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Perfomance analysis and optimization of flow control in SAN extension based on WDM

机译:WDM的SAN扩展中流量控制的性能分析和优化

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摘要

Fibre Channel (FC)becomes the main storage protocol of SAN(Storage Area Network).Enterprises are increasingly deploying FC-SANs in their data central. In order to mitigate the risk of losing data, more and more enterprises are increasingly adopting storage extension technologies based on WDM (Wavelength Division Multiplexing) to replicate their business critical data to a secondary site. Storage Extension based on WDM makes use of the flow control mechanism based on Credit ,it offers immediate access to the full link bandwidth without a ramp-up time ,but the updating frequency of Credits and the throughput of storage extension are limited by the long extension distances. Adding the receiver memory can remove those limitations ,but it also brings about the long queuing time. In this paper, a Petri-Net model of FC flow control protocol is constructed to analysis the relative degree between the storage extension performance with bandwidth , distance and initial number of Credit. Meanwhile, a new integrative flow control mechanism for storage extension based on WDM is proposed, it is consists of three flow control loop A,B and C. A is deployed between FC sender and WDM ingress gateway, B takes affection on the WDM ingress gateway and WDM engress gateway, C works among WDM engress gateway and FC receiver, and the three flow control loop are integrated by the buffer utilization of ingress and engress gateway. Theoretical analysis and simulation result show that the new flow control method can effectively remove distance limitation and allow data traffic to flow at maximum throughput without adding queuing latency. The new flow control method is implemented in WDM gateway , it is transparent for FC protocol and can provide a good compatibility .
机译:光纤通道(FC)成为SAN(存储区域网络)的主要存储协议。企业越来越多地在其数据中心中部署FC-SAN。为了减轻丢失数据的风险,越来越多的企业越来越多地采用基于WDM(波分复用)​​的存储扩展技术来将其业务关键数据复制到辅助站点。基于WDM的Storage Extension使用基于Credit的流控制机制,可以立即访问整个链路带宽,而无需增加启动时间,但是Credits的更新频率和存储扩展的吞吐量受到扩展时间的限制。距离。添加接收器内存可以消除这些限制,但同时也会导致排队时间较长。本文建立了FC流控制协议的Petri-Net模型,分析了存储扩展性能与带宽,距离和初始Credit数量之间的相对程度。同时,提出了一种新的基于WDM的存储扩展集成流控制机制,它由三个流控制环A,B和C组成。A部署在FC发送方和WDM入口网关之间,B负责WDM入口网关。在WDM入口网关和FC接收器之间,C工作,并且通过入口和出口网关的缓冲区利用率将三个流控制环路集成在一起。理论分析和仿真结果表明,新的流量控制方法可以有效地消除距离限制,并在不增加排队等待时间的情况下使数据流量以最大吞吐量流动。新的流控制方法在WDM网关中实现,对FC协议透明,兼容性好。

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