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首页> 外文期刊>Lightwave Technology, Journal of >Rapid Reconfigurable OCDMA System Using Single-Phase Modulator for Time-Domain Spectral Phase Encoding/Decoding and DPSK Data Modulation
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Rapid Reconfigurable OCDMA System Using Single-Phase Modulator for Time-Domain Spectral Phase Encoding/Decoding and DPSK Data Modulation

机译:使用单相调制器进行时域频谱相位编码/解码和DPSK数据调制的快速可重构OCDMA系统

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摘要

An optical-code-division-multiple-access (OCDMA) system with a novel modulation scheme for simultaneous generation of time-domain spectral phase encoding/decoding (SPE/SPD) and differential phase-shift keying (DPSK) data modulation that can be potentially rapidly reconfigured using only a single-phase modulator (PM) is proposed and experimentally demonstrated. The time-domain SPE is realized by stretching and compressing the ultrashort optical pulse through two-chirped fiber Bragg gratings with opposite dispersion and a high-speed PM for optical code (OC) generation and data modulation. The SPD has similar configuration as the SPE counterpart but using another PM synchronously driven by the complementary code pattern for OC recognition. Simulation investigation and experimental results both show that the code transition, dispersion mismatch between the encoding and decoding side, and the transmission fiber dispersion have detrimental effect on the en/decoding performance. In the experiment, 16-chip, 40-Gchip/s OC pattern and 2.5-Gb/s DPSK data modulation have been simultaneously generated using a single PM. The 2.5-Gb/s DPSK data have been successfully decoded and transmitted over 34 km fiber with BER <; 10-9 for five OCs. The proposed scheme employs similar setup for transmitter and receiver, exhibiting the potential to simplify the architecture of the whole system, and improve the flexibility and confidentiality of OCDMA system.
机译:具有新型调制方案的光码分多址(OCDMA)系统,用于同时生成时域频谱相位编码/解码(SPE / SPD)和差分相移键控(DPSK)数据调制提出并可能仅使用单相调制器(PM)快速重新配置。时域SPE是通过具有相反色散的两-光纤布拉格光栅和用于光学代码(OC)生成和数据调制的高速PM拉伸和压缩超短光脉冲来实现的。 SPD具有与SPE对等方相似的配置,但使用由互补代码模式同步驱动的另一个PM进行OC识别。仿真研究和实验结果均表明,码转换,编码和解码端之间的色散失配以及传输光纤的色散对编码/解码性能有不利影响。在实验中,使用单个PM同时生成了16芯片,40 Gchip / s OC模式和2.5 Gb / s DPSK数据调制。 2.5 Gb / s DPSK数据已成功解码并通过BER <;的34 km光纤传输。 5个OC的10 -9 。所提出的方案对发射器和接收器采用类似的设置,具有简化整个系统的架构,提高OCDMA系统的灵活性和机密性的潜力。

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