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A Cross-Layer MAC Protocol for Underwater Acoustic Sensor Networks

机译:水下声传感器网络的跨层MAC协议

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摘要

One of the major challenges for the deployment of underwater acoustic sensor networks is the development of a medium access control (MAC) protocol catering for the harsh underwater environment. In particular, an underwater MAC protocol should provide high end-to-end throughput, low channel access delay, and fair share of the scarce network bandwidth. In this paper, a cross-layer MAC protocol is proposed. It interacts with a price-based rate allocation scheme at the network layer. To accurately reflect the clique constraint of the wireless medium, the clique-based price is generalized to act as the congestion signal, which controls the end-to-end rates of multihop flows. The MAC protocol then schedules contention-free packet transmissions of single-hop subflows in each maximum clique. Both the MAC protocol and rate allocation algorithm are simple and direct, thus owning low computational complexity. Through analysis and simulation, we show that the proposed MAC protocol enables multihop flows to acquire the max-min fair share of the network bandwidth from the end-to-end perspective.
机译:部署水下声传感器网络的主要挑战之一是开发一种适应恶劣的水下环境的媒体访问控制(MAC)协议。特别是,水下MAC协议应提供较高的端到端吞吐量,较低的通道访问延迟以及公平的稀缺网络带宽份额。本文提出了一种跨层MAC协议。它在网络层与基于价格的速率分配方案交互。为了准确反映无线媒体的派系约束,一般将基于派系的价格用作拥塞信号,以控制多跳流的端到端速率。然后,MAC协议在每个最大派系中调度单跳子流的无竞争数据包传输。 MAC协议和速率分配算法都很简单直接,因此具有较低的计算复杂度。通过分析和仿真,我们证明了所提出的MAC协议使多跳流能够从端到端的角度获取网络带宽的最大-最小公平份额。

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