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Performance Analysis of Equal-Energy Two-Level OCDMA System Using Generalized Optical Orthogonal Codes

机译:广义光正交码等能量两级OCDMA系统的性能分析

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摘要

In this paper, we analyze and obtain performance of a multilevel Optical Code Division Multiple Access (OCDMA) system with Variable-Weight Optical Orthogonal Codes (VW-OOCs) under the same-bit-energy assumption. The exact error-probability of this system is derived for the Generalized VW-OOCs (codes with arbitrary cross-correlation) which is necessary for the optimum design of multilevel OCDMA systems. We show that the bit power has an important role on determining the performance of codes with different weights. Furthermore, the results reveal that the performance of low-weight codes depends on the weight of the low-weight codes and the code-weight ratio of two classes. Moreover, our exact analytical model has resulted in more accurate performance analysis than the upper bound in . We have found that the accuracy of the upper bound decreases when the number of simultaneously transmitting high-weight codes increases.
机译:在本文中,我们分析并获得了在相同比特能量假设下具有可变权重光正交码(VW-OOC)的多级光码分多址(OCDMA)系统的性能。该系统的精确错误概率是针对通用VW-OOC(具有任意互相关的代码)得出的,这对于多级OCDMA系统的最佳设计是必需的。我们表明,比特功率在确定具有不同权重的代码的性能方面具有重要作用。此外,结果表明,低权重代码的性能取决于低权重代码的权重和两个类别的代码权重比。此外,我们的精确分析模型比的上限进行了更准确的性能分析。我们发现,当同时发送高权重代码的数量增加时,上限的精度降低。

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