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Data Integrity and Recovery Management Under Peer to Peer Convoluted Fault Recognition Cloud Systems

机译:在对等体卷积故障识别云系统方面的数据完整性和恢复管理

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摘要

Data is expanding beyond the speed of light and hence a lighting speed devices and networks are required for a better and more reliable system for data storage. Cloud computing is a boon for larger, remote data storage at a virtual location. Cloud computing encounters major challenges such as security, connectivity and backup recovery. In this paper, a novel methodology is proposed and concentrated on backup and recovery management to provide a fault tolerance and recognition cloud system with a higher order of reliability and scalability. The methodology proposes an approach of data segmentation and token generation for data split-up using tailing terminology of appending cloud storage location or addresses. Thus the faulty cloud server missing a location segment is recognized within a smaller broadcasting limit and fetches backup from secure neighboring sources.
机译:数据的扩展速度超过了光速,因此,为了建立更好、更可靠的数据存储系统,需要一个光速更快的设备和网络。云计算是在虚拟位置进行更大远程数据存储的福音。云计算面临安全性、连接性和备份恢复等重大挑战。本文提出了一种新的备份和恢复管理方法,以提供具有更高可靠性和可扩展性的容错和识别云系统。该方法提出了一种数据分割和令牌生成方法,用于使用附加云存储位置或地址的拖尾术语分割数据。因此,缺失位置段的故障云服务器可以在较小的广播限制内识别,并从安全的相邻源获取备份。

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