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A statistical frame based TDMA protocol for human body communication

机译:用于人体通讯的基于统计帧的TDMA协议

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Background Human body communication (HBC) using the human body as the transmission medium, which has been regarded as one of the most promising short-range communications in wireless body area networks (WBAN). Compared to the traditional wireless networks, two challenges are existed in HBC based WBAN. (1) Its sensor nodes should be energy saving since it is inconvenient to replace or recharge the battery on these sensor nodes; (2) the coordinator should be able to react dynamically and rapidly to the burst traffic triggered by sensing events. Those burst traffic conditions include vital physical signal (electrocardiogram, electroencephalogram etc.) monitoring, human motion detection (fall detection, activity monitoring, gesture recognition, motion sensing etc.) and so on. To cope with aforementioned challenges, a statistical frame based TDMA (S-TDMA) protocol with multi-constrained (energy, delay, transmission efficiency and emergency management) service is proposed in this paper. Methods The scenarios where burst traffic is often triggered rapidly with low power consumption and low delay is handled in our proposed S-TDMA. A beacon frame with the contained synchronous and poll information is designed to reduce the possibility of collisions of request frames. A statistical frame which broadcasts the unified scheduling information is adopted to avoid packet collisions, idle listening and overhearing. Dynamic time slot allocation mechanism is presented to manage the burst traffic and reduce the active period in each beacon period. An emergency mechanism is proposed for vital signals to be transmitted. The theory analysis is proceed and the result is evaluated in the hardware platform. Results To verify its feasibility, S-TDMA was fully implemented on our independently-developed HBC platform where four sensor nodes and a coordinator are fastened on a human body. Experiment results show that S-TDMA costs 89.397?mJ every 20?s when the payload size is 122 bytes, 9.51% lower than Lightweight MAC (LMAC); the average data latency of S-TDMA is 6.3?ms, 7.02% lower than Preamble-based TDMA (PB-TDMA); the transmission efficiency of S-TDMA is 93.67%, 4.83% higher than IEEE 802.15.6 carrier sense multiple access/collision avoidance (CSMA/CA) protocol. Conclusions With respect to the challenges of HBC based WBANs, a novel S-TDMA protocol was proposed in this paper. Compared to the traditional protocols, the results demonstrate that S-TDMA successfully meets the delay and transmission efficiency requirements of HBC while keeping a low energy consumption. We also believe that our S-TDMA protocol will promote development of HBC in wearable applications.
机译:背景技术使用人体作为传输介质的人体通信(HBC)被认为是无线人体局域网(WBAN)中最有前途的短距离通信之一。与传统的无线网络相比,基于HBC的WBAN存在两个挑战。 (1)其传感器节点应节能,因为不方便更换或充电这些传感器节点上的电池; (2)协调器应该能够对感知事件触发的突发流量做出动态,快速的反应。这些突发交通状况包括重要的物理信号(心电图,脑电图等)监控,人体运动检测(跌倒检测,活动监测,手势识别,运动感应等)等。为了应对上述挑战,本文提出了一种基于统计帧的TDMA(S-TDMA)协议,该协议具有多约束(能量,延迟,传输效率和应急管理)服务。方法在我们提出的S-TDMA中处理突发流量通常以低功耗和低延迟迅速触发的情况。具有所包含的同步和轮询信息的信标帧被设计为减少请求帧冲突的可能性。采用广播统一调度信息的统计帧,避免报文冲突,空闲监听和偷听。提出了动态时隙分配机制来管理突发流量并减少每个信标周期中的活动周期。提出了一种紧急机制,用于传输重要信号。进行理论分析,并在硬件平台中评估结果。结果为了验证其可行性,在我们自主开发的HBC平台上完全实施了S-TDMA,该平台将四个传感器节点和一个协调器固定在人体上。实验结果表明,当有效载荷大小为122字节时,S-TDMA每20?s花费89.397?mJ,比轻量MAC(LMAC)低9.51%。 S-TDMA的平均数据等待时间为6.3?ms,比基于前同步码的TDMA(PB-TDMA)降低7.02%; S-TDMA的传输效率为93.67%,比IEEE 802.15.6载波侦听多路访问/冲突避免(CSMA / CA)协议高4.83%。结论针对基于HBC的WBAN的挑战,本文提出了一种新颖的S-TDMA协议。与传统协议相比,结果表明,S-TDMA成功地满足了HBC的时延和传输效率要求,同时保持了低能耗。我们还相信,我们的S-TDMA协议将促进可穿戴应用中HBC的发展。

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