Close-Form Expression of One-Tap Normalized LMS Carrier Phase Recovery in Optical Communication Systems
arXiv:1602.06850 · doi:10.1117/12.2261932
Abstract
The performance of long-haul high speed coherent optical fiber communication systems is significantly degraded by the laser phase noise and the equalization enhanced phase noise (EEPN). In this paper, the analysis of the one-tap normalized least-mean-square (LMS) carrier phase recovery (CPR) is carried out and the close-form expression is investigated for quadrature phase shift keying (QPSK) coherent optical fiber communication systems, in compensating both laser phase noise and equalization enhanced phase noise. Numerical simulations have also been implemented to verify the theoretical analysis. It is found that the one-tap normalized least-mean-square algorithm gives the same analytical expression for predicting CPR bit-error-rate (BER) floors as the traditional differential carrier phase recovery, when both the laser phase noise and the equalization enhanced phase noise are taken into account.
[SPIE] International Conference on Wireless and Optical Communications (ICWOC) 2016, W22
References in corpus (1)
Cited by in corpus (3)
- Analysis of chromatic dispersion compensation and carrier phase recovery in long-haul optical transmission system influenced by equalization enhanced phase noise
- Dynamic physical layer equalization in optical communication networks
- Digital Signal Processing for Optical Communications and Networks I: Linear Compensation