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An adaptive sniff scheduling scheme for power saving in Bluetooth

机译:蓝牙节能的自适应嗅探调度方案

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Bluetooth is expected to be an important basic constructing component for smart homes. In a smart home environment, many devices will be portable and battery-operated, making power saving an essential issue. The authors study the problem of managing the low-power sniff mode in Bluetooth, where a slave is allowed to be awake only periodically. One challenging problem is how to schedule each slave's sniffing period in a piconet so as to resolve the trade-off between traffic and power-saving requirements, to which we refer as the sniff-scheduling problem. We propose an adaptive protocol to dynamically adjust each slave's sniff parameters, with a goal of catching the varying, and even asymmetric, traffic patterns among the master and slaves. Compared to existing works, our work is unique. First, our scheduling considers multiple slaves simultaneously. Existing work only considers one slave, and different slaves are treated independently. Second, our scheduling is more accurate and dynamic in determining the sniff-related parameters based on slaves' traffic patterns. Most work is restricted to a naive exponential adjustment in sniff interval/sniff-attempt window. Third, our proposal includes the placement of sniff-attempt periods of sniffed slaves on the time axis when multiple slaves are involved. This issue is ignored by earlier work. Extensive simulation results are presented.
机译:蓝牙有望成为智能家居的重要基础构造组件。在智能家居环境中,许多设备将是便携式的并且可以用电池供电,因此节电成为至关重要的问题。作者研究了在蓝牙中管理低功耗嗅探模式的问题,在该模式中,仅允许从机定期唤醒。一个具有挑战性的问题是如何在一个微微网中安排每个从站的监听周期,以解决流量和节电要求之间的折衷,我们将其称为监听调度问题。我们提出了一种自适应协议来动态调整每个从设备的嗅探参数,目的是捕获主设备和从设备之间变化甚至不对称的流量模式。与现有作品相比,我们的作品是独一无二的。首先,我们的调度同时考虑多个从站。现有工作仅考虑一个奴隶,不同的奴隶被独立对待。其次,在根据从站的流量模式确定与嗅探有关的参数方面,我们的调度更加准确和动态。大多数工作仅限于在嗅探间隔/尝试嗅探窗口中进行简单的指数调整。第三,我们的建议包括在涉及多个从站的情况下,将嗅探从站的嗅探尝试周期放置在时间轴上。早期的工作忽略了此问题。给出了广泛的仿真结果。

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