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SAC-OCDMA system performance using narrowband Bragg filter encoders and decoders

机译:SAC-OCDMA系统性能使用窄带布拉格滤波器编码器和解码器

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摘要

In this paper, we have studied a Spectral Amplitude Coding Optical Code Division Multiple Access (SAC-OCDMA) system performance using fiber Bragg gratings equivalent to very narrow filters used in the system as encoders and decoders in both the transmitter and the receiver block. The system performance depends on several variables such as: the optical power; the fiber length; the data rate and the bandwidth. Different simulations have been realized in terms of the bit error rate (BER) and the quality factor (Q) to evaluate the effect of each parameter on the system performance and also to examine the impact of number of users. The obtained results using Optisystem network show clearly that the studied SAC-OCDMA system of three users remains efficient for fiber lengths up to 25 km at a data rate of 200 Mbits/s and a FBGs bandwidth of 0.6 nm. These results are realized with an acceptable bit error rate BER < 10~(-9) . In addition, a SAC-OCDMA system of 9 users was also simulated to assess the effect of the number of users. The results obtained show that for a fiber length L = 5 Km, the system remains efficient for a number of users set at 8 users, then the longer the fiber length increases the more the number of possible users decreases. For L = 35 Km, the number of users for whom all users obtain a good BER value is 6 users.
机译:在本文中,我们研究了使用与系统中使用的非常窄的过滤器相当于发射器和接收器块中的编码器和解码器的光纤布拉格光栅使用光纤布拉格光栅的光谱幅度编码光码分割多址(SAC-OCDMA)系统性能。系统性能取决于若干变量,如:光功率;纤维长度;数据速率和带宽。在误码率(BER)和质量因子(Q)方面已经实现了不同的仿真,以评估每个参数对系统性能的影响以及检查用户数量的影响。使用OptiSystem网络的获得结果显然显示了三个用户的研究SAC-OCDMA系统对纤维长度高达25km的纤维长度,数据速率为200 Mbits / s,FBGS带宽为0.6nm。这些结果以可接受的比特错误率BER10误率实现。此外,还模拟了9个用户的SAC-OCDMA系统以评估用户数量的效果。得到的结果表明,对于纤维长度L = 5km,系统对8个用户设置的多个用户保持有效,因此光纤长度越长,可能的用户数量越多。对于L = 35公里,所有用户获得好的BER值的用户数量为6个用户。

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