DOI: 10.1145/3832032 ISSN: 2474-9567
EaZE
: Flexible Wideband Time-Delay Beamforming using Passive, 3D Reconfigurable, Wideband Metasurfaces
Alan Liu, Aadesh Madnaik, Cesar Morales, Leyla Ulku, Rudra Goel, Advaith Menon, Karthikeyan Sundaresan
Enhanced acoustic zones that emphasize acoustic information in desired 3D spatial regions in a contactless manner, are integral to the vision of immersive spaces. Yet, realizing such zones in practice requires catering to wideband audio signals and 3D spatial selectivity in a cost-effective, deployment-friendly manner, which has been challenging for existing approaches that employ active speaker arrays or metasurfaces. We propose
EaZE
, a novel, passive, composable metasurface system that enables (i) time-delay beamforming through a principled design of labyrinth-based structures that enable beamforming over a wide 10 kHz lower acoustic band; and (ii) 3D reconfigurability through a composition of modular metasurfaces, whose additional rotation-based degree of freedom, allows composing new beamforming directions passively based on the constituting metasurfaces.
EaZE
can be easily 3D-printed and deployed with commodity speakers. Comprehensive evaluations highlight its ability to create 3D acoustic zones with enhanced spatial selectivity (10-15 dB) and improved user experience in indoor and outdoor environments for various audio (music, speech) signals.