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Spectral phase coding based LR-PON

机译:基于频谱相位编码的LR-PON

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摘要

The huge increase of bandwidth demands leads telecommunication provider to enhance fiber network performance by improving channel multiplexing techniques and increasing spectral efficiency per channel. The most critical impairment of fiber networks is pulse dispersion that must be compensated to avoid data inter-symbol interference. Pulse dispersion can occur due to different travel speeds of wavelengths which is called chromatic dispersion. Also pulse dispersion may occur due to the difference in the propagation constants of a fiber which is called polarization mode dispersion (PMD). This paper investigates the performance of complex modulated data over spectral phase coded- Optical Code Division Multiple Access (SPC-OCDMA) channel. Constant Modulus Algorithm (CMA) and Recursive least squares (RLS) are applied to eliminate the impact of CD PMD. For low signal speed, our simulation results show that CMA achieves same steady state as RLS however with low complexity. For high baud rate signals such as 5 and 10Gbaud, RLS achieves 50% faster convergence rate in terms of number of symbols.
机译:带宽需求的巨大增长导致电信提供商通过改进信道多路复用技术并提高每个信道的频谱效率来增强光纤网络性能。光纤网络最关键的损害是脉冲色散,必须对其进行补偿,以避免数据符号间干扰。脉冲色散可能是由于波长的不同传播速度而发生的,这称为色散。此外,由于光纤的传播常数不同,可能会发生脉冲色散,这被称为偏振模色散(PMD)。本文研究了频谱相位编码的光码分多址(SPC-OCDMA)信道上复杂调制数据的性能。应用恒模算法(CMA)和递归最小二乘(RLS)来消除CD PMD的影响。对于低信号速度,我们的仿真结果表明CMA可以达到与RLS相同的稳态,但是复杂度较低。对于高波特率信号(例如5和10 Gbaud),RLS在符号数量方面实现了50%的更快收敛速度​​。

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