Binary Reed-Solomon Coding Based Distributed Storage Scheme in Information-Centric Fog Networks

Yen-Yuan Shu, M. Dong, K. Ota, Jun Wu, Siyi Liao
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引用次数: 9

Abstract

Fog computing is an emerging architecture for processing, storing, and controlling the data at the edge of the networks, which is becoming a popular technology for Internet of Things (IoT). As a next-generation networking architecture, Information-Centric Network (ICN) has been introduced into networked fogs to establish efficient data exchange based on name, caching, content features, etc., which gives the IoT an opportunity to store the huge geo-distributed data at the edge of the networks and be less dependent on the Cloud, thus fulfilling the delay-sensitive needs of the end-users. Nevertheless, efficient distributed storage is a must for information-centric fog networks, because of the huge content exchange and geo-distributed data. To address this, this paper proposes an efficient storage scheme by integrating Binary Reed-Solomon erasure code with ICN mechanism in fog networks. Specifically, the data are encoded into named data blocks and are distributed as well as stored into distributed fog nodes. The fog network performs information-centered with horizontal fog-to-fog communications to retrieve the data blocks efficiently. Moreover, the data is then recovered even with some of the data blocks missing, thus ensuring the reliability of storage at distributed fogs. Simulation results show the efficiency and advantages of the proposed distributed storage scheme.
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基于二进制Reed-Solomon编码的信息中心雾网络分布式存储方案
雾计算是一种用于处理、存储和控制网络边缘数据的新兴架构,它正在成为物联网(IoT)的一种流行技术。作为下一代网络架构,信息中心网络(Information-Centric Network, ICN)被引入到网络雾中,基于名称、缓存、内容特征等建立高效的数据交换,使物联网有机会将庞大的地理分布式数据存储在网络边缘,减少对云的依赖,从而满足终端用户对延迟敏感的需求。然而,由于庞大的内容交换和地理分布的数据,高效的分布式存储对于以信息为中心的雾网络是必须的。为了解决这个问题,本文提出了一种有效的存储方案,将二进制Reed-Solomon擦除码与雾网络中的ICN机制相结合。具体来说,数据被编码成命名的数据块,并被分发和存储到分布式雾节点中。雾网络执行以信息为中心的水平雾对雾通信,以有效地检索数据块。此外,即使丢失了一些数据块,也可以恢复数据,从而确保了分布式雾存储的可靠性。仿真结果表明了所提出的分布式存储方案的有效性和优越性。
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A System for Optimizing Small-Cell Deployment in 2-Tier HetNets Comparing Web Cache Implementations for Fast O(1) Updates Based on LRU, LFU and Score Gated Strategies Binary Reed-Solomon Coding Based Distributed Storage Scheme in Information-Centric Fog Networks Improving the Spectral Efficiency in Dense Heterogeneous Networks Using D2D-Assisted eICIC Considering CoMP for efficient cooperation among heterogeneous small cells in 5G networks
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