Virtualizing the Senses: Enabling High-Precision ISAC on Commercial Cellular Infrastructure
2026-04-27T08:51:50Z•b3c48d93ff0e447e0afb45e71afbf8431b73e7021a9a72427f1a3d5316dbf012
6GAFDMAIBD‑RISISACLoS delay‑Doppler estimationPAPR controlRASRISTHzTerahertzcellular sensingchannel modelingholographic MIMOmultipath exploitationoptical wireless (OWC) / VCSELs (VCSEL)pilot designprivacyreconfigurable antennasspace‑time‑frequency synthesissub‑Nyquist samplingsurveillancevirtualizationwaveform designwave‑domain processing
What happened
This collection of papers focuses on next‑generation wireless and sensing technologies (ISAC, AFDM, RAS/BD‑RIS, holographic MIMO, THz networks, and VCSEL OWC) and supporting signal processing (pilot/LoS delay‑Doppler estimation, sub‑Nyquist acquisition, ICA improvements, Riemannian optimization for scattering matrices, and EM‑based channel models). Key contributions include a full‑stack “virtualization” approach that trades computation for hardware to enable high‑precision sensing on legacy cellular infrastructure (space‑time‑frequency synthesis across distributed BSs, multipath/digital‑map re
Why it matters
A reviewed impact interpretation has not been published for this record.
Evidence and limitations
- Source ID
- arxiv_eess_sp
- Record identifier
- b3c48d93ff0e447e0afb45e71afbf8431b73e7021a9a72427f1a3d5316dbf012
- Enrichment time
- 2026-04-27T08:51:50Z
- AI-assisted enrichment
- Yes
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