2006Unpublished venueRequires access

A distributed and cooperative load balancing mechanism for large-scale P2P systems

Yoshitomo Murata, Hiroyuki Takizawa, T. Inaba, H. Kobayashi

Open publisher page 30 citations

Abstract

This paper proposes a distributed and cooperative scheduling mechanism for dynamic load-balancing on a large-scale distributed computing environment. In the proposed mechanism, the scheduling processes are performed by independent distributed schedulers on individual computing resources. Decentralized mechanisms are more suitable for dynamic load-balancing of a large-scale distributed computing environment than centralized mechanisms in terms of scalability and fault tolerance. Experimental results show that the proposed scheduling mechanism has high scalability and efficiency, without any excessive concentration of processing even if the number of computing resources increases

About this research paper

What this paper is about

This paper proposes a distributed and cooperative scheduling mechanism for dynamic load-balancing on a large-scale distributed computing environment. In the proposed mechanism, the scheduling processes are performed by independent distributed schedulers on individual computing resources. Decentralized mechanisms are more suitable for dynamic load-balancing of a large-scale distributed computing environment than centralized mechanisms in terms of scalability and fault tolerance. Experimental results show that the proposed scheduling mechanism has high scalability and efficiency, without any excessive concentration of processing even if the number of computing resources increases

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OpenAlex reports 30 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper proposes a distributed and cooperative scheduling mechanism for dynamic load-balancing on a large-scale distributed computing environment. In the proposed mechanism, the scheduling processes are performed by independent distributed schedulers on individual computing resources. Decentralized mechanisms are more suitable for dynamic load-balancing of a large-scale distributed computing environment than centralized mechanisms in terms of scalability and fault tolerance. Experimental results show that the proposed scheduling mechanism has high scalability and efficiency, without any excessive concentration of processing even if the number of computing resources increases

Key concepts: Distributed computing, Computer science, Scalability, Load balancing (electrical power), Scheduling (production processes), Fault tolerance, Dynamic priority scheduling, Distributed Computing Environment

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