Home| Contact Us| New Journals| Browse Journals| Journal Prices| For Authors|

Print ISSN:
Online ISSN:


  About JDP
  DLINE Portal Home
Home
Aims & Scope
Editorial Board
Current Issue
Next Issue
Previous Issue
Sample Issue
Upcoming Conferences
Self-archiving policy
Alert Services
Be a Reviewer
Publisher
Paper Submission
Subscription
Contact us
 
  How To Order
  Order Online
Price Information
Request for Complimentary
Print Copy
 
  For Authors
  Guidelines for Contributors
Online Submission
Call for Papers
Author Rights
 
 
RELATED JOURNALS
Journal of Digital Information Management (JDIM)
Journal of Multimedia Processing and Technologies (JMPT)
International Journal of Web Application (IJWA)

 

 
Journal of Data Processing
 

Measuring the Outage Probability of the System Over the Shadowed Rician Fading Satellite-relay Link and Rayleigh Fading Relay-user Channels
Aleksandra M. Cvetkovic, Jelena A. Anastasov and Nemanja M. Zdravkovic
University of Niš, Faculty of Electronic Engineering Aleksandra Medvedeva 14, 18000 Nis Serbia
Abstract: In this paper, we have tested the outage performance of satellite terrestrial multiuser network using the fixed gain ample relays. We have arrived at the new derivation of cumulative distribution function of the highest end-to-end signalto- noise ratio (SNR) with the help of the opportunistic scheduling strategy. We have experimented the outage probability of the system over the shadowed Rician fading satellite-relay link and Rayleigh fading relay-user channels. Using simulations, we have measured the compact numerical results and analysed the impact of the number of service users and also the effect of mean SNR values.
Keywords: Hybrid Satellite-terrestrial Network, Multiusers, Opportunistic Sheduling, Outage Probability, Relaying Technology Measuring the Outage Probability of the System Over the Shadowed Rician Fading Satellite-relay Link and Rayleigh Fading Relay-user Channels
DOI:https://doi.org/10.6025/jdp/2022/12/1/16-24
Full_Text   PDF 1.85 MB   Download:   93  times
References:

[1] Chini, P., Giambene, G., Kota, S. (2009). A survey on mobile satellite systems, Int. J. Satellite Commun. Netw., 28 (1) 9–57, January/February.
[2] Dohler, M., Li, Y. (2010). Cooperative Communications: hardware, channel & phy, John Wiley & Sons, United Kingdom.
[3] Chen, C.-J., Wang, L.-C. (2006). A unified capacity analysis for wireless systems with joint multiuser scheduling and antenna diversity in Nakagami fading channels, IEEE Trans. Commun., 54 (3) 469–478, March.
[4] Yang, N., Elkashlan, M., Yuan, J. (2010). Outage probability of multiuser relay networks in Nakagami-m fading channels, IEEE Trans. Veh. Technol., 59 (5) 2120–2132, June.
[5] Cvetkovic, A. M., Anastasov, J., Panic, S., Stefanovic, M., Milic, D. (2011). Performance of dual-hop relaying over shadowed Ricean fading channels, J. Elect. Eng., 62 (4) 244–248, July.
[6] Bhatnagar, M. R., Arti, M. K. (2013). Performance analysis of hybrid satellite terrestrial FSO cooperative system, IEEE Photon. Technol. Lett., 25 (22) 2197–2200, September.
[7] Iqbal, A., Ahmed, K. M. (2011). A hybrid satellite-terrestrial cooperative network over non identically distributed fading channels, J. Commun., 6 (7) 581–589, October.
[8] Bhatnagar, M. R., Arti, M. K. (2013). Performance analysis of AF based hybrid satellite-terrestrial cooperative network over generalized fading channels, IEEE Commun. Lett., 17 (10) 1912–1915, October.
[9] An, K., Lin, M., Ouyang, J., Huang, Y., Zheng, G. (2014). Symbol error analysis of hybrid satellite-terrestrial cooperative networks with cochannel interference, IEEE Commun. Lett., 18 (11) 1947– 1950, November.
[10] Arti, M. K., Bhatnagar, M. R. (2014). Beamforming and combining in hybrid satellite-terrestrial cooperative systems, IEEE Commun. Lett., 18 (3) 483–486, March.
[11] An, K., Lin, M., Liang, T. (2015). On the Performance of Multiuser Hybrid Satellite-Terrestrial Relay Networks With Opportunistic Scheduling, IEEE Commun. Lett., 19 (10) 1722-1725, October.
[12] Abdi, A., Lau, W., Alouini, M.-S., Kaveh, M.(2003). A new simple model for land mobile satellite channels: first and second order statistics, IEEE Trans. Wireless Commun., 2 (3) 519–528, May.
[13] Gradshteyn, I. S., Ryzhik, I. M. (2007). Table of Integrals, Series, and Products, 7th ed. San Diego, CA, USA: Academic.-
[14] The Wolfarm Functions Site, 2008. [Online] Available: http:/functions.wolfarm.com
[15] Miridakis, N. I., Vergados, D. D., Michalas, A. (2015). Dual-Hop Communication Over a Satellite Relay and Shadowed Rician Channels, IEEE Trans. Veh. Technol., 64 (9) 4031-4040, September.


Home | Aim & Scope | Editorial Board | Author Guidelines | Publisher | Subscription | Previous Issue | Contact Us |Upcoming Conferences|Sample Issues|Library Recommendation Form|

 

Copyright © 2011 dline.info