Verification and Redesign of OFDM Backscatter
Xin Liu, Zicheng Chi, Wei Wang, Yao Yao, Pei Hao, Ting Zhu
Abstract
Orthogonal frequency-division multiplexing (OFDM) has been widely used in WiFi, LTE, and adopted in 5G. Recently, researchers have proposed multiple OFDM-based WiFi backscatter systems [33,35, 36] that use the same underlying design principle (i.e., codeword translation) at the OFDM symbol-level to transmit the tag data. However, since the phase error correction in WiFi receivers can eliminate the phase offset created by a tag, the codeword translation requires specific WiFi receivers that can disable the phase error correction. As a result, phase error is introduced into the decoding procedure of the codeword translation, which significantly increases the tag data decoding error. To address this issue, we designed a novel OFDM backscatter called TScatter, which uses high-granularity sample-level modulation to avoid the phase offset created by a tag being eliminated by phase error correction. Moreover, by taking advantage of the phase error correction, our system is able to work in more dynamic environments. Our design also has two advantages: much lower BER and higher throughput. We conducted extensive evaluations under different scenarios. The experimental results show that TScatter has i) three to four orders of magnitude lower BER when its throughput is similar to the latest OFDM backscatter system MOXcatter [36]; or ii) more than 212 times higher throughput when its BER is similar to MOXcatter. Our design is generic and has the potential to be applied to backscatter other OFDM signals (e.g., LTE and 5G).
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext 06ed1591-e971-4ecd-aa71-8b4229b0c1b0Cited by top-tier papers4
- Orthcatter: High-throughput In-band OFDM Backscatter with Over-the-Air Code DivisionCaihui Du, Jihong Yu, Rongrong Zhang, Ju Ren et al.NSDI 2024 · 24 citations
- SlimWiFi: Ultra-Low-Power IoT Radio Architecture Enabled by Asymmetric CommunicationRenjie Zhao, Kejia Wang, Kai Zheng, Xinyu Zhang et al.NSDI 2023 · 17 citations
- Efficient Two-Way Edge Backscatter with Commodity BluetoothMaoran Jiang, Xin Liu, Dong Li, Wei GongINFOCOM 2024 · 2 citations
- LightThief: Your Optical Communication Information is Stolen behind the WallXin Liu, Wei Wang, Guanqun Song, Ting ZhuUSENIX Security 2023
Builds on1
Related papers
- Pushing the Throughput Limit of OFDM-based Wi-Fi Backscatter CommunicationQihui Qin, Kai Chen, Yaxiong Xie, Heng Luo et al.MobiCom 2024 · 5 citations
- SubScatter: Subcarrier-Level OFDM BackscatterJihong Yu, Caihui Du, Jiahao Liu, Rongrong Zhang et al.INFOCOM 2023 · 17 citations
- RapidRider: Efficient WiFi Backscatter with Uncontrolled Ambient SignalsQiwei Wang, Si Chen, Jia Zhao, Wei GongINFOCOM 2021 · 63 citations
- R2Scatter: Long-Range Rapid LTE Backscatter Communication Using Tunnel DiodesCaihui Du, Rongrong Zhang, Chaocan Xiang, Jihong Yu et al.INFOCOM 2025 · 3 citations
- Concurrent OFDM Backscatter with a Single Commercial ReceiverCaihui Du, Jihong Yu, Rongrong ZhangSIGCOMM 2026
