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Experimental study on adaptive power control based routing in multi-hop Wireless Body Area Networks

机译:多跳无线人体局域网中基于自适应功率控制的路由的实验研究

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摘要

Data transmission reliability and energy efficiency are most crucial for Wireless Body Area Network (WBAN) to perform healthcare monitoring. In this paper, we jointly consider adaptive power control and routing in multi-hop WBANs, and develop a low overhead energy-efficient routing scheme (EERS). The proposed EERS can establish an energy-efficient end-to-end path as well as adaptively choose transmission power for sensor nodes. We conduct extensive experiments on a MicaZ platform to compare the performance of the proposed EERS and the collection tree protocol (CTP) in terms of packet reception ratio (PRR), collection delay, energy consumption, and energy balancing. Experimental results show that EERS outperforms CTP in terms of reliability, delay and energy consumption. In particular, EERS reduces nearly 30% mean delay as compared to CTP, and saves 10% energy consumed by CTP at the default power (0dBm) while achieving at least 0.95 PRR.
机译:数据传输的可靠性和能效对于无线人体局域网(WBAN)执行医疗保健监视至关重要。在本文中,我们共同考虑了多跳WBAN中的自适应功率控制和路由,并开发了一种低开销的节能路由方案(EERS)。提出的EERS可以建立节能的端到端路径,并为传感器节点自适应选择传输功率。我们在MicaZ平台上进行了广泛的实验,以从数据包接收率(PRR),收集延迟,能耗和能量平衡方面比较提议的EERS和收集树协议(CTP)的性能。实验结果表明,EERS在可靠性,延迟和能耗方面都优于CTP。特别是,与CTP相比,EERS减少了近30%的平均延迟,并在默认功率(0dBm)下节省了CTP消耗的10%的能量,同时实现了至少0.95的PRR。

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