BANMAC:用于体域网络中可靠通信的机会性MAC协议

K. S. Prabh, F. Royo, S. Tennina, T. Olivares
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引用次数: 48

摘要

我们考虑身体区域网络(BAN)中的可靠通信,其中放置在人体上的一组节点使用无线链路连接。为了保持比吸收率(SAR)尽可能低的健康安全原因,这些网络在低发射功率下运行,然而,众所周知,这是容易出错的。已经观察到,在移动的人的BAN节点上的接收信号强度(RSS)的波动呈现一定的规律,并且这些波动的幅度是显著的(5 - 20 dB)。在本文中,我们提出了BANMAC,这是一个MAC协议,它可以监测和预测频道波动,并在RSS可能更高时随机调度传输。MAC协议能够提供差异化服务,并在附近多个共址ban的情况下解决同信道干扰。我们报告了BANMAC与IEEE 802.15.4协议栈集成的设计和实现细节。我们给出的实验数据表明,BANMAC的丢包率(PLR)明显低于IEEE 802.15.4 MAC,对于相同的PLR, BANMAC的功耗也明显低于IEEE~802.15.4 MAC。对于同址网络,集中式协调机制找到无冲突信道分配的收敛时间约为1 s,分布式协调机制的收敛时间约为4 s。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
BANMAC: An Opportunistic MAC Protocol for Reliable Communications in Body Area Networks
We consider reliable communications in Body Area Networks (BAN), where a set of nodes placed on human body are connected using wireless links. In order to keep the Specific Absorption Rate (SAR) as low as possible for health safety reasons, these networks operate in low transmit power regime, which however, is known to be error prone. It has been observed that the fluctuations of the Received Signal Strength (RSS) at the nodes of a BAN on a moving person show certain regularities and that the magnitude of these fluctuations are significant (5 - 20 dB). In this paper, we present BANMAC, a MAC protocol that monitors and predicts the channel fluctuations and schedules transmissions opportunistically when the RSS is likely to be higher. The MAC protocol is capable of providing differentiated service and resolves co-channel interference in the event of multiple co-located BANs in a vicinity. We report the design and implementation details of BANMAC integrated with the IEEE 802.15.4 protocol stack. We present experimental data which show that the packet loss rate (PLR) of BANMAC is significantly lower as compared to that of the IEEE 802.15.4 MAC. For comparable PLR, the power consumption of BANMAC is also significantly lower than that of the IEEE~802.15.4. For co-located networks, the convergence time to find a conflict-free channel allocation was approximately 1 s for the centralized coordination mechanism and was approximately 4 s for the distributed coordination mechanism.
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