Title :
Performance investigation of CMA and RLS based equalization for next generation long reach passive optical networks
Author :
Almatroudi, Ziyad Ahmad ; Ragheb, Amr ; Bentrcia, Abdelouahab ; Fathallah, Habib
Author_Institution :
Zain SA, Riyadh, Saudi Arabia
Abstract :
Digital coherent receivers (DCR) exploiting advanced digital signal processing (DSP) have shown major impact, in terms of increasing receiver sensitivity and spectral efficiency, on optical communication for long haul transmission. Recently coherent receivers started to be employed in metro/access networks. In this paper, we investigate the performance of DCR in next generation long reach passive optical networks (NG-LRPON). Constant modulus algorithm (CMA) and recursive least squares (RLS) equalizers are used to blindly mitigate fiber chromatic dispersion (CD) and polarization mode dispersion (PMD) for different signal speeds and modulation schemes. 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.
Keywords :
least squares approximations; next generation networks; optical receivers; passive optical networks; CD; CMA; DCR; DSP; NG-LRPON; PMD; RLS; RLS equalizers; advanced digital signal processing; constant modulus algorithm; digital coherent receivers; fiber chromatic dispersion; long haul transmission; metro-access networks; next generation long reach passive optical networks; optical communication; polarization mode dispersion; receiver sensitivity; recursive least squares; spectral efficiency; Bit error rate; Equalizers; Optical fiber dispersion; Optical fiber networks; Optical fiber polarization; Phase shift keying; Long reach passive optical network (LR-PON); constant modulus algorithm (CMA); recursive least squares (RLS);
Conference_Titel :
Information and Communication Technology Research (ICTRC), 2015 International Conference on
Conference_Location :
Abu Dhabi
DOI :
10.1109/ICTRC.2015.7156446