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Ultra-Resilient Superimposed Codes: Near-Optimal Construction and Applications

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Abstract

A superimposed code is a collection of binary vectors (codewords) with the property that no vector is contained in the Boolean sum of any k others, enabling unique identification of codewords within any group of k. Superimposed codes are foundational combinatorial tools with applications in areas ranging from distributed computing and data retrieval to fault-tolerant communication. However, classical superimposed codes rely on strict alignment assumptions, limiting their effectiveness in asynchronous and fault-prone environments, which are common in modern systems and applications. We introduce Ultra-Resilient Superimposed Codes (URSCs), a new class of codes that extends the classic superimposed framework by ensuring a stronger codewords’ isolation property and resilience to two types of adversarial perturbations: arbitrary cyclic shifts and partial bitwise corruption (flips). Additionally, URSCs exhibit universality, adapting seamlessly to any number k of concurrent codewords without prior knowledge. This is a combination of properties not achieved in any previous construction. We provide the first polynomial-time construction of URSCs with near-optimal length, significantly outperforming previous constructions with less general features, all without requiring prior knowledge of the number of concurrent codewords, k. We demonstrate that our URSCs significantly advance the state of the art in multiple applications, including uncoordinated beeping networks, where our codes reduce time complexity for local broadcast by nearly two orders of magnitude, and generalized contention resolution in multi-access channel communication.

Original languageEnglish (US)
Title of host publication52nd International Colloquium on Automata, Languages, and Programming, ICALP 2025
EditorsKeren Censor-Hillel, Fabrizio Grandoni, Joel Ouaknine, Gabriele Puppis
PublisherSchloss Dagstuhl- Leibniz-Zentrum fur Informatik GmbH, Dagstuhl Publishing
ISBN (Electronic)9783959773720
DOIs
StatePublished - Jun 30 2025
Event52nd EATCS International Colloquium on Automata, Languages, and Programming, ICALP 2025 - Aarhus, Denmark
Duration: Jul 8 2025Jul 11 2025

Publication series

NameLeibniz International Proceedings in Informatics, LIPIcs
Volume334
ISSN (Print)1868-8969

Conference

Conference52nd EATCS International Colloquium on Automata, Languages, and Programming, ICALP 2025
Country/TerritoryDenmark
CityAarhus
Period7/8/257/11/25

Keywords

  • contention resolution
  • deterministic algorithms
  • superimposed codes
  • ultra-resiliency
  • uncoordinated beeping networks

ASJC Scopus subject areas

  • Software

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