使用复制实现可调一致性和时效性的自适应框架

S. Krishnamurthy, W. Sanders, M. Cukier
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引用次数: 36

摘要

在使用复制并发地为多个客户机提供服务时,一个众所周知的挑战是向客户机提供及时和一致的响应。在本文中,我们将在具有特定时间和一致性需求的客户端应用程序上下文中解决此问题。这些应用程序可以容忍一定程度的宽松一致性,以换取更好的响应时间。我们提出了一个灵活的QoS模型,允许这些客户端指定它们的时间和一致性约束。为了选择副本来服务这些客户端,我们需要控制副本的不一致性,这样我们就有一个足够大的副本池,具有适当的状态,以满足客户端的及时性、一致性和可靠性需求。我们描述了一个自适应框架,它使用延迟更新传播来控制副本不一致,并采用概率方法根据其QoS规范动态选择副本来为客户端服务。概率方法通过使用在运行时监视副本收集的性能历史记录来预测副本满足客户端QoS规范的能力。最后给出了实验结果。
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An adaptive framework for tunable consistency and timeliness using replication
One well-known challenge in using replication to service multiple clients concurrently is that of delivering a timely and consistent response to the clients. In this paper, we address this problem in the context of client applications that have specific temporal and consistency requirements. These applications can tolerate a certain degree of relaxed consistency, in exchange for better response time. We propose a flexible QoS model that allows these clients to specify their temporal and consistency constraints. In order to select replicas to serve these clients, we need to control of the inconsistency of the replicas, so that we have a large enough pool of replicas with the appropriate state to meet a client's timeliness, consistency, and dependability requirements. We describe an adaptive framework that uses lazy update propagation to control the replica inconsistency and employs a probabilistic approach to select replicas dynamically to service a client, based on its QoS specification. The probabilistic approach predicts the ability of a replica to meet a client's QoS specification by using the performance history collected by monitoring the replicas at runtime. We conclude with experimental results based on our implementation.
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