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UMMAC: A multi-channel MAC protocol for underwater acoustic networks

机译:UMMAC:用于水下声学网络的多通道MAC协议

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摘要

In this paper, we propose a multi-channel medium access control (MAC) protocol, named underwater multi-channel MAC protocol (UMMAC), for underwater acoustic networks (UANs). UMMAC is a split phase and reservation based multi-channel MAC protocol which enables hosts to utilize multiple channels via a channel allocation and power control algorithm (CAPC). In UM-MAC, channel information of neighboring nodes is gathered via exchange of control packets. With such information, UMMAC allows for as many parallel transmissions as possible while avoiding using extra time slot for channel negotiation. By running CAPC algorithm, which aims at maximizing the network's capacity, users can allocate their transmission power and channels in a distributed way. The advantages of the proposed protocol are threefold: 1) Only one transceiver is needed for each node; 2) based on CAPC, hosts are coordinated to negotiate the channels and control power in a distributed way; 3) comparing with existing RTS/CTS MAC protocols, UMMAC do not introduce new overhead for channel negotiation. Simulation results show that UMMAC outperforms Slotted floor acquisition multiple access (FAMA) and multi-channel MAC (MMAC) in terms of network goodput (50% and 17% respectively in a certain scenario). Furthermore, UMMAC can lower the end-to-end delay and achieves a lower energy consumption compared to Slotted FAMA and MMAC.
机译:在本文中,我们提出了一种用于水下声网络(UAN)的多通道媒体访问控制(MAC)协议,称为水下多通道MAC协议(UMMAC)。 UMMAC是基于分割阶段和预留的多通道MAC协议,它使主机能够通过通道分配和功率控制算法(CAPC)使用多个通道。在UM-MAC中,通过交换控制分组来收集相邻节点的信道信息。利用这样的信息,UMMAC允许尽可能多的并行传输,同时避免使用额外的时隙进行信道协商。通过运行旨在最大化网络容量的CAPC算法,用户可以以分布式方式分配其传输功率和信道。该协议的优点有三方面:1)每个节点只需要一个收发器; 2)基于CAPC,协调主机协商信道,并以分布式方式控制功率; 3)与现有的RTS / CTS MAC协议相比,UMMAC不会为信道协商带来新的开销。仿真结果表明,在网络吞吐量方面,UMMAC胜过了Slotted Floor获取多路访问(FAMA)和多通道MAC(MMAC)(在某些情况下分别为50%和17%)。此外,与时隙式FAMA和MMAC相比,UMMAC可以降低端到端延迟,并降低能耗。

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