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UPMAC: A Localized Load-Adaptive MAC Protocol for Underwater Acoustic Networks

机译:UPMAC:用于水下声网的本地化负载自适应MAC协议

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摘要

Unlike terrestrial networks that mainly rely on radio waves for communications, underwater networks utilize acoustic waves, which have comparatively lower loss and longer range in underwater environments. However, acoustic waves incurs long propagation delays that typically lead to low throughput and higher energy cost of transmission than reception. Thus, collision and retransmission should be reduced in order to reduce energy cost and improve throughput. Receiver-based protocols, like receiver-initiated packet train and cluster-based on-demand time sharing, can significantly reduce collision and retransmission. But they are either time-consuming or energy consuming because nodes are controlled to turn into receiver mode by control packets or a timer regardless of load. In this paper, we propose an underwater practical MAC protocol (UPMAC), whose objective is to be adaptive to the network load conditions by providing two modes (high and low load modes) and switching between them based on different offered load. Turn-around time overhead is reduced and it is less vulnerable to control packet corruption by using the technique of piggyback. UPMAC uses receiver-based approach in high load mode, leading to a low data collision rate in both one-hop and multihop situation. Extensive simulations show that UPMAC can achieve better performance in both general and Sea Swarm topologies.
机译:与主要依靠无线电波进行通信的地面网络不同,水下网络利用声波,在水下环境中,声波的损耗相对较低,而射程较长。但是,声波会导致较长的传播延迟,这通常会导致吞吐量比接收低,并且发射的能源成本要高于接收。因此,应减少冲突和重传,以减少能源成本并提高吞吐量。基于接收器的协议,例如接收器启动的数据包序列和基于集群的按需时间共享,可以显着减少冲突和重传。但是它们既费时又耗能,因为无论负载如何,都通过控制数据包或计时器将节点控制为进入接收器模式。在本文中,我们提出了一种水下实用MAC协议(UPMAC),其目的是通过提供两种模式(高和低负载模式)并根据提供的不同负载在它们之间进行切换来适应网络负载条件。通过使用time带技术,可以减少周转时间开销,并且不易受到控制数据包损坏的影响。 UPMAC在高负载模式下使用基于接收器的方法,从而在单跳和多跳情况下导致较低的数据冲突率。大量的仿真表明,UPMAC可以在常规拓扑和Sea Swarm拓扑中实现更好的性能。

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