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An adaptive power-conserving service discipline for bluetooth (APCB) wireless networks

机译:蓝牙(APCB)无线网络的自适应节能服务准则

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Bluetooth is a new short-range radio technology to form a small wireless system. In most of the current bluetooth products, the master polls the slaves in a round robin (RR) manner and it may waste a significant amount of power. Many solutions were proposed to reduce the power consumption of the slaves. However, these solutions cannot achieve a good balance between the power consumption and QoS provision. We propose an adaptive power-conserving scheme to address this problem. The proposed solution schedules each flow based on its predictive rate and achieves power optimization based on a low-power mode existing in the bluetooth standard. Unlike other research work related to low-power, we also consider QoS provision for each flow. Theoretical analyses verify that our scheme can achieve throughput guarantees, delay guarantees, and fairness guarantees. Simulation results demonstrate that our scheme outperforms the RR scheme and other existing works in terms of significant power saving and good QoS provision. It also shows that there exists a tradeoff between power and delay under varies traffic models.
机译:蓝牙是构成小型无线系统的一种新的短程无线电技术。在大多数当前的蓝牙产品中,主设备以循环轮询(RR)的方式轮询从设备,这可能会浪费大量电能。提出了许多解决方案以减少从机的功耗。但是,这些解决方案无法在功耗和QoS提供之间达到良好的平衡。我们提出了一种自适应节能方案来解决这个问题。提出的解决方案基于其预测速率调度每个流,并基于蓝牙标准中存在的低功率模式实现功率优化。与其他与低功耗相关的研究工作不同,我们还考虑为每个流提供QoS。理论分析证明,我们的方案可以实现吞吐量保证,时延保证和公平保证。仿真结果表明,在节省大量功率和提供良好的QoS方面,我们的方案优于RR方案和其他现有工作。它还表明,在不同的流量模型下,功率和延迟之间存在折衷。

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