Delay Minimized Task Scheduling in Fog-Enabled IoT Networks

Guowei Zhang, Fei Shen, Yueyue Zhang, Rong Yang, Yang Yang, Eduard Axel Jorswieck
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引用次数: 14

Abstract

Through offloading the computing tasks of the terminal nodes (TNs) to the fog nodes (FNs) located at the network edge, fog computing is expected to address the unacceptable processing delay and heavy link burden existed in current cloud-based Internet of Things (IoT) networks. How to take full use of the computing resources deployed on the FNs is vital to provide high quality offloading services for delay-sensitive TN tasks in fog-enabled IoT networks. In this paper, we construct a general analytical model for the task offloading delay in a fog-enabled IoT network. The optimal solution including the subtask sizes and the TN transmission power are obtained by the proposed Delay-Minimized Task Offloading (DMTO) algorithm that minimizes the task offloading delay. Extensive simulations are carried out in a fog-enabled IoT network, and the numerical results indicate that the proposed algorithm can effectively provide the optimal offloading solutions for the delay-sensitive tasks.
雾支持物联网网络中延迟最小化的任务调度
通过将终端节点(tn)的计算任务卸载到位于网络边缘的雾节点(FNs),雾计算有望解决当前基于云的物联网(IoT)网络中存在的不可接受的处理延迟和沉重的链路负担。如何充分利用部署在FNs上的计算资源,对于在雾化物联网网络中为延迟敏感的TN任务提供高质量的卸载服务至关重要。在本文中,我们构建了一个雾蒙蒙的物联网网络中任务卸载延迟的通用分析模型。提出的DMTO (delay - minimattask Offloading)算法使任务卸载延迟最小化,得到了包括子任务大小和TN传输功率在内的最优解。在有雾的物联网网络中进行了大量的仿真,数值结果表明,该算法可以有效地为延迟敏感任务提供最优卸载方案。
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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