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Design and evaluation of a scalable hierarchical application component placement algorithm for cloud resource allocation

机译:用于云资源分配的可伸缩分层应用程序组件放置算法的设计和评估

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In the context of cloud systems, mapping application components to a set of physical servers and assigning resources to those components is challenging. For large-scale clouds, traditional resource allocation systems, which rely on a centralized management paradigm, become ineffective and inefficient. Therefore, there is an essential need of providing new management solutions that scale well with the size of large cloud systems. In this paper a distributed and hierarchical component placement algorithm is presented, evaluated and compared to a centralized algorithm. Each application is represented as a collection of interacting services, and multiple service types with differing placement characteristics are considered. Our evaluations show that the proposed algorithm is at least 84.65 times faster and offers better scalability compared with a central approach, while the percentage of servers used and fully placed applications remains close to that of the centralized algorithm.
机译:在云系统的环境中,将应用程序组件映射到一组物理服务器并将资源分配给那些组件是具有挑战性的。对于大规模云,依靠集中式管理范例的传统资源分配系统变得无效和低效。因此,迫切需要提供一种新的管理解决方案,该解决方案可以随着大型云系统的规模而很好地扩展。在本文中,提出了一种分布式的,分层的组件放置算法,并对其进行了评估,并将其与集中式算法进行了比较。每个应用程序都表示为交互服务的集合,并且考虑了具有不同放置特性的多种服务类型。我们的评估表明,与集中式方法相比,所提出的算法至少快84.65倍,并且具有更好的可伸缩性,而使用的服务器和完全放置的应用程序所占的百分比仍接近于集中式算法。

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