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Erschienen in: Wireless Personal Communications 1/2021

01.01.2021

Performance Analysis of Different Modulation Techniques for Super Dense System with RAMAN–EDFA–RAMAN HOA

verfasst von: Chakresh Kumar, Ghanendra Kumar

Erschienen in: Wireless Personal Communications | Ausgabe 1/2021

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Abstract

This paper has shown the analysis of 380 × 10 Gbps super dense wavelength division system using different modulation formats such as non-return to zero (NRZ), Electro absorption modulator (MZM), Mach–Zehnder modulator (MZM), return to zero (RZ) and differential phase shift keying for the features of quality factor (Q-factor), bit error rate (BER), output power and eye closure respectively. Amplification has maintained with the help of RAMAN–EDFA–RAMAN hybrid optical amplifier (HOA) for super dense system. Recorded results from NRZ declare to maintain better super dense optical communication with acceptable rating features in terms of Q-factor, BER, output power and eye closure for the distance of 50 to 400 km and 60 to 360 km respectively.

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Literatur
1.
Zurück zum Zitat Ummy, M. A., Arend, M. F., Leng, L., Madamopoulos, N., & Dorsinville, R. (2009). Extending the gain bandwidth of combined Raman-parametric fiber amplifiers using highly nonlinear fiber. IEEE Journal of Lightwave Technology, 27(5), 583–589.CrossRef Ummy, M. A., Arend, M. F., Leng, L., Madamopoulos, N., & Dorsinville, R. (2009). Extending the gain bandwidth of combined Raman-parametric fiber amplifiers using highly nonlinear fiber. IEEE Journal of Lightwave Technology, 27(5), 583–589.CrossRef
2.
Zurück zum Zitat Sheetala, A., Sharma, A. K., & Kaler, R. S. (2010). Simulation of high capacity 40 Gb/s long haul DWDM system using different modulation formats and dispersion compensation schemes in the presence of Kerr’s effect. Optik, 121, 739–749.CrossRef Sheetala, A., Sharma, A. K., & Kaler, R. S. (2010). Simulation of high capacity 40 Gb/s long haul DWDM system using different modulation formats and dispersion compensation schemes in the presence of Kerr’s effect. Optik, 121, 739–749.CrossRef
3.
Zurück zum Zitat Altuncu, A., Siddiqui, A. S., Ellis, A., Newhouse, M. A., & Antos, A. J. (1996). Gain and noise figure characterization of a 68 km long distributed erbium doped fiber amplifier. Electronics Letters, 32(19), 1800–1801.CrossRef Altuncu, A., Siddiqui, A. S., Ellis, A., Newhouse, M. A., & Antos, A. J. (1996). Gain and noise figure characterization of a 68 km long distributed erbium doped fiber amplifier. Electronics Letters, 32(19), 1800–1801.CrossRef
4.
Zurück zum Zitat Hansryd, J., & Andrekson, P. A. (2001). Broad-band continuous-wavepumped fiber optical parametric amplifier with 49-dB gain and wavelength-conversion efficiency. IEEE Photonics Technology Letters, 13(3), 194–196.CrossRef Hansryd, J., & Andrekson, P. A. (2001). Broad-band continuous-wavepumped fiber optical parametric amplifier with 49-dB gain and wavelength-conversion efficiency. IEEE Photonics Technology Letters, 13(3), 194–196.CrossRef
5.
Zurück zum Zitat Ho, M. C., Uesaka, K., Marhic, M. E., Akasaka, Y., & Kazovsky, L. G. (2001). 200-nm-bandwidth fiber optical amplifier combining parametric and Raman gain. Journal of Lightwave Technology, 19(6), 977–981. Ho, M. C., Uesaka, K., Marhic, M. E., Akasaka, Y., & Kazovsky, L. G. (2001). 200-nm-bandwidth fiber optical amplifier combining parametric and Raman gain. Journal of Lightwave Technology, 19(6), 977–981.
6.
Zurück zum Zitat Cappellini, G., & Trillo, S. (1991). Third-order three-wave mixing in single mode fibers: Exact solutions and spatial instability effects. Journal of the Optical Society of America B, Optical Physics, 8(4), 824–838.CrossRef Cappellini, G., & Trillo, S. (1991). Third-order three-wave mixing in single mode fibers: Exact solutions and spatial instability effects. Journal of the Optical Society of America B, Optical Physics, 8(4), 824–838.CrossRef
7.
Zurück zum Zitat Chang, S. H., Kim, S. K., Chung, H. S., & Chu, M. J. (2003). Transient effects and gain-control method in low-noise dispersion-compensating hybrid fiber amplifier. IEEE Photonics Technology Letters, 15(7), 906–908.CrossRef Chang, S. H., Kim, S. K., Chung, H. S., & Chu, M. J. (2003). Transient effects and gain-control method in low-noise dispersion-compensating hybrid fiber amplifier. IEEE Photonics Technology Letters, 15(7), 906–908.CrossRef
8.
Zurück zum Zitat Garrett, L. D., Eiselt, M., Tkach, R. W., Dominic, V., Waarts, R., Giltner, D., & Mehuys, D. (2001). Field demonstration of distributed Raman amplification with 3.8-dB Q-improvement for 5 120-km transmission. IEEE Photonics Technology Letters, 13(2), 157–159.CrossRef Garrett, L. D., Eiselt, M., Tkach, R. W., Dominic, V., Waarts, R., Giltner, D., & Mehuys, D. (2001). Field demonstration of distributed Raman amplification with 3.8-dB Q-improvement for 5 120-km transmission. IEEE Photonics Technology Letters, 13(2), 157–159.CrossRef
9.
Zurück zum Zitat Nielsen, T. N., Stentz, A. J., Rottwitt, K., Vengsarkar, D. S., Chenl, Z. J., Hansen, P. B., Park, J. H., Feder, K. S., Strasser, T. A., Cabot, S., Stulzz, S., Peckham, D. W., Hsu, L., Kan, C. K., Judy, A. F., Sulhoff, J., Park, S. Y., Nelson, L. E., & Gruner-Nielsen, L. (2000). 3.28-Tb/s (82 x 40 Gb/s) transmissionover 3 x 100 km non-zero dispersion fiber using dual C- and L-band hybrid Raman/Erbium-doped inline amplifiers. In Proceedings optical fiber communication conference (OFC) (pp 236–238). Nielsen, T. N., Stentz, A. J., Rottwitt, K., Vengsarkar, D. S., Chenl, Z. J., Hansen, P. B., Park, J. H., Feder, K. S., Strasser, T. A., Cabot, S., Stulzz, S., Peckham, D. W., Hsu, L., Kan, C. K., Judy, A. F., Sulhoff, J., Park, S. Y., Nelson, L. E., & Gruner-Nielsen, L. (2000). 3.28-Tb/s (82 x 40 Gb/s) transmissionover 3 x 100 km non-zero dispersion fiber using dual C- and L-band hybrid Raman/Erbium-doped inline amplifiers. In Proceedings optical fiber communication conference (OFC) (pp 236–238).
10.
Zurück zum Zitat Namiki, S., & Emori, Y. (2000). Ultra broadBand Raman amplifiers pumped and gain equalized by wavelength division multiplexed high power laser diodes. IEEE Journal of Selected Topics in Quantum Electronics, 7(1), 3–16.CrossRef Namiki, S., & Emori, Y. (2000). Ultra broadBand Raman amplifiers pumped and gain equalized by wavelength division multiplexed high power laser diodes. IEEE Journal of Selected Topics in Quantum Electronics, 7(1), 3–16.CrossRef
11.
Zurück zum Zitat Sakamoto, T., Aozasa, S.-I., Yamada, M., & Shimizu, M. (2006). Hybrid fiber amplifiers consisting of cascaded TDFA and EDFA for WDM signals. IEEE Journal of Lightwave Technology, 27(6), 2287–2295.CrossRef Sakamoto, T., Aozasa, S.-I., Yamada, M., & Shimizu, M. (2006). Hybrid fiber amplifiers consisting of cascaded TDFA and EDFA for WDM signals. IEEE Journal of Lightwave Technology, 27(6), 2287–2295.CrossRef
12.
Zurück zum Zitat Chung, H. S., Han, J., Chang, S. H., & Kim, K. (2005). A Raman plus linear optical amplifier as an inline amplifier in a long-haul transmission of 16 channels 10 Gbit/s over single-mode fiber of 1040 km. Journal of Optical Communication, 244, 141–145.CrossRef Chung, H. S., Han, J., Chang, S. H., & Kim, K. (2005). A Raman plus linear optical amplifier as an inline amplifier in a long-haul transmission of 16 channels 10 Gbit/s over single-mode fiber of 1040 km. Journal of Optical Communication, 244, 141–145.CrossRef
13.
Zurück zum Zitat Malhotra, Y., & Kaler, R. S. (2011). Compensating spectral loss variations in EDFA amplifiers for different modulation formats. Optik, 122, 435–439.CrossRef Malhotra, Y., & Kaler, R. S. (2011). Compensating spectral loss variations in EDFA amplifiers for different modulation formats. Optik, 122, 435–439.CrossRef
14.
Zurück zum Zitat Singh, S., & Kaler, R. S. (2008). Placement of optimized semiconductor optical amplifier in fiber optical communication systems. Optik, 119, 296–302.CrossRef Singh, S., & Kaler, R. S. (2008). Placement of optimized semiconductor optical amplifier in fiber optical communication systems. Optik, 119, 296–302.CrossRef
15.
Zurück zum Zitat Bosco, G., Carena, A., Member, I. E. E. E., Curri, V., Gaudino, R., & Poggiolini, P. (2002). On the use of NRZ, RZ, and CSRZ modulation at 40 Gb/s with narrow DWDM channel spacing. IEEE Journal of Lightwave Technology, 20(9), 1694–2170.CrossRef Bosco, G., Carena, A., Member, I. E. E. E., Curri, V., Gaudino, R., & Poggiolini, P. (2002). On the use of NRZ, RZ, and CSRZ modulation at 40 Gb/s with narrow DWDM channel spacing. IEEE Journal of Lightwave Technology, 20(9), 1694–2170.CrossRef
16.
Zurück zum Zitat Hayee, M. I., & Willner, A. E. (1999). NRZ versus RZ in 10–40-Gb/s dispersion-managed WDM transmission systems. IEEE Photonics Technology Letters, 11(8), 991–993.CrossRef Hayee, M. I., & Willner, A. E. (1999). NRZ versus RZ in 10–40-Gb/s dispersion-managed WDM transmission systems. IEEE Photonics Technology Letters, 11(8), 991–993.CrossRef
17.
Zurück zum Zitat Matsuda, T., Naka, A., & Saito, S. (1998). Comparison between NRZ and RZ signal formats for in-line amplifier transmission in the zero-dispersion regime. IEEE Journal of Lightwave Technology, 16(3), 340–348.CrossRef Matsuda, T., Naka, A., & Saito, S. (1998). Comparison between NRZ and RZ signal formats for in-line amplifier transmission in the zero-dispersion regime. IEEE Journal of Lightwave Technology, 16(3), 340–348.CrossRef
18.
Zurück zum Zitat Seo, H. S., Chung, W. J., & Ahn, J. T. (2005). A novel hybrid silica wide-band amplifier covering S + C + L bands with 105-nm bandwidth. IEEE Photonics Technology Letters, 17(9), 1830–1832.CrossRef Seo, H. S., Chung, W. J., & Ahn, J. T. (2005). A novel hybrid silica wide-band amplifier covering S + C + L bands with 105-nm bandwidth. IEEE Photonics Technology Letters, 17(9), 1830–1832.CrossRef
19.
Zurück zum Zitat Chang, S. H., Han, J. S., Chung, H. S., & Kim, K. (2006). Transmission performance comparison of hybrid fiber amplifier. In 5th international conference on optical internet (pp. 274–276). Chang, S. H., Han, J. S., Chung, H. S., & Kim, K. (2006). Transmission performance comparison of hybrid fiber amplifier. In 5th international conference on optical internet (pp. 274–276).
20.
Zurück zum Zitat Arain, S., Shaikh, M. N., Waqas, A., Ali, Q., Chowdhry, B. S., & Themistos, C. (2017). Comparative study and packet error rate analysis of advance modulation schemes for optical wireless communication networks. Wireless Personal Communications, 95, 593–606.CrossRef Arain, S., Shaikh, M. N., Waqas, A., Ali, Q., Chowdhry, B. S., & Themistos, C. (2017). Comparative study and packet error rate analysis of advance modulation schemes for optical wireless communication networks. Wireless Personal Communications, 95, 593–606.CrossRef
21.
Zurück zum Zitat Arain, S., Shaikh, M. N., Waqas, A., Chowdhry, B. S., & Themistos, C. (2016). Performance analysis of advance modulation schemes for free space optical networks. In 2016 18th international conference on transparent optical networks (ICTON), Trento (pp. 1–4). Arain, S., Shaikh, M. N., Waqas, A., Chowdhry, B. S., & Themistos, C. (2016). Performance analysis of advance modulation schemes for free space optical networks. In 2016 18th international conference on transparent optical networks (ICTON), Trento (pp. 1–4).
22.
Zurück zum Zitat Shaikh, M. N., Waqas, A., Chowdhry, B. S., & Umrani, F. A. (2012). Performance and analysis of FSO link availability under different weather conditions in Pakistan. Journal of The Institution of Electrical & Electronics, 76, 1–5. Shaikh, M. N., Waqas, A., Chowdhry, B. S., & Umrani, F. A. (2012). Performance and analysis of FSO link availability under different weather conditions in Pakistan. Journal of The Institution of Electrical & Electronics, 76, 1–5.
Metadaten
Titel
Performance Analysis of Different Modulation Techniques for Super Dense System with RAMAN–EDFA–RAMAN HOA
verfasst von
Chakresh Kumar
Ghanendra Kumar
Publikationsdatum
01.01.2021
Verlag
Springer US
Erschienen in
Wireless Personal Communications / Ausgabe 1/2021
Print ISSN: 0929-6212
Elektronische ISSN: 1572-834X
DOI
https://doi.org/10.1007/s11277-020-08016-4

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