Whole fiber switched p-cycles

Diane Prisca Onguetou, W. Grover
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引用次数: 2

Abstract

In the design of survivable optical networks, the cost and complexity of wavelength assignment and conversion and wavelength-selective switching is always a dominant consideration. And yet, while nodes and single DWDM channels may fail, a pre-dominant source of unavailability is physical damage to optical cables. Thus, we have considered: If it is ultimately glass that fails, what if we just replace the glass directly? More specifically, what if p-cycles were used to rapidly, simply and efficiently provide for the direct replacement of failed fiber sections with whole replacement fibers? As long as the loss budgets are adequate, entire DWDM wavebands could be restored with no switching or manipulation of individual lightpaths. Following a substitution transient, the DWDM layer would never know the break happened. In environments where fiber switching devices are low cost, and ducts are full of dark fiber, this could provide a very low cost alternative to protect an entire DWDM transport layer (or working capacity envelope) against the single largest cause of outage. Here, we make a first proposal of considering this approach. A main motivation is to remove the complexity due to wavelength assignment and wavelength continuity constraints when configuring p-cycles in a fully transparent network context. Another objective is the overall real CAPEX and OPEX cost reductions.
整个光纤切换p周期
在生存型光网络的设计中,波长分配与转换以及波长选择交换的成本和复杂性一直是主要考虑的问题。然而,虽然节点和单一DWDM通道可能会出现故障,但不可用的主要原因是光缆的物理损坏。因此,我们考虑过:如果最终是玻璃坏了,如果我们直接更换玻璃呢?更具体地说,如果使用p-cycles快速、简单和有效地直接用整个替换纤维替换失效的纤维段,会怎么样?只要损耗预算足够,整个DWDM波段可以在不切换或操纵单个光路的情况下恢复。在替换瞬态之后,DWDM层永远不会知道中断发生了。在光纤交换设备成本低,管道充满暗光纤的环境中,这可以提供一种非常低成本的替代方案,以保护整个DWDM传输层(或工作容量信封)免受单个最大中断原因的影响。在此,我们首次提出考虑这种方法的建议。一个主要动机是在完全透明的网络环境中配置p环时,消除由于波长分配和波长连续性限制而导致的复杂性。另一个目标是降低整体实际资本支出和运营成本。
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