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A Two-dimensional Strategy of Adaptive Modulation and Coding for Underwater Acoustic Communication Systems

机译:水下声通信系统的自适应调制与编码二维策略

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Underwater acoustic (UWA) channels are nearly the harshest wireless channels in nature, due to the severe characteristics of the oceanic environment, namely fast spatially and temporally variations. Therefore, considering that one modulation and coding scheme (MCS) is generally optimized for a specific channel condition, it will underperform when the channel statistics change. In this paper, we focus on the adaptive modulation and coding (AMC) technology and propose a two-dimensional (two-D) strategy of AMC for underwater acoustic communications (UAC). This strategy uses the joint function of SNR and the time-delay spread as the switching metric for different MCSs. From our simulation results, such a two-D approach has superior performance than the method with a fixed MCS and the widely used SNR based AMC algorithm in terms of reliability and system efficiency.
机译:由于海洋环境的严峻特征,即快速的时空变化,水下声学(UWA)信道几乎是自然界中最苛刻的无线信道。因此,考虑到通常针对特定的信道条件对一种调制和编码方案(MCS)进行了优化,因此当信道统计信息发生变化时,它的性能将下降。在本文中,我们将重点放在自适应调制和编码(AMC)技术上,并提出了一种用于水下声通信(UAC)的AMC的二维(二维)策略。该策略将SNR和时延扩展的联合功能用作不同MCS的切换指标。从我们的仿真结果来看,在可靠性和系统效率方面,这种二维方法比具有固定MCS和广泛使用的基于SNR的AMC算法的性能要好。

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