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Offloading in fog computing for IoT: Review, enabling technologies, and research opportunities

机译:物联网雾计算中的卸载:回顾,支持技术和研究机会

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The digital world is expanding rapidly and advances in networking technologies such as 4G long-term evolution (LTE), wireless broadband (WiBro), low-power wide area networks (LPWAN), 5G, LiFi, and so on, all of which are paving the way for the emergence of sophisticated services. The number of online applications is increasing along with more computation, communication, and intelligent capabilities. Although current devices in use today are also getting more powerful in terms of features and capabilities, but they are still incapable of executing smart, autonomous, and intelligent tasks such as those often required for smart healthcare, ambient assisted living (AAL), virtual reality, augmented reality, intelligent vehicular communication, as well as in many services related to smart cities, Internet of Things (IoT), Tactile Internet, Internet of Vehicles (boy), and so on. For many of these applications, we need another entity to execute tasks on behalf of the user's device and return the results - a technique often called offloading, where tasks are outsourced and the involved entities work in tandem to achieve the ultimate goal of the application. Task offloading is attractive for emerging IoT and cloud computing applications. It can occur between IoT nodes, sensors, edge devices, or fog nodes. Offloading can be performed based on different factors that include computational requirements of an application, load balancing, energy management, latency management, and so on. We present a taxonomy of recent offloading schemes that have been proposed for domains such as fog, cloud computing, and IoT. We also discuss the middleware technologies that enable offloading in a cloud-IoT cases and the factors that are important for offloading in a particular scenario. We also present research opportunities concerning offloading in fog and edge computing. (C) 2018 Elsevier B.V. All rights reserved.
机译:数字世界正在迅速扩展,并在网络技术方面取得了进步,例如4G长期演进(LTE),无线宽带(WiBro),低功耗广域网(LPWAN),5G,LiFi等。为高级服务的出现铺平了道路。在线应用程序的数量随着更多的计算,通信和智能功能而增加。尽管当今使用的当前设备在功能和特性上也变得越来越强大,但是它们仍然无法执行智能,自主和智能任务,例如智能医疗保健,环境辅助生活(AAL),虚拟现实中经常需要的那些任务,增强现实,智能车辆通信以及与智能城市,物联网(IoT),触觉互联网,车辆互联网(boy)等相关的许多服务。对于这些应用程序中的许多应用程序,我们需要另一个实体来代表用户的设备执行任务并返回结果-这种技术通常称为卸载(offloading),在这种技术中,任务是外包的,相关实体协同工作以实现应用程序的最终目标。任务卸载对于新兴的物联网和云计算应用很有吸引力。它可能发生在物联网节点,传感器,边缘设备或雾节点之间。可以基于不同的因素执行卸载,这些因素包括应用程序的计算要求,负载平衡,能源管理,等待时间管理等。我们提供了针对雾,云计算和物联网等领域提出的最新卸载方案的分类法。我们还将讨论在云IoT案例中支持卸载的中间件技术,以及在特定情况下对于卸载至关重要的因素。我们还提出了有关雾和边缘计算中的卸载的研究机会。 (C)2018 Elsevier B.V.保留所有权利。

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