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Efficient Use of PPM in Spectral-Amplitude-Coding Optical CDMA Systems

机译:PPM在频谱幅度编码光学CDMA系统中的有效使用

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摘要

A prominent technique, for reducing the effect of phase-induced intensity noise (PIIN) in spectral-amplitude-coding optical code-division multiple-access (SAC-OCDMA) systems, is proposed. In this technique, each user is assigned two orthogonal code sequences, selected from a minimum cross-correlation code set. In addition, two-level $M$ -ary pulse-position modulation ($M$PPM) scheme is adopted, where each level corresponds to a code sequence. This technique decreases the effect of PIIN and allows transmission at high data rates. The bit error rate (BER) of the proposed system is derived, taking into account the effects of PIIN, shot noise, and thermal noise. Two performance measures of this system, namely the BER and maximum achievable number of users, are compared to that of traditional systems adopting complementary and non-complementary keying. Our results reveal that the proposed technique allows each user to transmit at high data rates, compared to traditional techniques, while keeping the BER well below a prescribed threshold. Finally, our results are extended to higher levels of $M$PPM schemes with multicode modulation.
机译:提出了一种显着的技术,用于减少频谱幅度编码光码分多址(SAC-OCDMA)系统中的相位感应强度噪声(PIIN)的影响。在这种技术中,为每个用户分配了两个正交码序列,该序列是从最小互相关码集中选择的。另外,采用了两级$ M $元脉冲位置调制($ M $ PPM)方案,其中每一级对应于一个代码序列。该技术降低了PIIN的影响,并允许以高数据速率传输。考虑到PIIN,散粒噪声和热噪声的影响,得出了所提出系统的误码率(BER)。该系统的两个性能指标,即BER和最大可达到的用户数量,与采用互补和非互补键控的传统系统进行了比较。我们的结果表明,与传统技术相比,所提出的技术允许每个用户以高数据速率进行传输,同时将BER保持在规定阈值以下。最后,我们的结果扩展到具有多码调制的更高级别的$ M $ PPM方案。

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