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首页> 外文期刊>Wireless communications & mobile computing >RePage: A Novel Over-Air Reprogramming Approach Based on Paging Mechanism Applied in Fog Computing
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RePage: A Novel Over-Air Reprogramming Approach Based on Paging Mechanism Applied in Fog Computing

机译:RePage:一种基于分页机制的新颖的空中重编程方法,应用于雾计算

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In fog computing, fog nodes running different tasks near the sources of data are required. Limited to on-board resource, fog node finds it hard to execute multiple tasks and needs over-air reprogramming to rearrange them. With respect to reprogramming, energy efficiency is one of the key issues for over-air reprogramming. Most of traditional reprogramming approaches focus on the energy efficiency during data transmission within network. However, program rebuilding on fog node is, as another significant energy cost, caused by writing/reading local high-power memory. We present a novel incremental reprogramming approach, RePage, in three stages. Firstly, we design a function paging mechanism that makes similar functions to one function page and caches them in low-power volatile memory to save energy. Secondly, we design new cache replacement algorithm for function page considering both modification times and range on the page. At last, further reducing writing/reading operations, we also redesign function invocation manner by centralized managing function addresses. Experiment results show that RePage reduces the sum of reading/writing operations on volatile memory by 89.1% and 92.5% compared to EasiCache and Tiny Module-link, and its hit rate is improved by 10.4% to Least Recently Used (LRU) algorithm.
机译:在雾计算中,需要在数据源附近运行不同任务的雾节点。受限于车载资源,雾节点发现很难执行多个任务,并且需要空中重新编程以重新安排它们。关于重新编程,能效是空中重新编程的关键问题之一。大多数传统的重新编程方法都将重点放在网络内数据传输期间的能效上。但是,作为另一个重大的能源成本,在雾节点上重建程序是由写入/读取本地大功率存储器引起的。我们分三个阶段介绍一种新颖的增量重编程方法RePage。首先,我们设计了一种功能分页机制,该功能可以使一个功能页具有相似的功能,并将其缓存在低功耗易失性存储器中以节省能源。其次,考虑页面的修改时间和范围,设计了一种新的功能页面缓存替换算法。最后,为进一步减少读写操作,我们还通过集中管理功能地址来重新设计功能调用方式。实验结果表明,RePage与EasiCache和Tiny Module-link相比,在易失性存储器上的读/写操作总和减少了89.1%和92.5%,并且与最近最少使用(LRU)算法相比,其命中率提高了10.4%。

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