Parameterized Algorithms for Covering by Arithmetic Progressions
Publication date
2024-01-21
Editors
Fernau, Henning
Gaspers, Serge
Klasing, Ralf
Advisors
Supervisors
Document Type
Part of book
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taverne
Abstract
An arithmetic progression is a sequence of integers in which the difference between any two consecutive elements is the same. We investigate the parameterized complexity of two problems related to arithmetic progressions, called Cover by Arithmetic Progressions (CAP) and Exact Cover by Arithmetic Progressions (XCAP). In both problems, we are given a set X consisting of n integers along with an integer k, and our goal is to find k arithmetic progressions whose union is X. In XCAP we additionally require the arithmetic progressions to be disjoint. Both problems were shown to be NP-complete by Heath [IPL’90]. We present a O(k2)poly(n) time algorithm for CAP and a 2O(k3)poly(n) time algorithm for XCAP. We also give a fixed parameter tractable algorithm for CAP parameterized below some guaranteed solution size. We complement these findings by proving that CAP is Strongly NP-complete in the field Zp, if p is a prime number part of the input.
Keywords
Arithmetic Progressions, Number Theory, Set Cover, parameterized complexity theory, Taverne
Citation
Bliznets, I, Nederlof, J & Szilágyi, K 2024, Parameterized Algorithms for Covering by Arithmetic Progressions. in H Fernau, S Gaspers & R Klasing (eds), SOFSEM 2024: Theory and Practice of Computer Science : Theory and Practice of Computer Science - 49th International Conference on Current Trends in Theory and Practice of Computer Science, SOFSEM 2024, Proceedings. 1 edn, Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics), vol. 14519 LNCS, Springer, Cham, pp. 125–138. https://doi.org/10.1007/978-3-031-52113-3_9