dynamic biconnectivity. We improve the later running times to 𝑂(π‘šlogπ‘›β€Ύβ€Ύβ€Ύβ€Ύβ€Ύβ€Ύβ€Ύβˆš) in general graphs and O(log 2n ) in plane graphs. Our algorithm for general graphscan also find the biconnected components of all vertices in time O(n).
Publishing Year
Date Published
2000-11-01
Journal Title
SIAM Journal on Computing
Volume
29
Issue
6
Page
1761-1815
ISSN
eISSN
IST-REx-ID

Cite this

Henzinger MH. Improved data structures for fully dynamic biconnectivity. SIAM Journal on Computing. 2000;29(6):1761-1815. doi:10.1137/s0097539794263907
Henzinger, M. H. (2000). Improved data structures for fully dynamic biconnectivity. SIAM Journal on Computing. Society for Industrial & Applied Mathematics. https://doi.org/10.1137/s0097539794263907
Henzinger, Monika H. β€œImproved Data Structures for Fully Dynamic Biconnectivity.” SIAM Journal on Computing. Society for Industrial & Applied Mathematics, 2000. https://doi.org/10.1137/s0097539794263907.
M. H. Henzinger, β€œImproved data structures for fully dynamic biconnectivity,” SIAM Journal on Computing, vol. 29, no. 6. Society for Industrial & Applied Mathematics, pp. 1761–1815, 2000.
Henzinger MH. 2000. Improved data structures for fully dynamic biconnectivity. SIAM Journal on Computing. 29(6), 1761–1815.
Henzinger, Monika H. β€œImproved Data Structures for Fully Dynamic Biconnectivity.” SIAM Journal on Computing, vol. 29, no. 6, Society for Industrial & Applied Mathematics, 2000, pp. 1761–815, doi:10.1137/s0097539794263907.

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