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Optimal lightpath placement on a metropolitan-area network linked with optical CDMA local nets

机译:与光CDMA本地网链接的城域网中的最佳光路放置

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A flexible optical metropolitan-area network (OMAN) [J.F. Huang, Y.F. Wang, C.Y. Yeh, Optimal configuration of OCDMA-based MAN with multimedia services, in: 23rd Biennial Symposium on Communications, Queen's University, Kingston, Canada, May 29-June 2, 2006, pp. 144-148] structured with OCDMA linkage is proposed to support multimedia services with multi-rate or various qualities of service. To prioritize transmissions in OCDMA, the orthogonal variable spreading factor (OVSF) codes widely used in wireless CDMA are adopted. In addition, for feasible multiplexing, unipolar OCDMA modulation [L. Nguyen, B. Aazhang, J.F. Young, All-optical CDMA with bipolar codes, IEEE Electron. Lett. 31 (6) (1995) 469-470] is used to generate the code selector of multi-rate OMAN, and a flexible fiber-grating-based system is used for the equipment on OCDMA-OVSF code. These enable an OMAN to assign suitable OVSF codes when creating different-rate lightpaths. How to optimally configure a multi-rate OMAN is a challenge because of displaced lightpaths. In this paper, a genetically modified genetic algorithm (GMGA) [L.R. Chen, Flexible fiber Bragg grating encoder/decoder for hybrid wavelength-time optical CDMA, IEEE Photon. Technol. Lett. 13 (11) (2001) 1233-1235] is used to preplan lightpaths in order to optimally configure an OMAN. To evaluate the performance of the GMGA, we compared it with different preplanning optimization algorithms. Simulation results revealed that the GMGA very efficiently solved the problem.
机译:灵活的光学城域网(OMAN)[J.F.黄永发王春雨是的,具有多媒体服务的基于OCDMA的城域网的最佳配置,在:第23届两年一次的通信研讨会上,加拿大金斯敦皇后大学,2006年5月29日至6月2日,第144-148页]建议使用OCDMA链接来支持具有多速率或各种服务质量的多媒体服务。为了优先处理OCDMA中的传输,采用了在无线CDMA中广泛使用的正交可变扩频因子(OVSF)码。另外,对于可行的复用,单极性OCDMA调制[L. Nguyen,B.Aazhang,J.F.Young,具有双极代码的全光CDMA,IEEE Electron。来吧31(6)(1995)469-470]用于生成多速率OMAN的代码选择器,并且基于柔性光纤光栅的系统用于基于OCDMA-OVSF代码的设备。这些功能使OMAN在创建不同速率的光路时可以分配合适的OVSF代码。由于光路的偏移,如何优化配置多速率OMAN是一个挑战。在本文中,提出了一种转基因遗传算法(GMGA)[L.R. Chen,用于混合波长-时间光学CDMA的柔性光纤布拉格光栅编码器/解码器,IEEE Photon。技术。来吧13(11)(2001)1233-1235]用于预先计划光路,以优化配置OMAN。为了评估GMGA的性能,我们将其与不同的预规划优化算法进行了比较。仿真结果表明,GMGA非常有效地解决了该问题。

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