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Experimental investigation on the high chip rate of 2-D incoherent optical CDMA system

机译:二维非相干光CDMA系统的高码片率实验研究

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An innovative approach to realise high chip rate in OCDMA transmission system is proposed and experimentally investigation, the high chip rate is achieved through a 2-D wavelength-hopping time-spreading en/decoder based on the supercontinuum light source. The source used in the experiment is generated by high nonlinear optical fiber (HNLF), Erbium-doped fiber amplifier (EDFA) which output power is 26 dBm, and distributed feed-back laser diode which works in the gain switch state. The span and the flatness of the light source are 20 run and 3 dB, respectively, after equalization of wavelength selective switch (WSS). The wavelength-hopping time-spreading coder can be changed 20 ran in the wavelength and 400 ps in the time, is consist of WSS and delay lines. Therefore, the experimental results show that the chip rate can achieve 500 Gchip/s, in the case of 2.5 Gbit/s, while keeping a bit error rate below forward error correction limit after 40 km transmission.
机译:提出了一种在OCDMA传输系统中实现高码片率的创新方法,并进行了实验研究,通过基于超连续谱光源的二维波长跳跃时间扩展编码器/解码器实现了高码片率。实验中使用的光源是由高非线性光纤(HNLF),掺fiber光纤放大器(EDFA)和分布式反馈激光二极管产生的,该放大器的输出功率为26 dBm,其工作在增益开关状态。波长选择开关(WSS)均衡后,光源的跨度和平坦度分别为20游程和3 dB。波长跳跃时间扩展编码器可以将波长改变为20纳米,时间为400 ps,由WSS和延迟线组成。因此,实验结果表明,在2.5 Gbit / s的情况下,码片速率可以达到500 Gchip / s,同时在40 km传输之后,保持误码率低于前向纠错极限。

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