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Layered Antisymmetry-Constructed Clipped Optical OFDM for IM/DD Systems

Abstract

In this paper, antisymmetry-constructed clipped optical OFDM (AC-OFDM) is proposed for intensity modulation with direct detection (IM/DD) systems, in which an antisymmetry property is imposed directly in time domain. AC-OFDM has the same spectral efficiency as traditional asymmetrically clipped optical OFDM (ACO-OFDM) but is less complex to implement. Layered AC-OFDM (LAC-OFDM) is then proposed as an extension to further improve spectral efficiency, where different layers of AC-OFDM signals are added in the time domain and transmitted simultaneously. Computational complexity analysis and numerical results show that LAC-OFDM has the same spectral efficiency as layered asymmetrically clipped optical OFDM (LACO-OFDM) and enhanced unipolar OFDM (eU-OFDM) but is less complex in terms of both the number of real multiplications and real additions required. Specifically, LAC-OFDM requires less than half the multiplication and addition operations compared to the comparable LACO-OFDM scheme. Monte Carlo simulation results show that LAC-OFDM has the same bit error rate (BER) performance as LACO- and eU-OFDM.

Authors

Bai R; Hranilovic S

Volume

00

Pagination

pp. 1-6

Publisher

Institute of Electrical and Electronics Engineers (IEEE)

Publication Date

December 9, 2019

DOI

10.1109/globecom38437.2019.9013244

Name of conference

2019 IEEE Global Communications Conference (GLOBECOM)

Labels

Sustainable Development Goals (SDG)

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