Average symbol error rate of free-space optical communications using SC-QAM over strong atmospheric turbulence and pointing errors

Author(s):  
Ha Duyen Trung ◽  
Ngo Van Dinh ◽  
Do Trong Tuan
2020 ◽  
Author(s):  
Muhammad Nabeel Shahid ◽  
Furqan Haider Qureshi ◽  
Shahzad Amin Sheikh ◽  
Qasim Umar Khan ◽  
Muhammad Zeeshan

Abstract In recent years, free-space optical (FSO) technology has gained fame in communication systems due to its high data rates and license-free feature. Triangular quadrature amplitude modulation (TQAM) is an efficient modulation scheme that uses even bits per symbol, and it has a low average symbol error rate (ASER) than square quadrature amplitude modulation (SQAM). In this paper, we theoretically investigate the performance of subcarrier triangular quadrature amplitude modulation (SC-TQAM) corrupted by atmospheric turbulence in the presence of pointing errors (P.E) in FSO communications. We have considered boresight displacement, P.E effect, and atmospheric turbulence. To represent the atmospheric turbulence we consider Log-normal, Rayleigh and Rician distributions which exhibit weak, moderate and strong weather effects. The P.E is employed using Rayleigh and Rician distribution that incorporates zero and non-zero boresight displacement respectively. The moment generating functions of these models have been derived. P.E is modeled using an optical beam radius and receiver aperture radius. The combination of these parameters will help enhance the average symbol error rate (ASER). Furthermore, we have derived an analytical expression that is used to develop numerical results. The ASER performance is observed against average received irradiance, optical beam radius, P.E standard deviation and receiver aperture radius. In the end, the ASER performance is evaluated against SNR and Monte Carlo simulations are performed which validates the theoretical results.


2013 ◽  
Vol 15 (5) ◽  
pp. 055408 ◽  
Author(s):  
Ming Sheng ◽  
Peng Jiang ◽  
Qingsong Hu ◽  
Qin Su ◽  
Xiu-xiu Xie

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