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首页> 外文期刊>IEEE Transactions on Parallel and Distributed Systems >Deadline Guaranteed Service for Multi-Tenant Cloud Storage
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Deadline Guaranteed Service for Multi-Tenant Cloud Storage

机译:多租户云存储的最后期限保证服务

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It is imperative for cloud storage systems to be able to provide deadline guaranteed services according to service level agreements (SLAs) for online services. In spite of many previous works on deadline aware solutions, most of them focus on scheduling work flows or resource reservation in datacenter networks but neglect the server overload problem in cloud storage systems that prevents providing the deadline guaranteed services. In this paper, we introduce a new form of SLAs, which enables each tenant to specify a percentage of its requests it wishes to serve within a specified deadline. We first identify the multiple objectives (i.e., traffic and latency minimization, resource utilization maximization) in developing schemes to satisfy the SLAs. To satisfy the SLAs while achieving the multi-objectives, we propose a Parallel Deadline Guaranteed (PDG) scheme, which schedules data reallocation (through load re-assignment and data replication) using a tree-based bottom-up parallel process. The observation from our model also motivates our deadline strictness clustered data allocation algorithm that maps tenants with the similar SLA strictness into the same server to enhance SLA guarantees. We further enhance PDG in supplying SLA guaranteed services through two algorithms: i) a prioritized data reallocation algorithm that deals with request arrival rate variation, and ii) an adaptive request retransmission algorithm that deals with SLA requirement variation. Our trace-driven experiments on a simulator and Amazon EC2 show the effectiveness of our schemes for guaranteeing the SLAs while achieving the multi-objectives.
机译:云存储系统必须能够根据在线服务的服务水平协议(SLA)提供截止日期保证的服务。尽管之前有许多关于限期感知解决方案的工作,但是大多数解决方案都专注于计划数据中心网络中的工作流程或资源预留,但是忽略了云存储系统中的服务器过载问题,该问题妨碍了提供限时保证的服务。在本文中,我们介绍了一种新的SLA形式,它使每个租户都可以指定其希望在指定期限内满足的请求的百分比。我们首先在开发方案中确定满足SLA的多个目标(即流量和等待时间最小化,资源利用率最大化)。为了在实现多目标的同时满足SLA,我们提出了并行截止期限保证(PDG)方案,该方案使用基于树的自下而上的并行过程调度数据重新分配(通过负载重新分配和数据复制)。从我们的模型中观察到的结果也激励了我们的期限严格性集群数据分配算法,该算法将具有相似SLA严格性的租户映射到同一服务器中以增强SLA保证。我们通过两种算法进一步增强了PDG在提供SLA保证的服务中的作用:i)处理请求到达速率变化的优先数据重新分配算法,以及ii)处理SLA需求变化的自适应请求重传算法。我们在模拟器和Amazon EC2上的跟踪驱动实验证明了我们的方案在保证SLA的同时实现多目标的有效性。

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