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QBT: Queue-Size Based Busy Tones for Protecting Multihop Low-Power Networks

机译:QBT:基于队列大小的繁忙音调,用于保护多跳低功率网络

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Cross-technology interference in the ISM band is a prevalent and challenging problem. Prior work has proposed to use busytone signaler that can protect Zigbee transmissions from WiFi interference, but only in a single-hop setting. In this work, we propose Queue-size based Busy Tone (QBT) scheme that uses novel multihop busytone scheduling and priority path selection algorithms to protect multihop Zigbee network under heavy WiFi traffic. We adopt the busytone idea from prior work, but extend it to multihop networks where data is collected from and forwarded by a number of low-power nodes. We implement QBT on a lowpower embedded platform, and evaluate through experimental measurements on a real multihop LLN testbed consisting of 30 low-power embedded nodes and one gateway with two radios, the sink and the signaler, respectively. We show that QBT improves the performance of Zigbee network under WiFi interference dramatically in terms of both reliability (up to 66.4%) and energy efficiency (up to 24.4%). We also report our findings on adjacent-channel interference among Zigbee channels, and investigate the effect of busytone on WiFi traffic as well.
机译:ISM频段的交叉技术干扰是一种普遍且挑战的问题。事先工作已经提出使用忙音信号,可以保护ZigBee传输从WiFi干扰保护,但仅在单跳设置中。在这项工作中,我们提出了基于队列大小的忙音(QBT)方案,该方案使用了新颖的多彩忙调度和优先路径选择算法来保护繁忙的WiFi流量下的多倍ZigBee网络。我们从事先工作中采用忙碌的想法,但将其扩展到多跳网络,其中多个低功率节点收集数据并转发数据。我们在LowPower嵌入式平台上实现QBT,并通过实验测量来评估由由30个低功耗嵌入节点和一个带有两个无线电,接收器和信号的网关组成的实验测量。我们展示QBT在可靠性(高达66.4%)和能效(高达24.4%)方面,提高了ZigBee网络在WiFi干扰下的性能。我们还向ZigBee频道之间的相邻渠道干扰报告了我们的调查结果,并调查忙碌对WiFi流量的影响。

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