Performance analysis of OSSK-UWOC systems considering pointing errors and channel estimation errors

Guixuan Ding, Xing Du,Hao Du,Sheng Wang, Hui Feng,Guoning Xu, Zhenyang Xiong,Zhongzhen Jia,Yongxiang Li

OPTICS EXPRESS(2024)

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摘要
In this paper, we present the bit error rate (BER) performance of the underwater wireless optical communication (UWOC) systems using the optical space shift keying (OSSK) on the gamma -gamma turbulent fading channel, which also considers pointing errors and channel estimation errors. Firstly, we develop the new expressions for the probability density function (PDF) based on the Gamma -Gamma distribution with error factors. Subsequently, we analyze the statistical characteristic of the difference in attenuation coefficients between two channels in the OSSK system, by which we provide analytical results for evaluating the average BER performance. The results show that the effective improvement of spectral efficiency (SE) and BER performance is achieved by rationally allocating the number of lasers and detectors in the system. The OSSK-UWOC system performs better when a narrow beam waist is used. Furthermore, the presence of channel estimation error brings the BER performance advantage to the system, and the system with a high channel estimation error (rho = 0.7) shows a 4 dB improvement in signal-to-noise ratio (SNR) gain compared to the system with a low channel estimation error (rho = 0.95). The findings in this paper can be used for the UWOC system design. (c) 2024 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement
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