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Published in: Optical and Quantum Electronics 2/2015

01-02-2015

Improved dispersion tolerance of Miller coding by integrating duobinary coding

Authors: Sanjeev Kumar Metya, Vijay Janyani

Published in: Optical and Quantum Electronics | Issue 2/2015

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Abstract

A Miller–Duobinary coding scheme is proposed to increase optical transmission distance by compressing the optical spectrum compared with that of Miller coding and thereby demonstrating much larger tolerance against fiber dispersion. In this modulation scheme we investigate the dispersion tolerance of this code and found it to be nearly twice that of Miller coding only by employing single photodetector at 1 dB power penalty. The transmission reach can further be extended for higher power penalty. The circuit complexity of the proposed scheme is comparable to traditional Duobinary coding. The dispersion tolerance of Miller–Duobinary code obtained at 3 dB power penalty is \(-971\) to \(+964\) ps/nm.

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Literature
go back to reference Alam, M. M., Majumder S.P.: Reduction of optical beat interference and intensity noise in a subcarrier multiplexed optical fiber link by Miller linecoding. In: International Symposium on High Capacity Optical Networks and Enabling Technologies, pp. 1–6 (2007) Alam, M. M., Majumder S.P.: Reduction of optical beat interference and intensity noise in a subcarrier multiplexed optical fiber link by Miller linecoding. In: International Symposium on High Capacity Optical Networks and Enabling Technologies, pp. 1–6 (2007)
go back to reference Hecht, M., Guida, A.: Delay modulation. Proc. IEEE 57(7), 1314–1316 (1969)CrossRef Hecht, M., Guida, A.: Delay modulation. Proc. IEEE 57(7), 1314–1316 (1969)CrossRef
go back to reference Hung, Y.C., Hung,H.J.: RFID design with CRC programmable capability dual encode functions and dual modulation outputs. In: Next-Generation Electronics (ISNE), 2010 International Symposium on, pp. 219–222 (2010) Hung, Y.C., Hung,H.J.: RFID design with CRC programmable capability dual encode functions and dual modulation outputs. In: Next-Generation Electronics (ISNE), 2010 International Symposium on, pp. 219–222 (2010)
go back to reference Hung, Y.C., Kuo, M.M., Tung, C.K., Shieh, S.H.: High-speed CMOS chip design for Manchester and Miller encoder. Intell. Inf. Hiding Multimed. Signal Process. 538–541 (2009) Hung, Y.C., Kuo, M.M., Tung, C.K., Shieh, S.H.: High-speed CMOS chip design for Manchester and Miller encoder. Intell. Inf. Hiding Multimed. Signal Process. 538–541 (2009)
go back to reference Kaiser, W., Wuth, T., Wichers, M., Rosenkranz, W.: Reduced complexity optical duobinary 10-gb/s transmitter setup resulting in an increased transmission distance. IEEE Photonics Technol. Lett. 13(8), 884–886 (2001)ADSCrossRef Kaiser, W., Wuth, T., Wichers, M., Rosenkranz, W.: Reduced complexity optical duobinary 10-gb/s transmitter setup resulting in an increased transmission distance. IEEE Photonics Technol. Lett. 13(8), 884–886 (2001)ADSCrossRef
go back to reference Metya, S.K., Janyani, V., Modani, S.G.: Dispersion tolerance of Miller signal in optical domain. Opt. Eng. 50(12), 125007-1–125007-6 (2011)ADSCrossRef Metya, S.K., Janyani, V., Modani, S.G.: Dispersion tolerance of Miller signal in optical domain. Opt. Eng. 50(12), 125007-1–125007-6 (2011)ADSCrossRef
go back to reference Metya, S.K., Janyani, V., Bansal, D., Modani, S.G.: Miller coding-based wavelength remodulation for optical access network. IEEE Photonics Technol. Lett. 24(19), 1715–1717 (2012)ADSCrossRef Metya, S.K., Janyani, V., Bansal, D., Modani, S.G.: Miller coding-based wavelength remodulation for optical access network. IEEE Photonics Technol. Lett. 24(19), 1715–1717 (2012)ADSCrossRef
go back to reference Metya, S.K., Janyani, V., Modani, S.G., Najjar, M.: Polarization mode dispersion tolerance of miller and manchester signals. Opt. Quantum Electron. 45(3), 201–207 (2013) Metya, S.K., Janyani, V., Modani, S.G., Najjar, M.: Polarization mode dispersion tolerance of miller and manchester signals. Opt. Quantum Electron. 45(3), 201–207 (2013)
go back to reference Yonenaga, K., Kuwano, S.: Dispersion-tolerant optical transmission system using duobinary transmitter and binary receiver. J. Lightwave Technol. 15(8), 1530–1537 (1997)ADSCrossRef Yonenaga, K., Kuwano, S.: Dispersion-tolerant optical transmission system using duobinary transmitter and binary receiver. J. Lightwave Technol. 15(8), 1530–1537 (1997)ADSCrossRef
go back to reference Yonenaga, K., Kuwano, S., Norimatsu, S., Shibata, N.: Optical duobinary transmission system with no receiver sensitivity degradation. Electron. Lett. 31(4), 302–304 (1995)CrossRef Yonenaga, K., Kuwano, S., Norimatsu, S., Shibata, N.: Optical duobinary transmission system with no receiver sensitivity degradation. Electron. Lett. 31(4), 302–304 (1995)CrossRef
Metadata
Title
Improved dispersion tolerance of Miller coding by integrating duobinary coding
Authors
Sanjeev Kumar Metya
Vijay Janyani
Publication date
01-02-2015
Publisher
Springer US
Published in
Optical and Quantum Electronics / Issue 2/2015
Print ISSN: 0306-8919
Electronic ISSN: 1572-817X
DOI
https://doi.org/10.1007/s11082-014-9890-6

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