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Investigation of inline optical amplifiers in 2-D time-wavelength OCDMA systems

机译:二维时间波长OCDMA系统中的在线光放大器研究

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This paper introduces the first mathematical investigation on utilizing a single inline optical amplifier in the 2-D time-spreading wavelength-hopping (TW) code division multiple access (OCDMA) system. The study adopts a non-ideal erbium-doped fiber amplifier (EDFA), where the optical gain depends on the input power of the amplifier. Three en/decoders representing different loss levels are examined. In addition, the paper highlights the significance of the power budget in the amplified TW systems to ensure the accomplishment of two concurrent conditions. First, the total input power from all users to the inline amplifier should fall within the amplifier input power range to gain sufficient amplification. Hence, the transmitted chip power from users is the key contributor. The second condition is the ordinary case where the desired received power should meet the required bit error rate (BER). The number of central splitter/combiner ports (Nsys) is an additional important system parameter, representing the upper bound of the available number of simultaneous users (K). The analysis supported by the Optisystem simulation results shows that the best location for the inline amplifier is close to the central system's combiner. The results also reveal that, for low-user system capacities, employing a single inline optical amplifier in the 2-D TW OCDMA system is effective for the low-loss TW en/decoders but with increased code weights (w). For an 8-user system (i.e., Nsys = 8), transmitted chip power of 15 dBm, and EDFA amplification gain of 28 dB, the system can support the full-user capacity (at a BER <= 10-9) when w = 29. On the contrary, the performance of the higher system capacities sustains only a particular number of simultaneous users, accommodating up to 60 of the full-user capacity when Nsys = 16.
机译:本文首次介绍了在二维时延波长跳跃(TW)码分多址(OCDMA)系统中使用单列直插式光放大器的数学研究。该研究采用非理想掺铒光纤放大器(EDFA),其中光增益取决于放大器的输入功率。检查了代表不同损耗水平的三个en/decoder。此外,本文还强调了功率预算在放大TW系统中的重要性,以确保实现两个并发条件。首先,从所有用户到内联放大器的总输入功率应落在放大器输入功率范围内,以获得足够的放大。因此,来自用户的芯片传输功率是关键贡献者。第二个条件是所需的接收功率应满足所需误码率(BER)的普通情况。中央分路器/合路器端口 (Nsys) 的数量是一个额外的重要系统参数,表示可用并发用户数 (K) 的上限。Optisystem仿真结果支持的分析表明,内联放大器的最佳位置靠近中央系统的合路器。结果还表明,对于低用户系统容量,在2-D TW OCDMA系统中采用单个内联光放大器对于低损耗TW en/解码器是有效的,但代码权重(w)增加。对于 8 用户系统(即,Nsys = 8),发射芯片功率为15 dBm,EDFA放大增益为28 dB,当w = 29时,系统可以支持全用户容量(误码率为< = 10-9)。相反,较高系统容量的性能只能维持特定数量的并发用户,当 Nsys = 16 时,最多可容纳 60% 的全用户容量。

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