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Link Scheduling in a Single Broadcast Domain Underwater Networks

机译:单个广播域水下网络中的链路调度

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摘要

Due to the high propagation latency and high power consumption of acoustic communications, scheduling techniques designed for terrestrial radio-based systems, may not be suitable for underwater acoustic sensor networks (UWASN). In this paper, we consider how to time schedule each link in a single broadcast domain. We show that, unlike its terrestrial RF counterpart, this problem is NP-complete, and the hard-to-approximate ratio is presented. Due to the intractability and inflexibility of centralized scheduling policies, and the high communication energy overhead of reservation-based strategies, we further investigate the performance of an ALOHA-like access scheme, which is distributed, randomized and requires no topology knowledge. According to our analysis, although the random scheduling policy that picks transmission times uniformly in a given interval is throughput optimal for terrestrial radio-based systems, it performs poorly in underwater acoustic networks. We thereby seek for the throughput-optimal, distributed random policy by solving a nonlinear optimization problem. We present an extensive comparison between this policy and the uniform one, with respect to different packet lengths, scheduling length, and network density. We show that the optimal solution offers substantial improvements in throughput, particularly for long packets.
机译:由于声学通信的高传播等待时间和高功耗,为基于地面无线电的系统设计的调度技术可能不适用于水下声学传感器网络(UWASN)。在本文中,我们考虑如何在单个广播域中安排每个链接的时间。我们表明,与其地面射频对应物不同,此问题是NP完全问题,并且提出了难以估计的比率。由于集中式调度策略的难处理性和灵活性,以及​​基于预留的策略的高通信能量开销,我们进一步研究了一种类似ALOHA的访问方案的性能,该方案是分布式,随机化且不需要拓扑知识。根据我们的分析,尽管在给定时间间隔内均匀地选择传输时间的随机调度策略对于基于地面无线电的系统而言吞吐量最佳,但在水下声学网络中却表现不佳。因此,我们通过解决非线性优化问题来寻求吞吐量最优的分布式随机策略。我们针对不同的数据包长度,调度长度和网络密度在此策略和统一策略之间进行了广泛的比较。我们表明,最佳解决方案可显着提高吞吐量,特别是对于长数据包。

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