Energy-Efficient and QoS Assurance Link Adaptation Scheme for Wireless Body Area Networks

Da-Ren Chen, Nai-Xin Liang
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Abstract

Due to limited power supply and long-life service requirements for wireless sensor nodes, energy and time-efficient methods are critical to in the wireless body area networks (WBAN). Link adaptation (LA) technique, in which modulation and coding are applied to change per channel conditions to maximize link throughput are widely investigated in the field of mobile communications. On the basis of LA and transmit power control (TPC) techniques, we propose a model-based calibration scheme to maintain a transmit power threshold table WBAN which satisfies the target quality of service (QoS) while minimizing transmission power of sensor nodes. Rather than existing methods that compare the SNR threshold with instantaneous channel SNR, we contrast the target bit error rate (BER) with instantaneous received BER, and calibrate the path loss and shadowing model, and receiver sensitivity. The proposed method lower bounds the transmit power given a pair of prescribed data rate and BER for a set of feasible combinations of modulation and coding schemes (MCSs). The performance evaluation show that the proposed method outperforms previous link adaptation methods in execution overheads and energy efficiency.
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无线体域网络节能和QoS保证链路自适应方案
由于无线传感器节点的供电有限和长寿命服务要求,在无线体域网络(WBAN)中,节能和省时的方法至关重要。链路自适应技术在移动通信领域得到了广泛的研究,该技术利用调制和编码来改变每个信道的条件,以最大限度地提高链路吞吐量。在LA和发射功率控制(TPC)技术的基础上,提出了一种基于模型的WBAN校准方案,以保持满足目标服务质量(QoS)的发射功率阈值表,同时最小化传感器节点的发射功率。与现有的将信噪比阈值与瞬时信道信噪比进行比较的方法不同,我们将目标误码率(BER)与瞬时接收误码率进行对比,并对路径损失和阴影模型以及接收机灵敏度进行校准。该方法在给定一对规定的数据速率和误码率的情况下,对一组可行的调制编码方案(MCSs)组合进行了发射功率下界的计算。性能评估表明,该方法在执行开销和能量效率方面优于以往的链路自适应方法。
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