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Pareto-Optimal Cloud Bursting

机译:帕累托最优云爆发

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摘要

Large-scale Bag-of-Tasks (BoT) applications are characterized by their massively parallel, yet independent operations. The use of resources in public clouds to dynamically expand the capacity of a private computer system might be an appealing alternative to cope with such massive parallelism. To fully realize the benefit of this ‘cloud bursting’, the performance to cost ratio (or cost efficiency) must be thoroughly studied and incorporated into scheduling and resource allocation strategies. In this paper, we present PANDA, a framework for static scheduling BoT applications across resources in both private and public clouds. The framework at the core incorporates a fully polynomial-time approximation scheme (FPTAS) as a novel scheduling algorithm, which generates schedules with the best trade-off point between cost and performance; hence Pareto-optimality. We have theoretically discussed the complexity and correctness of our algorithms, and experimentally verified their efficacy and practicality using ISOMAP—a widely-used nonlinear manifold method as a real-world BoT application. Our evaluation conducted in a 'multi-cloud' environment of our 40-core private system and Amazon EC2 public cloud demonstrates the scheduling quality of PANDA is guaranteed to be within a measurable distance from the optimal solution. Results obtained from our experiments show such quality is 8 percent or less from the optimum. We also show the sensitivity and robustness of our scheduling solutions against performance errors in both resources and applications.
机译:大型任务袋(BoT)应用程序的特征在于它们的大规模并行但独立的操作。使用公共云中的资源动态扩展私有计算机系统的容量可能是应对如此大规模并行性的一种有吸引力的选择。为了完全意识到“云爆发”的好处,必须对性能成本比(或成本效率)进行彻底研究,并将其纳入调度和资源分配策略中。在本文中,我们介绍了PANDA,这是一种用于在私有云和公共云中跨资源静态调度BoT应用程序的框架。核心框架将完全多项式时间近似方案(FPTAS)作为一种新颖的调度算法,可以生成在成本和性能之间具有最佳折衷点的调度。因此帕累托最优。我们从理论上讨论了算法的复杂性和正确性,并使用ISOMAP(一种广泛使用的非线性流形方法作为实际BoT应用程序)通过实验验证了其有效性和实用性。我们在40核私有系统和Amazon EC2公共云的“多云”环境中进行的评估表明,PANDA的调度质量保证与最佳解决方案相距不远。从我们的实验中获得的结果表明,这样的质量与最佳质量相比为8%或更低。我们还展示了我们的调度解决方案针对资源和应用程序中的性能错误的敏感性和鲁棒性。

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