Abstract
In this paper, we investigate the impact of the transmitter finite extinction ratio and the receiver carrier recovery phase offset on the error performance of two optically preamplified hybrid M-ary pulse position modulation (PPM) systems with coherent detection. The first system, referred to as PB-mPPM, combines polarization division multiplexing (PDM) with binary phase-shift keying and M-ary PPM, and the other system, referred to as PQ-mPPM, combines PDM with quadrature phase-shift keying and M-ary PPM. We provide new expressions for the probability of bit error for PB-mPPM and PQ-mPPM under finite extinction ratios and phase offset. The extinction ratio study indicates that the coherent systems PB-mPPM and PQ-mPPM outperform the direct-detection ones. It also shows that at \(P_b=10^{-9}\) PB-mPPM has a slight advantage over PQ-mPPM. For example, for a symbol size \(M=16\) and extinction ratio \(r=30\) dB, PB-mPPM requires 0.6 dB less SNR per bit than PQ-mPPM to achieve \(P_b=10^{-9}\). This investigation demonstrates that PB-mPPM is less complex and less sensitive to the variations of the offset angle \(\theta \) than PQ-mPPM. For instance, for \(M=16\), \(r=30\) dB, and \(\theta =10^{\circ }\) PB-mPPM requires 1.6 dB less than PQ-mPPM to achieve \(P_b=10^{-9}\). However, PB-mPPM enhanced robustness to phase offset comes at the expense of a reduced bandwidth efficiency when compared to PQ-mPPM. For example, for \(M=2\) its bandwidth efficiency is 60 % that of PQ-mPPM and \(\approx 86\,\%\) for \(M=1024\). For these reasons, PB-mPPM can be considered a reasonable design trade-off for M-ary PPM systems.
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References
Phillips, A., Cryan, R., Senior, J.: Performance evaluation of optically preamplified PPM systems. Photon. Technol. Lett. IEEE 6(5), 651–653 (1994)
Phillips, A., Cryan, R., Senior, J.: Optically preamplified pulse-position modulation for fibre-optic communication systems. Optoelectron. IEE Proc. 143(2), 153–159 (1996)
Kiasaleh, K.: Performance of APD-based, PPM free-space optical communication systems in atmospheric turbulence. IEEE Trans. Commun. 53(9), 1455–1461 (2005)
Caplan, D., Robinson, B., Murphy, R., Stevens, M.: Demonstration of 2.5 Gslots/s optically-preamplified M-PPM with 4 photons/bit receiver sensitivity. In: Proceedings of the 2005 OFC/NFOEC, pp. 1–3. (2005)
Caplan, D.: Laser communication transmitter and receiver design. J. Opt. Fiber Commun. Rep. 4(5), 225–362 (2007)
Edwards, B.L., Israel, D., Wilson, K., Moores, J.D., Fletcher, A.S.: The laser communications relay demonstration. In: The 2012 International Conference on Space Optical Systems and Applications (ICSOS), pp. 1–9. (2012)
Chandrasekhar, S., Liu, X., Wood, T.H., Tkach, R.W.: High sensitivity modulation formats. In: Proceedings of the 2012 OFC/NFOEC, pp. 1–3. (2012)
Landolsi, T., Elrefaie, A.: Error performance of preamplified optical PPM systems with finite extinction ratios. J. Opt. Fiber Technol. 20, 365–368 (2014)
Landolsi, T., Elrefaie, A.: Performance evaluation of optically preamplified PPM systems with dual-polarized ASE noise and finite extinction ratios. IEEE Trans. Commun. 62(10), 3644–3651 (2014)
Seimetz, M., Weinert, C.M.: Options, feasibility, and availability of \(2\times 4\) \(90^{\circ }\) hybrids for coherent optical systems. IEEE J. Lightwave Technol. 24(3), 1317–1322 (2006)
Liu, X., Wood, T., Tkach, R., Chandrasekhar, S.: Demonstration of record sensitivities in optically preamplified receivers by combining PDM-QPSK and M-ary pulse-position modulation. J. Lightwave Technol. 30(4), 406–413 (2012)
Landolsi, T., Hassan, M.S., Elrefaie, A.F., Hamid, S.: Performance evaluation of optically-preamplified hybrid QPSK M-ary PPM systems with finite extinction ratios. J. Opt. Fiber Technol. 25, 33–38 (2015)
Yu, M., et al.: Nyquist-mPPM-QPSK modulation for power and spectrum efficient optical communications. In: 2016 Optical Fiber Communications Conference (OFC), pp. 1–3. (2016)
Pauer, M., Winzer, P.: Impact of extinction ratio on return-to-zero coding gain in optical noise limited receivers. Photon. Technol. Lett. IEEE 15(6), 879–881 (2003)
Wei, H., Elrefaie, A.F., Xue, X., Wang, S.Y.: Generation of Optical Signals with Return-to-Zero Format. US Patent 2002/0196508 A1 (2002)
Hamid, S., Hassan, M., Elrefaie, A.: Performance of optically-preamplified PDM-BPSK M-ary PPM and PDM-QPSK-M-ary PPM systems with finite extinction ratio. In: 2015 IEEE 8th GCC Conference and Exhibition (GCCCE), pp. 1–6. (2015)
Kazovsky, L.G.: Balanced phase-locked loops for optical homodyne receivers: performance analysis, design considerations, and laser linewidth requirements. IEEE J. Lightwave Technol. 4(2), 182–195 (1986)
Norimatsu, S., Iwashita, K.: Linewidth requirements for optical synchronous detection systems with nonnegligible loop delay time. IEEE J. Lightwave Technol. 10(3), 341–349 (1992)
Geisler, D.J., et al.: Demonstration of 2.1 photon-per-bit sensitivity for BPSK at 9.94-Gb/s with rate-1/2 FEC. In: Proceedings of the 2013 OFC/NFOEC, pp. 1–3. (2013)
Zhang, S., Kam, P., Yu, C., Chen, J.: Decision-aided carrier phase estimation for coherent optical communications. IEEE J. Lightwave Technol. 28(11), 1597–1607 (2010)
Prabhu, V.K.: PSK performance with imperfect carrier phase recovery. IEEE Trans. Aerosp. Electron. Syst. AES–12(2), 275–286 (1976)
Hamid, S.: Performance Evaluation of Optically Preamplified M-ary PPM Systems for Free-Space Optical Communications. Master’s thesis, American University of Sharjah (2012)
Olsson, N.A.: Lightwave systems with optical amplifiers. IEEE J. Lightwave Technol. 7(7), 1071–1082 (1989)
Ramaswami, R., Sivarajan, K., Sasaki, G.: Optical Networks: A Practical Perspective, chap. 4, 3rd edn. Morgan Kaufmann (2009)
Ho, K.P.: Phase-Modulated Optical Communication Systems, 1st edn. Springer, New York (2005)
Jeruchim, M.C., Balaban, P., Shanmugan, K.S.: Simulation of Communication Systems: Modeling, Methodology and Techniques, chap. 5, 2nd edn. Springer (2000)
Tychopoulos, A., Koufopavlou, O., Tomkos, I.: FEC in optical communications–a tutorial overview on the evolution of architectures and the future prospects of outband and inband FEC for optical communications. IEEE Circuits Devices Mag. 22(6), 79–86 (2006)
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Landolsi, T., Elrefaie, A.F., Hamid, S. et al. Error performance of optically preamplified hybrid BPSK-PPM systems with transmitter and receiver imperfections. Photon Netw Commun 33, 231–242 (2017). https://doi.org/10.1007/s11107-016-0636-1
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DOI: https://doi.org/10.1007/s11107-016-0636-1