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Wavelength-division-multiplexed ring networks

机译:波分复用环网

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Abstract: Multichannel local-area networks can be constructed using fiber-optic wavelength-division-multiplexing (WDM) techniques. In this paper, WDM is applied to ring networks such as FDDI, token ring, slotted ring, and buffer insertion ring architectures. Crosstalk and insertion loss analyses of grating demultiplexers shows that the ratio of channel separation to channel width must be greater than four. Performance analyses of the multichannel WDM ring are formulated to determine the packet delay. The delay in the multichannel token ring is obtained by summing the remaining service time, token walk time, and the average service time of newly arrived messages. The remaining service time is estimated by approximating the system as a M/M/m queue. The multichannel slotted ring and buffer insertion ring are modeled by a non-preemptive head-of-the-line priority queuing system. By identifying that portion of the passing ring traffic having priority over local traffic, the delay of a tagged packet can be obtained as the sum of the residual service time and service times of local waiting packets and newly arrived ring packets. Two implementations are identified, one with parallel optical transmitters and receivers and protocol modules, and another using an array of laser diodes and photodetectors and a single protocol module. !14
机译:摘要:可以使用光纤波分复用(WDM)技术构建多通道局域网。在本文中,WDM被应用于诸如FDDI,令牌环,时隙环和缓冲区插入环体系结构之类的环网。光栅多路分解器的串扰和插入损耗分析表明,通道间距与通道宽度之比必须大于4。制定了多通道WDM环的性能分析,以确定数据包延迟。多通道令牌环中的延迟是通过将剩余服务时间,令牌遍历时间和新到达消息的平均服务时间相加得出的。通过将系统近似为M / M / m队列来估计剩余服务时间。多通道开槽环和缓冲区插入环由非抢先的行首优先级排队系统建模。通过识别通过的环话业务优先于本地话务的那部分,可以将标记分组的延迟作为剩余服务时间与本地等待分组和新到达的环分组的服务时间之和而获得。确定了两种实现方式,一种具有并行的光学发射器和接收器以及协议模块,另一种则使用激光二极管和光电探测器阵列以及单个协议模块。 !14

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