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Towards Efficient Wireless Body Area Network Using Two-Way Relay Cooperation

机译:使用双向中继协作实现高效的无线人体局域网

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摘要

The fabrication of lightweight, ultra-thin, low power and intelligent body-borne sensors leads to novel advances in wireless body area networks (WBANs). Depending on the placement of the nodes, it is characterized as in/on body WBAN; thus, the channel is largely affected by body posture, clothing, muscle movement, body temperature and climatic conditions. The energy resources are limited and it is not feasible to replace the sensor’s battery frequently. In order to keep the sensor in working condition, the channel resources should be reserved. The lifetime of the sensor is very crucial and it highly depends on transmission among sensor nodes and energy consumption. The reliability and energy efficiency in WBAN applications play a vital role. In this paper, the analytical expressions for energy efficiency (EE) and packet error rate (PER) are formulated for two-way relay cooperative communication. The results depict better reliability and efficiency compared to direct and one-way relay communication. The effective performance range of direct vs. cooperative communication is separated by a threshold distance. Based on EE calculations, an optimal packet size is observed that provides maximum efficiency over a certain link length. A smart and energy efficient system is articulated that utilizes all three communication modes, namely direct, one-way relay and two-way relay, as the direct link performs better for a certain range, but the cooperative communication gives better results for increased distance in terms of EE. The efficacy of the proposed hybrid scheme is also demonstrated over a practical quasi-static channel. Furthermore, link length extension and diversity is achieved by joint network-channel (JNC) coding the cooperative link.
机译:轻巧,超薄,低功耗和智能型人体传感器的制造带来了无线人体局域网(WBAN)的新进步。取决于节点的放置,其特征为体内WBAN。因此,通道很大程度上受身体姿势,衣服,肌肉运动,体温和气候条件的影响。能量资源有限,因此无法频繁更换传感器的电池。为了使传感器保持工作状态,应保留通道资源。传感器的寿命至关重要,它在很大程度上取决于传感器节点之间的传输和能耗。 WBAN应用程序中的可靠性和能效至关重要。本文针对双向中继协作通信,提出了能效(EE)和误包率(PER)的解析表达式。与直接和单向中继通信相比,结果显示了更好的可靠性和效率。直接通信与协作通信的有效性能范围由阈值距离分隔。根据EE计算,可以观察到最佳数据包大小,该大小可以在一定的链路长度上提供最大的效率。阐述了一种智能节能系统,该系统利用所有三种通信模式,即直接,单向中继和双向中继,因为直接链路在一定范围内表现更好,但是协作通信在距离增加时给出更好的结果。 EE条款。拟议的混合方案的功效也已在实际的准静态通道上得到证明。此外,通过对协作链接进行联合网络信道(JNC)编码,可以实现链接长度扩展和分集。

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