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Performance of Optical Packet Switches Based on Parametric Wavelength Converters

机译:基于参数波长转换器的光分组交换机的性能

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In an optical packet switch (OPS), input fibers carry multiple wavelengths, each of which carries a packet to one output fiber. As several wavelengths from different inputs could be destined to the same output fiber, one wavelength can be connected and the others remain disconnected, losing the carried packets. Because of the multiple wavelengths available at an output fiber, wavelength conversion in the OPS of the unconnected wavelengths into those available can increase the number of connections. A parametric wavelength converter (PWC) provides multichannel wavelength conversion where wavelengths can be converted to another. A PWC uses a pump wavelength that can be flexibly chosen to define which wavelengths can be converted, defining the so-called wavelength conversion pairs. However, it is unknown which set of pump wavelengths, and therefore the set of connection pairs, should be selected to improve the OPS performance while the number of PWCs in the OPS is reduced. This paper proposes a pump wavelength selection policy for an OPS that uses different pump wavelengths, one for each PWC, within an arbitrarily selected interval. This policy is called a variety-rich (VR) policy. This paper also introduces a non-wavelength-blocking OPS (NWB-OPS) to make full use of PWCs. The switch performance is evaluated through computer simulation. The results show that the proposed policy with different pump wavelengths achieves the highest performance when compared with another of similar complexity. Furthermore, the performance study shows that small sizes of the interval to select a pump wavelength are more beneficial than larger ones.
机译:在光分组交换机(OPS)中,输入光纤承载多个波长,每个波长都将一个分组承载至一个输出光纤。由于来自不同输入的多个波长可能指定到同一输出光纤,因此可以连接一个波长,而其他波长保持断开状态,从而丢失了携带的数据包。由于输出光纤上有多个可用波长,因此将未连接波长的OPS中的波长转换为可用波长会增加连接数量。参数波长转换器(PWC)提供了多通道波长转换,其中波长可以转换为另一个波长。 PWC使用可以灵活选择的泵浦波长来定义可以转换的波长,从而定义了所谓的波长转换对。但是,未知的是应该选择哪组泵浦波长,从而选择一组连接对,以提高OPS性能,同时减少OPS中的PWC数量。本文提出了一种OPS的泵浦波长选择策略,该策略在任意选择的时间间隔内使用不同的泵浦波长,每个PWC使用一个泵浦波长。该策略称为“种类丰富(VR)”策略。本文还介绍了一种非波长阻塞的OPS(NWB-OPS),以充分利用PWC。通过计算机仿真评估开关性能。结果表明,与具有相似复杂度的另一个泵浦波长相比,所提出的具有不同泵浦波长的策略可实现最高性能。此外,性能研究表明,选择较小的泵浦波长间隔比较大的泵浦更为有利。

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