Efficient Subcarrier-Level OFDM Backscatter Communications

Caihui Du, Jihong Yu*, Zhenyu Yan, Ju Ren, Rongrong Zhang, Yun Li

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

Most of the existing OFDM backscatter systems adopt phase-modulated schemes to embed tag data, suffering from symbol-level modulation limitation, heavy synchronization accuracy reliance, and small tolerability to symbol time offset (STO) / carrier frequency (CFO) offset. 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 of SubScatter 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. Furthermore, we design SubScatter+ that shows these advantages while providing an even higher throughput without requiring more subcarrier patterns. We prototype and test SubScatter and SubScatter+, and the results show that our systems outperforms prior works in terms of effectiveness and robustness. Specifically, SubScatter has 743kbps throughput that is 3.1 times and 14.9 times higher than RapidRider and MOXcatter, respectively. It also has a lower BER under noise and interferences which is over 6 times better than RapidRider or MOXcatter. Moreover, our proposed SubScatter+ could increase the throughput of SubScatter by 30%.

Original languageEnglish
JournalIEEE Transactions on Mobile Computing
DOIs
Publication statusAccepted/In press - 2025

Keywords

  • Backscatter communication
  • IoT
  • OFDM

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Du, C., Yu, J., Yan, Z., Ren, J., Zhang, R., & Li, Y. (Accepted/In press). Efficient Subcarrier-Level OFDM Backscatter Communications. IEEE Transactions on Mobile Computing. https://doi.org/10.1109/TMC.2025.3529265