研究目的
To design and experiment with a time-synchronization algorithm in real conditions, dedicated to synchronize precisely two underwater nodes by using decoder information such as Doppler scaling estimation and timestamping.
研究成果
The paper concludes that the pure tone approach for Doppler scale estimation outperforms other methods, achieving good time-synchronization accuracy in various scenarios. However, the algorithm's performance is affected by environmental factors and the duration of the synchronization procedure.
研究不足
The study acknowledges the challenges of underwater acoustic communication, including high latency, Doppler effects, and node mobility, which can affect synchronization accuracy. The performance of the synchronization algorithm may decrease with large message exchange procedures due to changing water channel medium characteristics.