使用高速局域网互连的存储区域网络性能分析

Xavier Molero, F. Silla, V. Santonja, J. Duato
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引用次数: 16

摘要

存储区域网络(san)是一种新兴的数据通信平台,它将服务器和存储设备(如磁盘、磁盘阵列和磁带机)连接起来,创建一个用户可以直接访问的存储池。san消除了以前基于SCSI总线的体系结构和服务器与存储数据之间的LAN连接所带来的带宽瓶颈和可伸缩性限制。这种网络方法具有计算机集群、拓扑灵活性、容错性、高可用性和远程管理等优点。实现san的主要技术是光纤通道,因为该技术适合存储网络。高性能互连的其他技术也得到了发展。这些互连提供了基于交换机的网络,其链路传输数据的速度超过每秒1千兆比特,主要用于局域网环境。我们分析了这些高速局域网技术是否也可以成为存储网络的一个有趣的替代方案。我们使用真实的I/O轨迹执行此分析。我们的研究得出的主要结论是,大多数消息呈现基本网络延迟,这意味着网络负载不重。此外,响应时间通常是可以接受的,主要取决于磁盘处理请求所需的时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance analysis of storage area networks using high-speed LAN interconnects
Storage area networks (SANs) are an emerging data communications platform which interconnects servers an storage devices (such as disks, disk arrays, and tape drives) to create a pool of storage that users can access directly. SANs eliminate the bandwidth bottlenecks and scalability limitations imposed by previous SCSI bus-based architectures and LAN connections between servers and the stored data. This networking approach reports benefits such as computer clustering, topological flexibility, fault tolerance, high availability, and remote management. The prominent technology for implementing SANs is the fibre channel, due to the suitability of this technology for storage networking. Other technologies for high performance interconnects have also been developed. These interconnects provide switch-based networks with links transferring data at more than 1 Gigabit per second, being mainly used in the LAN environments. We analyze whether these high-speed LAN technologies could also be an interesting alternative to storage networking. We perform this analysis using real-world I/O traces. The main conclusion from our study is that most of the messages present the base network latency, meaning that the network is not heavily loaded. Moreover the response time is, in general, acceptable, being dominated by the time disks need to process the requests.
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