In the IBM Token-Ring Network, the transmit or output receptacle on an access unit. 在IBM令牌环网中,一个入口单元的发送或输出插座。
All will coexist with existing token-ring equipment and the token-passing access protocol. 所有这些将与令牌环网设备和令牌传递访问协议并存。
This paper introduces the implement methods of a high-speed optical interconnection network adapter for double token-ring network topology cluster. 介绍了一种面向机群系统双环形网络拓扑结构的高速光互联网络适配器的设计和实现方法。
The C-Ports provide the basic connectivity from the device to token-ring stations, classic concentrators or other DTR concentrators. C口提供了DTR集中器与令牌环网站、标准集中器和其它DTR集中器的基本连接。
The identifier is part of the 16-bit 802.1Q header, which is added to the MAC transmission frames used in Ethernet and token-ring networks. 该码是16位802.1Q报头的一部分,被加在用于以太网和令牌环网上的MAC传输帧上。
Deciding whether to go with a shared or switched fast LAN technology, once you start to max out your shared Ethernet or token-ring LAN, is a tough call. 一旦你开始要最大限度地发挥共享以太网或令牌环局域网的效用,决定是否用共享式还是交换式快速局域网技术便是一个棘手问题。
This small segment is then given the entire 16Mit/ sec token-ring bandwidth. 这时,此一小段局域网被赋予了令牌环网的整个带宽,即16M位/秒。
You can provide 16M bit/ sec of dedicated bandwidth to existing token-ring stations by directly attaching them to DTR concentrator C-Ports. 直接把现有令牌环网站接到DTR集中器的C口,你就能给这些站提供专用的16M位/秒带宽。
The combination of high bandwidth and 100% channel availability will make it feasible to handle these types of applications in a token-ring environment. 高带宽与100%的通道可用性相结合将使在令牌环网环境中处理这些类型的应用得以可行。
Two interconnected LAN's ( 3+ Ethernet and NCR Token-Ring network) now very prevalent worldwide are used as the experimental mode for investigation. The functions of inter-network file transfer and asking as well as printer sharing are found to be performed successfully. 并以目前国内外应用最普遍的两种类型的局域网络(3~+以太网与NCR令牌环网)的互连为实验研究模型,成功地实现了网间的文件传输与索取及共享打印等功能。
If the Token-ring cycle time is determined enough, the system cycle tends to stabilization. 如果将令牌轮转时间设定的足够长,系统循环时间将趋向于稳定。
Furthermore, an improved algorithm for Token-ring algorithm was presented, which resolved some problems that could happen in actual network, and it is proved by experiments. 该算法解决了在真网络中可能出现的部分问题,并经过了实验验证。
Design and Implement of Topology and Communication Mechanism for Center Controlled Wireless Network via Token-ring 中心集控令牌环无线网通信机制设计与实现
We assign Tokens to roles according to certain policy, realize collision avoid of single-component design via Token-Ring mechanism and concurrency control of multi-components design via collision detection and resolve mechanism. 采用某种策略为角色分配令牌,通过令牌环机制和冲突检测与消解机制实现了单构件设计的冲突避免与多构件设计的并发控制。