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Constructing -to- Shared Optical Queues With Switches and Fiber Delay Lines

机译:使用交换机和光纤延迟线构造共享光队列

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All-optical router has been considered as a natural choice to keep pace with growing fiber link capacity. One main research issue of all-optical router is the design of optical queues with the same flexibility as their electronic counterparts, and some recent works have proved the feasibility of using optical switches and fiber delay lines (SDL) to emulate the electronic queues. In this paper, we focus on the SDL-based construction of $N$-to- $N$ shared optical queue, a more efficient queue structure in comparison with the dedicated input and output queues. The construction we consider consists of a crossbar switch of size $(N + M)times (N + M)$, where $N$ inputs (outputs) are reserved for external arrivals (departures), and $M$ fiber delay lines are connected from the remaining $M$ outputs back to the remaining $M$ inputs. We first show that by setting the length $r_{i}$ of fiber delay line $i$ as $r_{i}=1+[(i-1) mathop {rm mod} N]$, $i = 1,ldots, M$, and scheduling packets properly among these delay lines, such a construction can work as a nonidling first in first out (FIFO) shared queue of size $B = sum _{i=1}^{M}r_{i}$. We further extend our work to the design of more general- shared buffer, where the packets can be stored for an arbitrary time and may depart in a non-FIFO order.
机译:全光路由器被认为是与不断增长的光纤链路容量保持同步的自然选择。全光路由器的一个主要研究问题是光队列的设计具有与电子队列相同的灵活性,最近的一些工作证明了使用光交换机和光纤延迟线(SDL)来模拟电子队列的可行性。在本文中,我们集中于$ N $至$ N $共享光队列的基于SDL的构造,与专用输入和输出队列相比,该队列结构更有效。我们考虑的构造由大小为$(N + M)乘以(N + M)$的纵横制开关组成,其中$ N $输入(输出)保留给外部到达(离开),而$ M $光纤延迟线为从其余的$ M $输出连接回其余的$ M $输入。我们首先显示出,通过将光纤延迟线$ i $的长度$ r_ {i} $设置为$ r_ {i} = 1 + [(i-1)mathop {rm mod} N] $,$ i = 1, ldots,M $和在这些延迟线之间正确调度数据包,这样的构造可以用作大小为$ B = sum _ {i = 1} ^ {M} r_ {i的非空闲先进先出(FIFO)共享队列} $。我们进一步将工作扩展到更通用的共享缓冲区的设计,在该缓冲区中,数据包可以存储任意时间,并且可能以非FIFO顺序离开。

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