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Effects of topology information on routing in contention-based underwater acoustic networks

机译:拓扑信息对竞争水下后声网络路由的影响

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Underwater acoustic networks is an enabling technology for a range of applications such as mine countermeasures, intelligence and reconnaissance. Common for these applications is a need for robust information distribution while minimizing energy consumption. In terrestrial wireless networks topology information is often used to enhance the efficiency of routing, in terms of higher capacity and less overhead. In this paper we asses the effects of topology information on routing in underwater acoustic networks. More specifically, the interplay between long propagation delays, contention-based channels access and dissemination of varying degrees of topology information is investigated. The study is based on network simulations of a number of network protocols that make use of varying amounts of topology information. The results indicate that, in the considered scenario, relying on local topology information to reduce retransmissions may have adverse effects on the reliability. The difficult channel conditions and the contention-based channels access methods create a need for an increased amount of diversity, i.e., more retransmissions. In the scenario considered, an opportunistic flooding approach is a better, both in terms of robustness and energy consumption.
机译:水下声学网络是一系列应用的启用技术,如矿山对策,智力和侦察。对于这些应用程序的常见是需要稳健的信息分布,同时最小化能量消耗。在地面无线网络中,拓扑信息通常用于提高路由的效率,就高容量和更少的开销。在本文中,我们判断拓扑信息关于水下声学网络路由的影响。更具体地,研究了长传播延迟,基于竞争的信道访问和传播不同程度的拓扑信息之间的相互作用。该研究基于许多网络协议的网络仿真,该协议利用不同量的拓扑信息。结果表明,在所考虑的场景中,依赖于当地拓扑信息来减少重传可能对可靠性产生不利影响。困难的信道条件和基于竞争的信道访问方法创建了增加量的多样性,即更多重新传输。在考虑方案中,在鲁棒性和能耗方面,机会洪水方法更好。

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