研究目的
To investigate the channel estimation (CE) problem in an underwater visible light communication (UVLC) system invoking fractionally-sampled optical orthogonal frequency division multiplexing (FS-OOFDM) and to design a low-complexity adaptive CE algorithm that can handle the time-varying, location-dependent non-stationary propagation environment of UVLC scenarios.
研究成果
The proposed SMF-CE and ASMF-CE algorithms offer superior performance in channel estimation for UVLC systems with FS-OOFDM, maintaining reduced computational complexity compared to conventional LMMSE schemes. The adaptive version effectively handles imperfect a priori knowledge of channel and noise statistics, making it suitable for practical UVLC scenarios.
研究不足
The study assumes a low UE mobility and does not fully address the impact of high mobility on the channel estimation performance. Additionally, the proposed algorithms' performance under extreme underwater conditions (e.g., very strong turbulence) is not extensively evaluated.