首页> 外文期刊>Future generation computer systems >Managing resources continuity from the edge to the cloud: Architecture and performance
【24h】

Managing resources continuity from the edge to the cloud: Architecture and performance

机译:从边缘到云管理资源连续性:体系结构和性能

获取原文
获取原文并翻译 | 示例

摘要

AbstractThe wide spread deployment of smart edge devices and applications that require real-time data processing, have with no doubt created the need to extend the reach of cloud computing to the edge, recently also referred to as Fog or Edge Computing. Fog computing implements the idea ofextending the cloud where the ”things” are, or in other words, improving application performance and resource efficiency by removing the need to processing all the information in the cloud, thus also reducing bandwidth consumption in the network. Fog computing is designed to complement cloud computing, paving the way for a novel, enriched architecture that can benefit from and include both edge(fog) and cloud resources. From a resources perspective, this combined scenario requires resource continuity when executing a service, whereby the assumption is that the selection of resources for service execution remains independent of their physical location. This new resources model, i.e., resource continuity, has gained recently significant attention, as it carries potential to seamlessly providing a computing infrastructure from the edge to the cloud, with an improved performance and resource efficiency. In this paper, we study the main architectural features of the managed resource continuity, proposing the foundation of a coordinated management plane responsible for resource continuity provisioning. We study an illustrative example on the performance benefits in relationship to the size of databases with regard to the proposed architectural model.HighlightsLayered and hierarchical approach to manage IoT devices.A solution for efficiently combining fog and cloud resources.A management architecture for resource continuity provisioning.Resources abstraction is crucial in the proposed management architecture.Lower databases stress in a smart city scenario as an initial performance analysis.
机译: 摘要 需要实时数据处理的智能边缘设备和应用的广泛部署无疑带来了将云计算的范围扩展到边缘的需求,最近也称为雾或边缘计算。雾计算实现了扩展“事物”所在的云的想法,换句话说,通过消除处理云中所有信息的需要来提高应用程序性能和资源效率,因此也减少了网络中的带宽消耗。雾计算旨在补充云计算,从而为可以从边缘(雾)和云资源中受益并包括两者的新型,丰富的架构铺平了道路。从资源的角度来看,这种组合方案在执行服务时需要资源连续性,从而假设用于服务执行的资源选择与它们的物理位置无关。这种新的资源模型,即资源连续性,近来备受关注,因为它具有从边缘到云无缝地提供计算基础架构的潜力,并具有改进的性能和资源效率。在本文中,我们研究了被管理资源连续性的主要体系结构特征,为负责资源连续性供应的协调管理平面奠定了基础。我们针对所建议的体系结构模型研究了与数据库大小相关的性能优势的说明性示例。 突出显示 用于管理物联网设备的分层和分层方法。 有效组合雾和云资源的解决方案。 用于资源连续性配置的管理体系结构。 资源抽象在建议的管理体系结构中至关重要。 下数据库将智能城市场景中的压力作为初始性能分析。 < / ce:抽象>

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号