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首页> 外文期刊>Journal of Communications Technology and Electronics >Performance Comparison of Proposed 3-D Coherent Spatial-Phase-Time Coding/Decoding with Super Structured Fiber Bragg Grating-Based Optical CDMA Systems
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Performance Comparison of Proposed 3-D Coherent Spatial-Phase-Time Coding/Decoding with Super Structured Fiber Bragg Grating-Based Optical CDMA Systems

机译:提议的基于超结构光纤布拉格光栅的光学CDMA系统3-D相干空间相位时间编码/解码的性能比较

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In this paper, performance comparison in terms of bit error rate (BER) of proposed WDM compatible optical CDMA system incorporating 3-D spectral-phase-time encoding/decoding to a 7 chip-super-structured fiber Bragg grating (SSFBG)-based optical code division multiple access (OCDMA) system is investigated. Coding and decoding using binary [0,π] phase chips is demonstrated for six users at 5 Gb/s, and a single coded signal is separated with acceptable bit-error rate ≤10~(-9). In our proposed optical CDMA system encoding and decoding is done by converting hadamard codes (used for conventional CDMA system) to phase codes. It is then compared with two optical pulse retiming and reshaping systems incorporating super structured fiber Bragg gratings (SSFBGs) as pulse shaping elements. Simulation results show that with all input bands having same sample rate, size data rates our proposed codes with even larger number of channels perform better in terms of eye opening & BER.
机译:在本文中,将建议的WDM兼容光学CDMA系统的误码率(BER)进行了性能比较,该系统将3-D频谱相时间编码/解码结合到基于7芯片超结构光纤布拉格光栅(SSFBG)的系统中研究了光码分多​​址(OCDMA)系统。已针对六个用户以5 Gb / s的速度演示了使用二进制[0,π]相位码片进行编码和解码,并以可接受的误码率≤10〜(-9)分离了单个编码信号。在我们提出的光学CDMA系统中,编码和解码是通过将hadamard码(用于常规CDMA系统)转换为相位码来完成的。然后将其与两个光学脉冲重定时和整形系统进行比较,该系统将超结构化光纤布拉格光栅(SSFBG)作为脉冲整形元素。仿真结果表明,在所有输入频段具有相同的采样率,大小数据速率的情况下,我们建议的具有更大通道数量的代码在眼图张开和BER方面表现更好。

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