Stack4Things as a fog computing platform for Smart City applications

Dario Bruneo, S. Distefano, F. Longo, Giovanni Merlino, A. Puliafito, V. D'Amico, Marco Sapienza, Giovanni Torrisi
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引用次数: 40

Abstract

Fog computing envisions computation logic to be moved at the edge of the Internet where data needs to be quickly elaborated, decisions made, and actions performed. Delegating to the Cloud the whole burden of applications could not be efficient indeed, for example in case of workload bursts. This is especially true in the context of IoT and Smart City where thousands of smart objects, vehicles, mobiles, people interact to provide innovative services. We thus designed Stack4Things as an OpenStack-based framework spanning the Infrastructure-as-a-Service and Platform-as-a-Service layers. It enables developers and users to manage an IoT infrastructure, remotely controlling nodes as well as virtualizing their functions and creating network overlays among them, implementing a provisioning model for Cyber-Physical Systems. Moreover, it provides mechanisms to scatter the application logic on top of the involved smart objects and to choose with fine granularity which specific tasks to delegate to centralized Cloud infrastructure. In this paper, we show the core Stack4Things mechanisms implementing a Fog computing approach towards a run-time “rewireable” Smart City paradigm. We demonstrate its effectiveness in a smart mobility scenario where vehicles interact with City-level smart objects to provide end users with highly responsive geolocalised services.
Stack4Things作为智慧城市应用的雾计算平台
雾计算设想将计算逻辑移动到互联网的边缘,在那里需要快速阐述数据、做出决策和执行操作。将应用程序的全部负担委托给云确实效率不高,例如在工作负载突发的情况下。在物联网和智慧城市的背景下尤其如此,成千上万的智能物体、车辆、移动设备和人员相互作用,提供创新服务。因此,我们将Stack4Things设计为一个基于openstack的框架,跨越了基础设施即服务和平台即服务两层。它使开发人员和用户能够管理物联网基础设施,远程控制节点以及虚拟化其功能并在其中创建网络覆盖,实现网络物理系统的供应模型。此外,它还提供了将应用程序逻辑分散到所涉及的智能对象之上的机制,并以精细的粒度选择将哪些特定任务委托给集中式云基础设施。在本文中,我们展示了实现雾计算方法的核心Stack4Things机制,以实现运行时“可再生”智慧城市范例。我们在智能移动场景中展示了其有效性,即车辆与城市级智能对象交互,为最终用户提供高度响应的地理定位服务。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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