可重构分布式虚拟机混合迁移决策

S. Fu, Chengzhong Xu
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引用次数: 9

摘要

虚拟机是实现计算机资源复用的一种重要机制。随着网络计算的日益普及,人们对自适应和分布式虚拟机的研究产生了新的兴趣。服务迁移是构建可重构虚拟机的关键技术。通过引入移动代理技术,虚拟机系统可以显著提高资源利用率、负载均衡和容错性。本文主要研究可重构分布式虚拟机中负载均衡的混合迁移决策问题。我们从迁移候选者的确定、迁移时间的选择和目标服务器的选择三个方面来解决这个问题。将业务迁移时间和目标服务器选择表述为两个优化模型。基于随机优化理论,推导了分布式和异构系统的最优迁移策略。更新过程被用来模拟迁移的动态。采用动态规划的方法解决agent迁移问题,并考虑混合迁移的相互作用,扩展了最优服务迁移决策。我们的决策策略是对现有服务和代理迁移技术的补充。仿真结果验证了该方法的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Migration decision for hybrid mobility in reconfigurable distributed virtual machines
Virtual machine (VM) is an important mechanism to multiplex computer resources. The increasing popularity of network computing has renewed research interests in the adaptive and distributed virtual machines. Service migration is a vital technique to construct reconfigurable VMs. By incorporating mobile agent technology, VM systems can improve their resource utilization, load-balancing and fault-tolerance significantly. This work focuses on the decision problem of hybrid mobility for load-balancing in reconfigurable distributed VMs. We tackle this problem from three aspects: migration candidate determination, migration timing and destination server selection. The service migration timing and destination server selection are formulated as two optimization models. We derive the optimal migration policy for distributed and heterogeneous systems based on stochastic optimization theories. Renewal processes are applied to model the dynamics of migration. We solve the agent migration problem by dynamic programming and extend the optimal service migration decision by considering the interplay of the hybrid mobility. Our decision policy is complementary to the existing service and agent migration techniques. Its accuracy is verified by simulations.
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