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BlueFi: Physical-layer Cross-Technology Communication from Bluetooth to WiFi

机译:Bluefi:从蓝牙到WiFi的物理层交叉技术通信

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Today’s wireless networks have become increasingly heterogenous, mobile and dense. To satisfy the rising demands of ubiquitous connections, billions of multi-radio gateways have to be deployed, inevitably incurring high deployment cost and extra traffic overhead. Recent advances on Cross-Technology Communication (CTC) have shown its ability to avoid these drawbacks. However, the state-of-the-art CTCs from Bluetooth to WiFi, two of the most popular wireless techniques, still suffer from low data-rate (e.g., 3.1Kbps), which severely restricts their applicability. We present BlueFi, the first physical-layer CTC (PHY-CTC) from Bluetooth Low Energy (BLE) to WiFi, which enables high throughput, bidirectional and parallel transmissions between BLE and WiFi via spectral analysis. The key observation is that commodity WiFi chipsets can operate in the spectral analysis mode, in which WiFi can recognize specific BLE signal waveforms in frequency domain at symbol-level granularity. Leveraging this feature, we manufacture desired waveforms by choosing frame payload at BLE side, and observe spectral patterns at WiFi side. To achieve bidirectional links, we design a PHY-CTC method from WiFi to BLE based on signal emulation. We implement our prototype on USRP (with 802.11g PHY) and commodity BLE devices. Extensive evaluations show that BlueFi can achieve 120Kbps per link from BLE to WiFi with more than 95% frame reception ratio, over 38x faster than state-of-the-art CTCs. Moreover, BlueFi can support 9 wireless links in parallel, leading to the total throughput over 1Mbps.
机译:今天的无线网络已经变得越来越异因,移动和密集。为了满足无处不在的联系的不断增长,必须部署数十亿多无线电网关,不可避免地产生高部署成本和额外的流量开销。跨技术通信(CTC)的最新进展显示了避免这些缺点的能力。然而,从蓝牙到WiFi的最先进的CTC,两种最流行的无线技术仍然遭受低数据速率(例如,3.1kbps),这严重限制了它们的适用性。我们向WiFi提供Bluefi,从蓝牙低能量(BLE)到WiFi的第一个物理层CTC(PHY-CTC),这通过光谱分析使BLE和WiFi之间的高吞吐量,双向和并联传输能够实现。关键观察是商品WiFi芯片组可以在光谱分析模式中操作,其中WiFi可以在符号级粒度处识别频域中的特定BLE信号波形。利用此功能,我们通过在BLE侧选择帧有效载荷来制造所需的波形,并观察WiFi侧的光谱图案。为了实现双向链路,我们根据信号仿真设计了一种从WiFi到BLE的PHY-CTC方法。我们在USRP(带802.11g PHY)和商品BLE设备上实现了我们的原型。广泛的评估表明,BlueFi可以从BLE到WiFi的每个链路实现120kbps,超过95%的帧接收比率,超过最先进的CTC速度超过38倍。此外,Bluefi可以并行支持9个无线链路,导致超过1Mbps的总吞吐量。

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