商品级BLE反向散射

Ma Zhang, Si Chen, Jia Zhao, Wei Gong
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引用次数: 22

摘要

最先进的蓝牙低功耗(BLE)反向散射系统的通信可靠性从根本上受到其调制方案的限制,因为标签的二进制频移键控(BFSK)调制并不完全匹配为高带宽效率的高斯频移键控(GFSK)调制信号而设计的商用BLE接收器。高斯脉冲整形是最先进的低BLE后向散射系统中缺失的一部分。受有源BLE启发,应用微积分,我们提出了一种与商用BLE器件完全兼容的BLE反向散射通信系统。BLE利用相移是频率随时间的积分这一事实,为BLE反向散射建立可靠的物理层。BLE采用瞬时相移(IPS)调制、GFSK调制和可选的FEC编码,将BLE反向散射通信的可靠性提高到商品水平。我们使用各种商品BLE器件和带有FPGA的定制标签来原型化BLE。实证结果表明,当上行距离为2 m和14 m时,系统的per值分别为0.04%和0.68%,分别比当前系统RBLE的per值低280倍和70倍。在满足BLE规范的误码率要求的前提下,BLE的上行范围为20m。由于BLE设备无处不在,因此BLE很容易部署在我们的日常物联网应用中。
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Commodity-level BLE backscatter
The communication reliability of state-of-the-art Bluetooth Low Energy (BLE) backscatter systems is fundamentally limited by their modulation schemes because the Binary Frequency Shift Keying (BFSK) modulation of the tag does not exactly match commodity BLE receivers designed for Gauss Frequency Shift Keying (GFSK) modulated signals with high bandwidth efficiency. Gaussian pulse shaping is a missing piece in state-of-the-art BLE backscatter systems. Inspired by active BLE and applying calculus, we present IBLE, a BLE backscatter communication system that achieves full compatibility with commodity BLE devices. IBLE leverages the fact that phase shift is the integral of frequency over time to build a reliable physical layer for BLE backscatter. IBLE uses instantaneous phase shift (IPS) modulation, GFSK modulation, and optional FEC coding to improve the reliability of BLE backscatter communication to the commodity level. We prototype IBLE using various commodity BLE devices and a customized tag with FPGA. Empirical results demonstrate that IBLE achieves PERs of 0.04% and 0.68% when the uplink distances are 2 m and 14 m respectively, which are 280x and 70x lower than the PERs of the state-of-the-art system RBLE. On the premise of meeting the BER requirements of the BLE specification, the uplink range of IBLE is 20 m. Since BLE devices are everywhere, IBLE is readily deployable in our everyday IoT applications.
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