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Interference Mitigation Using Successive Interference Cancellation in Optical CDMA Systems

机译:光学CDMA系统中使用连续干扰消除的干扰缓解

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Performance of optical code division multiple access (O-CDMA) system is influenced by multiple access interference (MAI) resulted from the overlapping between the users. To overcome this problem, successive interference cancellation (SIC) scheme is applied to O-CDMA systems. In this paper we apply successive interference cancellation technique to a spectral amplitude coding (SAC) system that uses modified quadratic congruence (MQC) codes as signature sequence codes. The system is analyzed for two cases: same effective power for all the users and different effective power from each user. It is shown that under ideal effective power the SIC/SAC optical CDMA systems have potential to suppress the intensity noise and mitigate multiple access interference. Hence, using SIC/SAC cancellation scheme, the system can accommodate much more number of users as compared to the one without cancellation. Further, under ideal power the system using SIC scheme with direct sequence encoding (SIC/DS) shows much lower BER performance as compared to the one without cancellation (i.e. conventional receiver) or to SIC/SAC cancellation scheme. Hence, much more number of users can be accommodated by SIC/DS receiver system. Furthermore, SIC/DS scheme still shows much lower BER performance as compared with SIC/SAC scheme under different effective power.
机译:光学码分的性能多访问(O-CDMA)系统受到多个访问干扰(MAI)的影响,这是由用户之间的重叠产生的。为了克服这个问题,连续的干扰取消(SIC)方案应用于O-CDMA系统。在本文中,我们将连续的干扰消除技术应用于光谱幅度编码(SAC)系统,该系统使用修改的二次常量(MQC)代码作为签名序列代码。分析了系统的两个情况:所有用户的不同功率和来自每个用户的不同有效电量。结果表明,在理想的有效功率下,SiC / SAC光学CDMA系统具有抑制强度噪声并减轻多种访问干扰。因此,使用SIC / SAC取消方案,与没有取消的情况相比,系统可以容纳更多更多用户。此外,在理想的功率下,使用具有直接序列编码的SIC方案(SiC / DS)的系统显示出与未取消(即常规接收器)或SiC / SAC消除方案的SIC / SAC消除方案相比的低于的BER性能。因此,SIC / DS接收器系统可以容纳更多用户。此外,与不同有效功率的SIC / SAC方案相比,SiC / DS方案仍然显示出大量较低的BER性能。

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