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Synchronous Optical CDMA Networks Capacity Increase Using Transposed Modified Prime Codes

机译:使用转置的修改后的素码增加同步光CDMA网络的容量

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A novel spreading code-set based on the prime code (PC) families, referred to as `transposed modified prime codes (T-MPC)', is proposed for synchronous optical code-division multiple-access (OCDMA) networks. The new code-set is constructed algorithmically to enhance and simplify its implementation. The proposed code-set performance is compared with existing spreading code families in terms of correlations, bit-error rate (BER) and cardinality. The proposed optical spreading code family doubles the cardinality as compared to existing PC families. This also implies that greater number of users can be accommodated in the network. Since there is no longer a time-shift feature in T-MPC like in conventional modified prime codes (MPC), the code is not predictable and thus even more secure. However, the code structure is similar to MPC, thus its employment in a system running MPC will be nondestructive. The code is also compatible with low-weight MPC. The results indicate that the proposed code-set has properties to enhance the OCDMA network capacity remarkably.
机译:针对同步光码分多址(OCDMA)网络,提出了一种基于素码(PC)系列的新型扩展码集,称为“转置修饰素码(T-MPC)”。通过算法构造新的代码集,以增强和简化其实现。在相关性,误码率(BER)和基数方面,将建议的代码集性能与现有的扩展代码系列进行了比较。与现有的PC系列相比,建议的光扩展代码系列使基数翻了一番。这也意味着可以在网络中容纳更多的用户。由于在T-MPC中不再像常规的修改素码(MPC)一样具有时移功能,因此该代码不可预测,因此更加安全。但是,代码结构类似于MPC,因此在运行MPC的系统中使用它不会造成破坏。该代码还与轻量级MPC兼容。结果表明,所提出的代码集具有显着增强OCDMA网络容量的特性。

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