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The local delay in underwater acoustic sensor networks

机译:水下声学传感器网络的局部延迟

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Delay performance is an important indicator in underwater acoustic sensor networks (UASNs), where both propagation delay and retransmission should be considered. However, the current literatures usually adopt the oversimplified disclike interference model and evaluate the delay performance by system-level simulations. Therefore, in this paper, we propose an analytical model to evaluate the local delay with slotted ALOHA scheduling. Due to the unique 3D characteristics and randomness of the UASNs, the UASNs are modeled as a 3D spatial homogeneous Poisson point process and a more practical interference model in underwater environment is proposed. Based on the statistical characteristics of the signal-interference-plus-noise ratio, we derive a computable representations for the local delay and its upper bound. Simulation results corroborate the tightness of the bound and verify our analysis.
机译:延迟性能是水下声学传感器网络(UASN)中的重要指标,其中应该考虑传播延迟和重传。然而,目前的文献通常采用超简化的披露干扰模型,并通过系统级模拟评估延迟性能。因此,在本文中,我们提出了一种分析模型来评估局部延迟与开槽Aloha调度。由于UASN的唯一3D特征和随机性,UASN被建模为3D空间均匀泊松点过程,提出了水下环境中更实际的干扰模型。基于信号干扰的统计特征,我们导出了局部延迟及其上限的可计算表示。仿真结果证实了绑定的紧张性并验证了我们的分析。

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