期刊文献+

Design of Enterprise Storage Architecture for Optimal Business Continuity

Design of Enterprise Storage Architecture for Optimal Business Continuity
在线阅读 下载PDF
导出
摘要 This paper presents a solution for optimal business continuity, with storage architecture for enterprise applications, which will ensure zero data loss and quick recovery. The solution makes use of Internet protocol storage area network (IPSAN), which is used for data management without burdening the application server, as well as mix of synchronous and semi-synchronous replication techniques to replicate data to remote disaster recovery site. We have presented the detailed design of both synchronous and semi-synchronous with case study of using open source database postgres to prove our point for optimal business continuity. The theoretical presentation is also given for the same. This paper presents a solution for optimal business continuity, with storage architecture for enterprise applications, which will ensure zero data loss and quick recovery. The solution makes use of Internet protocol storage area network (IPSAN), which is used for data management without burdening the application server, as well as mix of synchronous and semi-synchronous replication techniques to replicate data to remote disaster recovery site. We have presented the detailed design of both synchronous and semi-synchronous with case study of using open source database postgres to prove our point for optimal business continuity. The theoretical presentation is also given for the same.
出处 《Journal of Electronic Science and Technology》 CAS 2010年第3期206-214,共9页 电子科技学刊(英文版)
关键词 Business continuity disaster recovery Internet protocol storage area network (IPSAN) semi-synchronous replication synchronous replication. Business continuity, disaster recovery, Internet protocol storage area network (IPSAN), semi-synchronous replication, synchronous replication.
  • 相关文献

参考文献10

  • 1.EMC CLARiiON SnapView and Mirror View for Oracle Database 10g Automatic Storage Management[]..2006
  • 2.Druvaa Replicator-Disaster Recovery Technology Overview[]..2008
  • 3R. Singhal,S. Bokare,P. Pawar."Design and Implementation of efficient semi-synchronous replication solution for disaster recovery,"[].the World Scientific and Engineering Academy and Society Conference.2010
  • 4R. Singhal,R. Kale,Y. Pal,S. Debgupta."Optimal cascaded configuration for IP SAN on NetBSD,"[].Proc of International Conference on Recent Trends in InformationTelecommunication and Computing.2010
  • 5.Business Continuity Solution Blueprint: Synchronous Data Replication[]..2003
  • 6.Architecting Availability and Disaster Recovery Solution[]..2007
  • 7Wiboonrat M,Kosavisutte K.Optimization strategy for disaster recovery[].Fourth IEEE International Con-ference on Management of Innovation and Technology.2008
  • 8Maohua Lu,Tzi-cker Chiueh,Shibiao Lin.An Incremental File System Consistency Checker for Block-Level CDP Systems[].Reliable Distributed Systems SRDS ‘ IEEE Symposium on.2008
  • 9R.Hugo Patterson,Stephen Manley,Mike Federwisch,Dave Hitz,Steven Kleiman,Shane Owara.SnapMirror:File-System-Based Asynchronous Mirroring for Disaster Recovery[].Proceedings of the Conference on File and Storage Technologies (FAST ).2002
  • 10John L. Hufferd.iSCSI: The Universal Storage Connection[]..2002

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部