Non-linear Mitigation Using Carrier Phase Estimation and K-Means Clustering

Pakala L, Schmauß B (2015)


Publication Language: English

Publication Type: Conference contribution

Publication year: 2015

Event location: Leipzig DE

Abstract

We investigate the non-linear mitigation performance of modulation format independent or universal carrier phase estimation (U-CPE) along with K-Means clustering (KMC) algorithm for a 28 Gbaud/s polarization multiplexed (PM) 16 quadrature amplitude modulation (16-QAM) coherent transmission system. Numerical simulations on transmission performance prove that the U-CPE outperforms decision directed carrier phase estimation (DD-CPE) with a gain of 1 dB and non-linear tolerance of approximately 2 dB. Furthermore, it has been verified that a gain of 0.3 dB in both linear and non-linear regimes can be obtained by employing KMC after U-CPE. In addition, the benefit acquired from the combined use of the afore-mentioned algorithms has been also investigated in the presence of laser linewidth effects in addition to fiber non-linearity as well as increasing the feedback delay of U-CPE up to 50 symbol periods to realize the feasibility for real-time implementations. Besides single channel systems, the algorithms have also been employed for wavelength division multiplexing (WDM) systems with 50 GHz channel spacing to see the impact of cross phase modulation (XPM) on their performance. Numerical investigations show that the gain obtained from K-Means algorithm starts vanishing as the XPM effect becomes stronger with an increase in the number of WDM channels.

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How to cite

APA:

Pakala, L., & Schmauß, B. (2015). Non-linear Mitigation Using Carrier Phase Estimation and K-Means Clustering. In Proceedings of the ITG Fachtagung Photonische Netze. Leipzig, DE.

MLA:

Pakala, Lalitha, and Bernhard Schmauß. "Non-linear Mitigation Using Carrier Phase Estimation and K-Means Clustering." Proceedings of the ITG Fachtagung Photonische Netze, Leipzig 2015.

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