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Towards SISO Bistatic Sensing for ISAC

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arxiv 2508.12614 v1 pith:EOGGVRYS submitted 2025-08-18 eess.SP cs.HCcs.LG

classification eess.SPcs.HCcs.LG
keywords dopplersensingsisobistaticestimationfeatureswidfsaccurate
verification ladder T0 review T1 audit T2 compute T3 formal
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Integrated Sensing and Communication (ISAC) is a key enabler for next-generation wireless systems. However, real-world deployment is often limited to low-cost, single-antenna transceivers. In such bistatic Single-Input Single-Output (SISO) setup, clock asynchrony introduces random phase offsets in Channel State Information (CSI), which cannot be mitigated using conventional multi-antenna methods. This work proposes WiDFS 3.0, a lightweight bistatic SISO sensing framework that enables accurate delay and Doppler estimation from distorted CSI by effectively suppressing Doppler mirroring ambiguity. It operates with only a single antenna at both the transmitter and receiver, making it suitable for low-complexity deployments. We propose a self-referencing cross-correlation (SRCC) method for SISO random phase removal and employ delay-domain beamforming to resolve Doppler ambiguity. The resulting unambiguous delay-Doppler-time features enable robust sensing with compact neural networks. Extensive experiments show that WiDFS 3.0 achieves accurate parameter estimation, with performance comparable to or even surpassing that of prior multi-antenna methods, especially in delay estimation. Validated under single- and multi-target scenarios, the extracted ambiguity-resolved features show strong sensing accuracy and generalization. For example, when deployed on the embedded-friendly MobileViT-XXS with only 1.3M parameters, WiDFS 3.0 consistently outperforms conventional features such as CSI amplitude, mirrored Doppler, and multi-receiver aggregated Doppler.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Ambiguity-Resolved Micro-Doppler Construction for Asynchronous Bistatic Sensing

    eess.SP 2026-07 conditional novelty 6.0 of 10

    A delay-AoA-Doppler filtering pipeline suppresses mirror and second-order artifacts to produce cleaner micro-Doppler from asynchronous bistatic WiFi, with 90–98% cross-domain gesture accuracy.

  2. WiFi Sensing via Reservoir Computing

    eess.SP 2026-07 conditional novelty 6.0 of 10

    A reservoir-computing WiFi sensing system with a frozen temporal encoder and a 0.72M-parameter readout achieves 82.0% cross-domain macro-F1 on Widar 3.0, improving to 88.5% with readout-only adaptation.

  3. WiFuse: An Attention Mechanism for Human Activity Recognition using Fused CSI Amplitude and Delay-Doppler Channel Features

    cs.CV 2026-08 conditional novelty 4.0 of 10

    A dual-stream CSI framework fusing amplitude and Delay-Doppler features with a ResNet-TCN attention model reaches 95.28% on XRF55 and 98.20% on Wi-MIR.

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