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Throughput of Underwater Wireless Ad Hoc Networks With Random Access: A Physical Layer Perspective

机译:随机访问的水下无线Ad Hoc网络的吞吐量:物理层的角度

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Due to frequency selectivity, long propagation delay caused by low speed of sound, and fast channel variation, multiple-access protocols that work well in terrestrial networks may not perform as well in underwater environment. We take a physical-layer approach and investigate frequency-selective underwater channels with uncoordinated multiple bursty transmissions. We first derive the statistical distribution of the interference as seen by a typical receiver, considering burstiness of interference transmissions, packet length, and spatial distributions of the interferers. We then derive expressions for the probability density functions of the frequency-dependent signal-to-interference-and-noise ratio (SINR). Expressions for the outage probability of a typical link between two nodes are obtained in the frequency-selective scenarios and the flat-fading special cases. The outage probabilities depend on the bursty transmission probability and the number of interfering transmitters. Previous expressions in the literature on outage probability for flat fading channels and interference-limited systems can be recovered as special cases of our results. Analysis on the throughput of network is provided. Optimization over the number of nodes and bursty transmission probability is performed to maximize the network throughput. Simulation results are presented, which validate the theoretical results and illustrate typical features of the interference in an underwater network.
机译:由于频率的选择性,低速的声音导致的长传播延迟以及快速的频道变化,在陆地网络中运行良好的多路访问协议在水下环境中的性能可能不佳。我们采用物理层方法,研究具有不协调多次突发传输的频率选择性水下通道。我们首先得出典型接收机所看到的干扰的统计分布,其中考虑了干扰传输的突发性,数据包长度和干扰源的空间分布。然后,我们得出与频率相关的信噪比(SINR)的概率密度函数的表达式。在频率选择方案和平坦衰落的特殊情况下,获得了两个节点之间典型链路中断概率的表达式。中断概率取决于突发传输概率和干扰发射机的数量。可以恢复文献中有关平坦衰落信道和干扰受限系统中断概率的先前表述,作为我们结果的特殊情况。提供了对网络吞吐量的分析。对节点数量和突发传输概率进行优化,以最大化网络吞吐量。给出了仿真结果,验证了理论结果并说明了水下网络中干扰的典型特征。

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