联邦云环境中的实时容错

P. Garraghan, P. Townend, Jie Xu
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引用次数: 9

摘要

在云计算环境中提供服务时,可靠性是一个关键问题。在考虑可靠性时确实如此,可靠性是云环境中一个关键且具有挑战性的问题[2]。容错是获得可靠性的一种手段,通常通过使用某种形式的多样性来实现。联邦云是一种新兴的云范式,它编排了多个云,由于其固有的设计,它能够相对容易地实现云应用程序的环境多样性,并且对消费者的额外成本最小。实时应用程序(rta)可以从部署容错模式中获益,以便在出现故障的情况下完成最后期限,因为它们可以在应用程序中的组件出现故障时提供正确的服务。然而,在联邦云环境中设计动态可伸缩的容错rta,同时满足QoS需求时,这种多样性可能会成为一个问题。特别是,通过使用虚拟机(VM)配置和底层云基础设施的多样性来构建容错rta,可能会对完成最后期限的能力产生负面影响,同时仍然允许应用程序以最少的人工交互动态地供应VM。本文确定了一些特征,这些特征会影响RTA在联邦云环境中完成指定期限的能力,这是部署环境不同容错模式的结果。此外,我们还设计并执行了使用真实世界云联盟的初步实验,以证明该问题的可行性。结果表明,在联邦云环境中部署rta可能会增加违反截止日期的比率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Real-Time Fault-Tolerance in Federated Cloud Environments
Dependability is a critical concern in provisioning services in Cloud Computing environments. This is true when considering reliability, an attribute of dependability that is a critical and challenging problem in a Cloud context [2]. Fault-tolerance is one means to attain reliability, and is typically implemented by using some form of diversity. Federated Cloud, which is an emerging Cloud paradigm that orchestrates multiple Clouds, is able to implement environmental diversity for Cloud applications with relative ease and minimal additional cost to the consumer due to its inherent design. Real-Time Applications (RTAs) can benefit from deploying fault-tolerant schemes to fulfill deadlines in the presence of faults as they enable the provisioning of correct service in the event of a component in the application failing. However, this diversity can potentially become an issue when designing dynamically scalable fault-tolerant RTAs in a federated Cloud environment while also fulfilling QoS demands. In particular, building fault-tolerant RTAs by using the diversity of the Virtual Machine (VM) configurations and of the underlying Cloud infrastructure can have a negative impact on the ability to fulfill deadlines whilst still allowing the application to dynamically provision VMs with minimal human interaction. This paper identifies a number of characteristics that affect the ability for a RTA to fulfill specified deadlines in a federated Cloud environment as a result of deploying environment diverse fault-tolerant schemes. Furthermore we have designed and performed initial experiments using a real world Cloud federation to justify the feasibility of this problem. Results demonstrate that deploying RTAs in a federated Cloud environment can potentially increase the rate of deadline violations.
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