2011Unpublished venueRequires access

Multi-resource Allocation with Unknown Participants

Ajoy K. Datta, Lawrence L. Larmore, Stéphane Devismes, Francois Kawala, Maria Potop-Butucaru

Open publisher page 1 citations

Abstract

We define the problem of multi-resource allocation, which is an extension of the dining philosophers problem. We apply this problem to systems where participants (here called clients) are unknown. We propose a solution for 2-resource allocation in static networks, then, explain how to modify our protocol to handle client dynamicity. Extend our solution to handle larger resource requests is let as a future work.

About this research paper

What this paper is about

We define the problem of multi-resource allocation, which is an extension of the dining philosophers problem. We apply this problem to systems where participants (here called clients) are unknown. We propose a solution for 2-resource allocation in static networks, then, explain how to modify our protocol to handle client dynamicity. Extend our solution to handle larger resource requests is let as a future work.

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OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

We define the problem of multi-resource allocation, which is an extension of the dining philosophers problem. We apply this problem to systems where participants (here called clients) are unknown. We propose a solution for 2-resource allocation in static networks, then, explain how to modify our protocol to handle client dynamicity. Extend our solution to handle larger resource requests is let as a future work.

Key concepts: Resource allocation, Computer science, Resource (disambiguation), Extension (predicate logic), Protocol (science), Resource management (computing), Distributed computing, Work (physics)

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