AcousTag : Batteryless 3D-Printed Acoustic Tag for Smart Speaker-based Event Monitoring
Gyuyeon Kim, Sehoon Lim, Jaewoo Son, Soundarya Ramesh, Jun Han
Abstract
Monitoring everyday events in the home enables computational systems to provide timely support without imposing continuous user effort. However, existing approaches present key trade-offs. Cameras raise privacy concerns, while wearables require continuous use and charging. Tag-based systems offer a more practical alternative, but either need periodic battery replacement, rely on non-pervasive transceivers, or demand multiple receivers per room due to limited sensing range. We present AcousTag , a batteryless , 3D-printed tag sensed by pervasive smart speakers (e.g., Amazon Echo Dots) that detects interactions with hinged or sliding objects at a distance. AcousTag introduces two key technical components: a batteryless tag hardware design that harvests motion energy to generate unique, identifiable acoustic reflections, and a receiver-side software design that retrofits commodity smart speakers to detect these reflections in real time, enabling room-scale detection and differentiation of multiple object interactions. We evaluate AcousTag in real-world settings by deploying tags across two homes, achieving average activation accuracy of over 94%. We further demonstrate that tags remain detectable at distances of up to 11 m, while maintaining robustness to multi-speaker operation and simultaneous tag activations.
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