子散射:子载波级OFDM反向散射

Jihong Yu, Caihui Du, Jiahao Liu, Rongrong Zhang, Shuai Wang
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摘要

OFDM反向散射在无源物联网中至关重要。现有的大多数工作采用相位调制方案来嵌入标签数据,存在三个缺点:符号级调制限制、同步精度依赖性强、符号时间偏移(STO) /载波频率偏移(CFO)公差小。我们介绍SubScatter,第一个子载波级调频OFDM反向散射,它能够容忍更大的同步误差,STO和CFO。将SubScatter与其他后向散射系统区分开来的独特特征是我们的子载波移位键控(SSK)调制。该方法通过将标签数据编码和映射到不同的子载波模式,将调制粒度推向子载波。我们还设计了一种串联频移(TFS)方案,使SSK具有低成本和低功耗。对于解码,我们提出了一种基于相关的方法,从原始和反向散射OFDM符号之间的相关性中解码标签数据。我们在802.11g OFDM WiFi信号下对SubScatter进行了原型和测试。综合评估表明,我们的SubScatter在有效性和鲁棒性方面优于先前的工作。具体来说,SubScatter的吞吐量为743kbps,分别比RapidRider和MOXcatter高3.1倍和14.9倍。它在噪声和干扰下的误码率也低得多,比RapidRider或MOXcatter好6倍以上。
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SubScatter: Subcarrier-Level OFDM Backscatter
OFDM backscatter is crucial in passive IoT. Most of the existing works adopt phase-modulated schemes to embed tag data, which suffer from three drawbacks: symbol-level modulation limitation, heavy synchronization accuracy reliance, and small symbol time offset (STO) / carrier frequency (CFO) offset tolerability. We introduce SubScatter, the first subcarrier-level frequency-modulated OFDM backscatter which is able to tolerate bigger synchronization errors, STO, and CFO. The unique feature that sets SubScatter apart from the other backscatter systems is our subcarrier shift keying (SSK) modulation. This method pushes the modulation granularity to the subcarrier by encoding and mapping tag data into different subcarrier patterns. We also design a tandem frequency shift (TFS) scheme that enables SSK with low cost and low power. For decoding, we propose a correlation-based method that decodes tag data from the correlation between the original and backscatter OFDM symbols. We prototype and test SubScatter under 802.11g OFDM WiFi signals. Comprehensive evaluations show that our SubScatter outstands prior works in terms of effectiveness and robustness. Specifically, SubScatter has 743kbps throughput, 3.1× and 14.9× higher than RapidRider and MOXcatter, respectively. It also has a much lower BER under noise and interferences, which is over 6× better than RapidRider or MOXcatter.
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