Exploiting Segmented Waveguide-Enabled Pinching-Antenna Systems (SWANs) for Uplink Tri-Hybrid Beamforming

2026-03-06T08:51:43Z342a3fd8e6fed3fdd2da4216642a90ff67fb60189e327cb4a0aceb1b1cbda1ba
8-PAM demapper','open-source IC design'CYGNSSGNSSMIMORFI detectionSWANadversarial spoofinganalog ICbeamformingcalibrated uncertaintychannel predictioncomb decimatorconformal Bayes filterconformal predictionconstellation shapingdistributed multi-target trackingintensity fluctuation PSDjamming detectionlabel hijackingnonlinear mitigationpass-band drooppinching antennasignal processingtracking securitytri-hybrid beamforming

What happened

Collection of 11 recent signal-processing and wireless-communications preprints (arXiv) covering antenna architectures, beamforming, constellation shaping, channel prediction, interference detection, decimator design, tracking-security, analog demapping, clutter simulation, and low-complexity MIMO detection. Notable works: a Segmented Waveguide-Enabled Pinching-Antenna Network (SWAN) with tri-hybrid (digital/analog/pinching) beamforming and FC/PC architectures; a unified intensity-fluctuation PSD framework for shaping constellations to reduce nonlinear XPM in fiber links; a Deep Learning-based

Why it matters

A reviewed impact interpretation has not been published for this record.

Evidence and limitations

Source ID
arxiv_eess_sp
Record identifier
342a3fd8e6fed3fdd2da4216642a90ff67fb60189e327cb4a0aceb1b1cbda1ba
Enrichment time
2026-03-06T08:51:43Z
AI-assisted enrichment
Yes

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