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节点预约方式的水声通信网MAC协议设计 被引量:2

A node reservation MAC protocol for an underwater acoustic network
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摘要 针对广泛应用于水声通信网的MACAW(medium access with collision auoidance for wireless)协议在多跳通信延时严重的问题,在传统握手协议的基础上,提出了节点预约的方法.该方法通过多跳转发的握手信号CTS预约处于通信链路上的下级节点,并通过复用上级节点的握手信号CTS(clear to send)及数据信号DATA,形成一种流水线式的传输协议.仿真结果表明:在多跳网络通信中,该协议与传统的MACAW相比,在能耗变化较小的情况下,时延性能有较大幅度的提高,适用于移动节点通信、灾难预警、战时侦测等需要快速反应的水声通信应用场景. In order to solve the serious latency problem of traditional MACAW(medium access with collision auoidance for wireless) protocol which has been widely used in multi-hop underwater acoustic networks,a node reservation protocol which was developed from the idea of handshaking protocols was introduced.In this protocol,latter nodes on the communication link were reserved by CTS(clear to send) which is retransmitted by intermediate nodes.At the same time,CTS and DATA of previous nodes were reused to form the pipelining transmission.Simulation results show that network latency in this protocol is increased significantly compared to traditional MACAW,while energy consumption does not noticeably rise.Therefore,the protocol will be applicable in quick reaction application in underwater circumstances,such as mobile communication,disaster warning,and battlefield surveillance.
出处 《哈尔滨工程大学学报》 EI CAS CSCD 北大核心 2012年第4期432-437,共6页 Journal of Harbin Engineering University
基金 国家863计划基金资助项目(2009AA093601)
关键词 水声通信网 MAC层 MACAW 时延特性 节点预约方式 underwater acoustic network MAC layer medium access with collision auoidance for wireless latency property node reservation protocol
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  • 1应可珍,陈庆章.关于水基网的设想:概念、相关技术和研究热点[J].微机发展,2003,13(A2):121-122.
  • 2CHAO C M, WANG Y E. A multiple rendezvous multi- channel MAC protocol for underwater sensor networks [ C ]//IEEE Wireless Communications and Networking Conference (WCNC). Sydney, Australia,2010 : 1 -6.
  • 3AZAR Z, MANZURI M T. A latency-tolerant MAC protocol for underwater acoustic sensor networks [ C ]// International Conference on Control, Automation and Systems. Gyeonggi- do, Korea, 2010: 849-854.
  • 4XIE Peng, CUI Junhong. R-MAC: an energy-efficient MAC protocol for underwater sensor networks [ C ]// International Conference on Wireless Algorithms, Systems and Applica- tions. Chicago, USA, 2007 : 187-198.
  • 5NGUYEN H T, SHIN S Y, PARK S H. State-of-the-art in MAC protocols for underwater acoustics sensor networks[ J]. LNCS, 2007,4809 : 482-493.
  • 6ABRAMSON N. The ALOHA system : another alternative for computer communications [ C ]// AFIPS Conference Pro- ceedings. New York, USA, 1970 : 281-285.
  • 7RICE J. Seaweb acoustic communication and navigation net- works [ C ]// Proceedings of the International Conference on Underwater Acoustic Measurements: Technologies & Re- suits. Heraklion, Greece, 2005.
  • 8FOO K Y, ATKINS P R, ATKINS P R, et al. A routing and channel access approach for an Adhoc underwater a- coustic network [ C ]//MT1S/IEEE TECHNO-OCEAN 04. Piscataway, USA, 2004:789-795.
  • 9TAN H P, SEAN W K G, DOYLE L. A multi-hop ARQ protocol for underwater acoustic networks [ C ]//Proceedings of OCEANS 2007. Aberdeen, Scotland, 2007 : 1-6.
  • 10HARRIS A F, STOJANOVIC M, ZORZI M. Idle-time en- ergy savings through wake-up modes in underwater acoustic networks [ J ]. Ad noc Networks, 2009,7 (4) :770-777.

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