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Wavelength assignment in a WDM ring to minimize cost of embedded SONET rings

机译:WDM环中的波长分配可最大程度降低嵌入式SONET环的成本

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Discusses wavelength assignment for lightpaths. We study WDM networks in the form of rings and higher level networks as SONET/SDH self-healing rings. This view changes the goal of wavelength assignment (WLA) vs. previous work on the subject in a number of aspects. First, a pair of SONET add/drop multiplexers (ADMs) terminates each lightpath. These ADMs also terminate adjacent lightpaths to form rings, implying that the WLA has to support this type of sharing. Second, following Gerstal et al. (1998), we argue that the first-order optimization goal should be to minimize the overall network cost which is dominated by the number of required ADMs and not the number of wavelengths. These two minimization problems are intrinsically different, and there exist cases where the two minima cannot be simultaneously achieved. We derive a simple lower bound to the number of ADMs and show that this lower bound is not always achievable. Adding wavelength converters to the system does not improve the cost but splitting a lightpath and handling each part separately may reduce the total number of ADMs. We develop two heuristics to minimize the number of ADMs: cut-first, and assign-first. Both heuristics attempt to use the smallest number of ADMs possible. Cut-first always uses the minimum number of wavelengths, but may use more ADMs than necessary. However, the number of extra ADMs is proven to be bounded by the number of supported wavelengths and typically much less. We show instances where cut-first performs better than assign-first and vice versa. Finally, we present a set of transformations that take any WLA and improve its cost.
机译:讨论光路的波长分配。我们研究以环网形式的WDM网络以及作为SONET / SDH自愈环网的高级网络。这种观点从多个方面改变了波长分配(WLA)的目标与先前在该主题上的工作。首先,一对SONET分插复用器(ADM)终结了每个光路。这些ADM还会终止相邻的光路以形成环,这意味着WLA必须支持这种类型的共享。其次,遵循Gerstal等。 (1998),我们认为一阶最优化目标应该是最小化总网络成本,该成本由所需的ADM数量而不是波长数量决定。这两个最小化问题本质上是不同的,并且存在无法同时实现两个最小化的情况。我们得出了ADM数量的简单下限,并表明此下限并非总是可以实现的。向系统中添加波长转换器不会提高成本,但是拆分光路并分别处理每个部分可能会减少ADM的总数。我们开发了两种启发式方法以最大程度地减少ADM的数量:剪切优先和分配优先。两种启发式尝试均尝试使用尽可能少的ADM。首先切割总是使用最小数量的波长,但可能会使用比必要数量更多的ADM。但是,事实证明,额外的ADM数量受支持的波长数量限制,通常要少得多。我们展示的实例中,“先切后切”的性能要比“先分配先切”更好,反之亦然。最后,我们提出了一套适用于任何WLA并提高其成本的转换。

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