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Self-Tuning Service Provisioning for Decentralized Cloud Applications

机译:分散式云端应用程式的自我调整服务供应

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Cloud computing has revolutionized service delivery by providing on-demand invocation and elasticity. To reap these benefits, computation has been displaced from client devices and into data centers. This partial centralization is undesirable for applications that have stringent locality requirements, e.g., low latency. This problem could be addressed with large numbers of smaller cloud resources closer to users. However, as cloud computing diffuses from within data centers and into the network, there will be a need for cloud resource allocation algorithms that operate on resource-constrained computational units that serve localized subsets of customers. In this paper, we present a mechanism for service provisioning in distributed clouds where applications compete for resources. The mechanism operates by enabling execution zones to assign resources based on Vickrey auctions and provides high-quality probabilistic models that applications can use to predict the outcomes of such auctions. This allows applications to use knowledge of the locality distribution of their clients to accurately select the number of bids to be sent to each execution zone and their value. The proposed mechanism is highly scalable, efficient, and validated by extensive simulations.
机译:云计算通过提供按需调用和弹性彻底改变了服务交付方式。为了获得这些好处,计算已从客户端设备转移到数据中心。对于局部性要求严格的应用,例如低等待时间,这种部分集中是不希望的。可以通过大量更靠近用户的较小云资源来解决此问题。但是,随着云计算从数据中心内部扩散到网络中,将需要一种在资源受限的计算单元上运行的云资源分配算法,这些计算单元为客户的本地子集提供服务。在本文中,我们提出了一种在应用程序竞争资源的分布式云中提供服务的机制。该机制通过使执行区能够基于Vickrey拍卖来分配资源并进行操作,并提供了高质量的概率模型,应用程序可以使用这些模型来预测此类拍卖的结果。这允许应用程序使用其客户的本地分布的知识来准确选择要发送到每个执行区域的投标数及其价值。所提出的机制具有高度的可扩展性,效率,并已通过广泛的仿真验证。

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