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Tight Performance Bounds of Multihop Fair Access for MAC Protocols in Wireless Sensor Networks and Underwater Sensor Networks

机译:无线传感器网络和水下传感器网络中MAC协议的多跳公平接入的严格性能界限

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This paper investigates the fundamental performance limits of medium access control (MAC) protocols for particular multihop, RF-based wireless sensor networks and underwater sensor networks. A key aspect of this study is the modeling of a fair-access criterion that requires sensors to have an equal rate of underwater frame delivery to the base station. Tight upper bounds on network utilization and tight lower bounds on the minimum time between samples are derived for fixed linear and grid topologies. The significance of these bounds is two-fold: First, they hold for any MAC protocol under both single-channel and half-duplex radios; second, they are provably tight. For underwater sensor networks, under certain conditions, we derive a tight upper bound on network utilization and demonstrate a significant fact that the utilization in networks with propagation delay is larger than that in networks with no propagation delay. The challenge of this work about underwater sensor networks lies in the fact that the propagation delay impact on underwater sensor networks is difficult to model. Finally, we explore bounds in networks with more complex topologies.
机译:本文研究了针对特定的多跳,基于RF的无线传感器网络和水下传感器网络的媒体访问控制(MAC)协议的基本性能限制。这项研究的一个关键方面是对公平访问标准进行建模,该标准要求传感器将相等的水下帧传输速率传输给基站。对于固定的线性和网格拓扑,得出了网络利用率的严格上限和样本之间最小时间的严格下限。这些界限的意义有两个方面:首先,它们适用于单信道和半双工无线电下的任何MAC协议。第二,他们是紧密的。对于水下传感器网络,在某些条件下,我们得出了网络利用率的严格上限,并证明了一个重要事实,即具有传播延迟的网络的利用率要大于没有传播延迟的网络的利用率。这项有关水下传感器网络的工作面临的挑战在于以下事实:传播延迟对水下传感器网络的影响很难建模。最后,我们探索具有更复杂拓扑的网络中的边界。

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