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Comparison between Conventional OCDMA and Subcarrier Multiplexing SAC OCDMA System Based on Single Photodiode Detection

机译:基于单光电二极管检测的常规OCDMA与子载波复用SAC OCDMA系统的比较

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This paper demonstrates the comparison between conventional OCDMA system and subcarrier multiplexing (SCM) SAC-OCDMA system by applying Recursive Combinatorial (RC) code based on single photodiode detection (SPD). SPD is used in the receiver part to reduce the effect of multiple access interference (MAI) which contributes as a dominant noise in incoherent SAC-OCDMA systems. From this analysis, the performance of SCM OCDMA network could be improved by using lower data rates and higher received power. The hybrid SCM OCDMA system shows better performance compare to conventional OCDMA system although the number of users involved is very high. This is because, for hybrid SCM OCDMA system, the number of users can be increased by increasing the number of subcarriers without affect the number of code length and optical codes. Increasing the number of subcarriers will enhance the power consumption by applying hybrid SCM system in OCDMA compared to the conventional OCDMA system. This is because increasing the number of users for hybrid SCM system does not affects the number of code length and the number of optical codes but only increase the number of subcarriers. Thus, hybrid SCM OCDMA system has to increase spectral efficiency and produce better performance compared to conventional of OCDMA system.
机译:本文通过应用基于单光电二极管检测(SPD)来施加递归组合(RC)代码来展示常规OCDMA系统和子载波多路复用(SCM)SAC-OCDMA系统的比较。 SPD用于接收器部分以减少多次接入干扰(MAI)的效果,这在不相断的SAC-OCDMA系统中有助于作为主导噪声的贡献。根据该分析,通过使用较低的数据速率和更高的接收功率,可以提高SCM OCDMA网络的性能。 Hybrid SCM OCDMA系统显示与传统OCDMA系统的更好的性能,尽管所涉及的用户数量非常高。这是因为,对于混合动力SCM OCDMA系统,可以通过增加子载波的数量而不会影响代码长度和光学代码的数量来增加用户数。增加子载波的数量将通过在与传统的OCDMA系统上应用OCDMA中的混合SCM系统来增强功耗。这是因为增加了混合SCM系统的用户数量不会影响代码长度和光学代码的数量,而是仅增加子载波的数量。因此,与OCDMA系统的常规相比,混合SCM OCDMA系统必须提高光谱效率并产生更好的性能。

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