以太网光纤通道FCoE(Fiber Channel Over Ethernet)实现了数据中心前端计算网络与后端存储网络的无缝融合,降低了数据中心基础设施的单位建设成本、维护成本,支持数据中心异构网络环境与不同的接口类型。存储区域网络SAN(Storage Area N...以太网光纤通道FCoE(Fiber Channel Over Ethernet)实现了数据中心前端计算网络与后端存储网络的无缝融合,降低了数据中心基础设施的单位建设成本、维护成本,支持数据中心异构网络环境与不同的接口类型。存储区域网络SAN(Storage Area Network)中交换机数量受到8比特域ID唯一的限制最多可以有239台。N端口虚拟化技术NPV(N Port Virtualization)极大地克服了SAN网络在规模上受限的问题,能够让更多的服务器或存储设备接入到网络中,扩大网络容量。NPV交换机与传统FCF(Fabric Channel Forward)交换机最大的差别是上下行流量转发机制不同,它采用上行流量从映射端口转发,下行流量查表转发。NPV交换机驱动层路由模块的设计与实现采用敏捷开发模式进行,主要包括端口设置、下发NPV Mapping表项、路由表项、Fips规则下发。实验测试证明该设计实现了NPV交换机对FCoE流量的正常转发,确保了可行性。展开更多
This paper presents a new method for finding the natural frequency set of a linear time invariant network. In the paper deriving and proving of a common equation are described. It is for the first time that in the co...This paper presents a new method for finding the natural frequency set of a linear time invariant network. In the paper deriving and proving of a common equation are described. It is for the first time that in the common equation the natural frequencies of an n th order network are correlated with the n port parameters. The equation is simple and dual in form and clear in its physical meaning. The procedure of finding the solution is simplified and standardized, and it will not cause the loss of roots. The common equation would find wide use and be systematized.展开更多
文摘以太网光纤通道FCoE(Fiber Channel Over Ethernet)实现了数据中心前端计算网络与后端存储网络的无缝融合,降低了数据中心基础设施的单位建设成本、维护成本,支持数据中心异构网络环境与不同的接口类型。存储区域网络SAN(Storage Area Network)中交换机数量受到8比特域ID唯一的限制最多可以有239台。N端口虚拟化技术NPV(N Port Virtualization)极大地克服了SAN网络在规模上受限的问题,能够让更多的服务器或存储设备接入到网络中,扩大网络容量。NPV交换机与传统FCF(Fabric Channel Forward)交换机最大的差别是上下行流量转发机制不同,它采用上行流量从映射端口转发,下行流量查表转发。NPV交换机驱动层路由模块的设计与实现采用敏捷开发模式进行,主要包括端口设置、下发NPV Mapping表项、路由表项、Fips规则下发。实验测试证明该设计实现了NPV交换机对FCoE流量的正常转发,确保了可行性。
文摘This paper presents a new method for finding the natural frequency set of a linear time invariant network. In the paper deriving and proving of a common equation are described. It is for the first time that in the common equation the natural frequencies of an n th order network are correlated with the n port parameters. The equation is simple and dual in form and clear in its physical meaning. The procedure of finding the solution is simplified and standardized, and it will not cause the loss of roots. The common equation would find wide use and be systematized.