Startseite Error Rate Analysis of Phase Sampled RZ-GMSK over Turbulent FSO Channel
Artikel
Lizenziert
Nicht lizenziert Erfordert eine Authentifizierung

Error Rate Analysis of Phase Sampled RZ-GMSK over Turbulent FSO Channel

  • Pritam Keshari Sahoo ORCID logo EMAIL logo
Veröffentlicht/Copyright: 17. Oktober 2018
Veröffentlichen auch Sie bei De Gruyter Brill

Abstract

In this paper authors have studied the error performance of an ISI compensating modulation technique called phase sampled RZ-GMSK. The numerical results are derived suitably for optical wireless back-haul networks under log-normal turbulence fading. It is seen that the proposed modulation technique outperforms other techniques at higher turbulence and for high speed data transmission.

References

1. Ghassemlooy Z, Popoola W, Rajbhandari S. Optical wireless communications: system and channel modeling with MATLAB. New York, NY, USA: CRC, 2012.Suche in Google Scholar

2. Jing M, Jiang Y, Siyuan Y, Tan L, Wenhe D. Packet error rate analysis of OOK, DPIM and PPM modulation schemes for ground to satellite optical communications. Opt Commun. 2010;283:237–42.10.1016/j.optcom.2009.10.007Suche in Google Scholar

3. Liu H, Liao R, Wei Z, Hou Z, Qiao Y. BER analysis of a hybrid modulation scheme based on PPM and MSK subcarrier intensity modulation. IEEE Photonics J. 2015;7:7201510–20.10.1109/JPHOT.2015.2449265Suche in Google Scholar

4. Elnoubi SM. Analysis of GMSK with discriminator detection in mobile radio channels. IEEE Trans Vehicular Technol. 1986;35:71–6.10.1109/VTC.1986.1623417Suche in Google Scholar

5. MurotaK, HiradeK. GMSK modulation for digital mobile radio telephony. IEEE Trans On Commun. 1981;COM-29:7.10.1109/TCOM.1981.1095089Suche in Google Scholar

Received: 2018-09-30
Accepted: 2018-10-07
Published Online: 2018-10-17
Published in Print: 2022-01-27

© 2018 Walter de Gruyter GmbH, Berlin/Boston

Artikel in diesem Heft

  1. Frontmatter
  2. Amplifiers
  3. Signal Wavelength Effect on Overmodulation in Thulium Doped Fiber Amplifiers with Amplified Spontaneous Emission: A Simulink Pedestal
  4. Devices
  5. Evaluating RSOA Performance with Optical Logic Gates at 100 Gbps Data Rate
  6. An All Optical NAND Gate Using Nonlinear Photonic Crystal Ring Resonators
  7. CO-OFDM System with 16-QAM Subcarrier Modulation Using Reconfigurable Optical Add Drop Multiplexer
  8. Fibers
  9. Mode Conversion Based on Lateral Misalignment between Two Multi-Ring Core Fibers for MDM System
  10. Networks
  11. Effect of Fiber-Optics Nonlinearities in Long Haul and Ultra-High Speed DWDM Optical Transmission Networks at 10, 40 and 100 Gb/s Ultra-High Speed Data Rates
  12. Hardware-Based Framework of Photonic Reservoir Computing with Coupled SOAs Network
  13. Performance of Hybrid OCDMA/WDM Scheme Under DPSK and QPSK Modulation Using Spectral Direct Detection Technique for Optical Communication Networks
  14. Transmission Performance Comparison of 16*100 Gbps Dense Wavelength Division Multiplexed Long Haul Optical Networks at Different Advance Modulation Formats under the Influence of Nonlinear Impairments
  15. On the Performance of Protected and Online Routing Enabled Translucent Space Division Multiplexing-Based Elastic Optical Networks
  16. A Novel Multicast Scheme with Grooming for Quality of Service (QoS) Provision and Resource Optimization over Optical Label Switching (OLS) Networks
  17. DHbLP: A Novel Technique for Survivability in Optical Networks
  18. Systems
  19. Performance Evaluation of Hybrid FSO-SACOCDMA System under Different Weather Conditions
  20. Error Rate Analysis of Phase Sampled RZ-GMSK over Turbulent FSO Channel
  21. Enhanced Performances of W/S SAC-OCDMA System Using LDPC Code
  22. 320 Gbps Free Space Optic Communication System Deploying Ultra Dense Wavelength Division Multiplexing and Polarization Mode Division Multiplexing
  23. Performance Analysis of Duobinary and CSRZ Modulation Based Polarization Interleaving for High-Speed WDM-FSO Transmission System
  24. Investigation on Pointing Error in Multi-Beam Free Space Optical Communication System
  25. Enhancing Performance of Hybrid FSO/Fiber Optic Communication Link Utilizing Multi-Channel Configuration
Heruntergeladen am 2.10.2025 von https://www.degruyterbrill.com/document/doi/10.1515/joc-2018-0179/html?lang=de
Button zum nach oben scrollen