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Performance Analysis of Selective Mapping in Underwater Acoustic Orthogonal Frequency Division Multiplexing Communication System

机译:水下声学正交频分复用通信系统选择性映射的性能分析

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Under-Water Acoustic (UWA) communication networks are commonly formed by associating various independent UWA vehicles and transceivers connected to the bottom of the sea with battery-operated power modems. Orthogonal Frequency Division Multiplexing (OFDM) is one of the most vital innovations for UWA communications, having improved data rates and the ability to transform fading channels into flat fading. Moreover, OFDM is more robust on Inter-Symbol and Inter-Carrier Interferences (ISI and ICI respectively). However, OFDM technology suffers from a high Peak to Average Power Ratio (PAPR), resulting in nonlinear distortions and higher Bit Error Rates (BERs). Saving power of battery deployed modems is an important necessity for sustainable underwater communications. This paper studies PAPR in UWA OFDM communications, employing Selective Mapping (SLM) as a tool to mitigate PAPR. The proposed SLM with the oversampling factor method proves to be less complex and more efficient. Simulation results indicate that SLM is a promising PAPR reduction method for UWA OFDM communications reducing BER.
机译:水下声学(UWA)通信网络通常通过将连接到海底的各种独立的UWA车辆和电池供电调制解调器相关联而形成。正交频分复用(OFDM)是UWA通信最重要的创新之一,具有改进的数据速率和将衰落通道转换为平坦衰落的能力。此外,OFDM在符号间和载体间干扰(ISI和ICI)上更加强大。然而,OFDM技术遭受高峰到平均功率比(PAPR),导致非线性失真和更高的误差速率(BERs)。节省电池部署的调制解调器的功率是可持续水下通信的重要必需品。本文研究了UWA通信的PAPR,采用选择性映射(SLM)作为减轻PAPR的工具。具有过采样因子方法的提议的SLM证明是不太复杂和更高效的。仿真结果表明,SLM是UWA OFDM通信减少BER的有希望的PAPR减少方法。

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