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Distributed Storage Cluster Design for Remote Mirroring Based on Storage Area Network

机译:基于存储区域网络的远程镜像分布式存储集群设计

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摘要

With the explosion of information nowadays, applying data storage safety requirements has become a new challenge, especially in high data available cluster environments. With the emergence of Storage Area Networks (SANs), storage can be network-based and consolidated, and mass data movements via Fiber Channels (FCs) can be of very high speed. Based on these features, this paper introduces a dual-node storage cluster designed for remote mirroring as a concurrent data replication method to protect data during system failures. This design takes full advantage of a SAN system's benefits, and it adopts a synchronous protocol to guarantee a fully up-to-date data copy on the remote site. By developing a Linux kernel module to control the I/O flow and by using the technologies of software Logic Unit Number (LUN) masking, background online resynchronization and a self-management daemon, we have achieved a reliable mirroring system with the characteristics of server-free data replication, fault tolerance, online disaster recovery and high performance. In this study, we implemented the design in a remote mirror subsystem built on a software Fiber Channel Storage Area Network (FC-SAN) system.
机译:如今,随着信息的爆炸式增长,应用数据存储安全要求已成为一个新的挑战,尤其是在具有高数据可用性的集群环境中。随着存储区域网络(SAN)的出现,存储可以基于网络并进行合并,并且通过光纤通道(FC)进行的海量数据移动可以非常快速地进行。基于这些功能,本文介绍了一种双节点存储集群,该集群设计用于远程镜像,作为并发数据复制方法,可以在系统故障时保护数据。该设计充分利用了SAN系统的优势,并采用了同步协议来确保远程站点上的最新数据复制。通过开发用于控制I / O流的Linux内核模块,并使用软件逻辑单元号(LUN)屏蔽,后台在线重新同步和自我管理守护程序等技术,我们获得了具有服务器特性的可靠镜像系统的数据复制,容错,在线灾难恢复和高性能。在本研究中,我们在基于软件光纤通道存储区域网络(FC-SAN)系统的远程镜像子系统中实施了该设计。

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