Autonomic load balancing mechanisms in the P2P desktop grid

Jik-Soo Kim, Beomseok Nam, A. Sussman
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引用次数: 1

Abstract

Peer-to-Peer (P2P) desktop grid computing systems circumvent the performance bottleneck and limited scalability of centralized Grid architectures resulting in a massively scalable and robust system. We have designed a set of protocols that implement a distributed, decentralized desktop grid via P2P techniques. Incoming jobs having different types of resource requirements are matched with system nodes through proximity in an N-dimensional resource space. In this paper, we address problems that arise from static load balancing mechanisms for assigning jobs to nodes that can arise for various reasons, including the heterogeneity of the available nodes or the jobs to be run, and from stale information in the P2P system. We greatly improve upon our prior work by providing lightweight yet effective dynamic load balancing mechanisms to overcome load imbalances caused by the limitations of the initial static job assignment scheme. Unlike other systems, we can effectively support resource constraints of jobs during the course of redistribution since we simplify the problem of matchmaking through building a multi-dimensional resource space and mapping jobs and nodes to this space. Throughout extensive simulation results, we show that dynamic load balancing makes the overall system more scalable, by improving system throughput and response time with low additional overhead.
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P2P桌面网格中的自主负载平衡机制
点对点(P2P)桌面网格计算系统绕过了集中式网格体系结构的性能瓶颈和有限的可伸缩性,从而形成了可大规模扩展和健壮的系统。我们设计了一套协议,通过P2P技术实现分布式、去中心化的桌面网格。具有不同类型资源需求的传入作业通过在n维资源空间中的接近度与系统节点相匹配。在本文中,我们解决了静态负载平衡机制为节点分配作业所产生的问题,这些问题可能由于各种原因而出现,包括可用节点或要运行的作业的异构性,以及P2P系统中的过时信息。我们通过提供轻量级但有效的动态负载平衡机制来克服由初始静态作业分配方案的局限性引起的负载不平衡,从而大大改进了之前的工作。与其他系统不同,我们通过构建多维资源空间并将作业和节点映射到该空间,从而简化了配对问题,因此可以有效地支持再分配过程中作业的资源约束。通过广泛的仿真结果,我们表明动态负载平衡通过以较低的额外开销提高系统吞吐量和响应时间,使整个系统更具可扩展性。
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