LoEar: Push the Range Limit of Acoustic Sensing for Vital Sign Monitoring
Lei Wang, Wei Li, Ke Sun, Fusang Zhang, Tao Gu, Chenren Xu, Daqing Zhang
Abstract
Acoustic sensing has been explored in numerous applications leveraging the wide deployment of acoustic-enabled devices. However, most of the existing acoustic sensing systems work in a very short range only due to fast attenuation of ultrasonic signals, hindering their real-world deployment. In this paper, we present a novel acoustic sensing system using only a single microphone and speaker, named LoEar, to detect vital signs (respiration and heartbeat) with a significantly increased sensing range. We first develop a model, namely Carrierforming, to enhance the signal-to-noise ratio (SNR) via coherent superposition across multiple subcarriers on the target path. We then propose a novel technique called Continuous-MUSIC (Continuous-MUltiple SIgnal Classification) to detect a dynamic reflections, containing subtle motion, and further identify the target user based on the frequency distribution to enable Carrierforming. Finally, we adopt an adaptive Infinite Impulse Response (IIR) comb notch filter to recover the heartbeat pattern from the Channel Frequency Response (CFR) measurements which are dominated by respiration and further develop a peak-based scheme to estimate respiration rate and heart rate. We conduct extensive experiments to evaluate our system, and results show that our system outperforms the state-of-the-art using commercial devices, i.e., the range of respiration sensing is increased from 2 m to 7 m, and the range of heartbeat sensing is increased from 1.2 m to 6.5 m.
Ask about this paper
Ask your agent about it.
Lune has read the top-tier papers around this one, so every answer names the papers it rests on.
Your agent calls
Lunesearch_papers
Free to start. No credit card required.
Terminal
Install the CLIlune papers get 7c7b3ae1-e9d8-42d9-88dd-7146e64a7cddCited by top-tier papers5
- PowerPhone: Unleashing the Acoustic Sensing Capability of SmartphonesShirui Cao, Dong Li, Sunghoon Ivan Lee, Jie XiongMobiCom 2023 · 35 citations
- WindDancer: Understanding Acoustic Sensing under Ambient AirflowKuang Yuan, Dong Li, Hao Zhou, Zhehao Li et al.UbiComp 2025 · 5 citations
- ASE: Practical Acoustic Speed Estimation Beyond Doppler via Sound Diffusion FieldSheng Lyu, Chenshu WuUbiComp 2025 · 4 citations
- CoHear: Conversation Enhancement via Multi-earphone CollaborationLixing He, Yunqi Guo, Zhenyu Yan, Guoliang XingUbiComp 2026 · 1 citation
- CardioLive: Empowering Video Streaming with Online Cardiac Monitoring via Audio-Visual LearningSheng Lyu, Ruiming Huang, Sijie Ji, Yasar Abbas Ur Rehman et al.ACM MM 2025 · 1 citation
Related papers
- LASense: Pushing the Limits of Fine-grained Activity Sensing Using Acoustic SignalsDong Li, Jialin Liu, Sunghoon Ivan Lee, Jie XiongUbiComp 2022 · 36 citations
- Sonic-Fi: Practical Vital Signs Distillation Leveraging Fine-grained Physical ResolutionPenghao Wang, Shujie Zhang, Chao Cai, Chao Liu et al.UbiComp 2025 · 2 citations
- Exploring LoRa for Long-range Through-wall SensingFusang Zhang, Zhaoxin Chang, Kai Niu, Jie Xiong et al.UbiComp 2020 · 108 citations
- Pushing the Limits of Long Range Wireless Sensing with LoRaBinbin Xie, Yuqing Yin, Jie XiongUbiComp 2021 · 52 citations
- Embracing Distributed Acoustic Sensing in Car Cabin for Children Presence DetectionYuqi Su, Fusang Zhang, Kai Niu, Tianben Wang et al.UbiComp 2024 · 26 citations
