Closed-form detection probabilities for multi-band OFDM ISAC signals are derived via characteristic functions of i.n.i.d. exponential variables, and an ADMM-based resource allocator achieves 18 dB detection gain over single-band baselines.
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A dual-power phase-coded pulse waveform for full-duplex ISAC eliminates blind range and improves long-range multi-target detection under residual self-interference compared to OFDM and LFM baselines.
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Beyond Single-Band: Analysis and Resource Allocation for Multi-band ISAC Systems
Closed-form detection probabilities for multi-band OFDM ISAC signals are derived via characteristic functions of i.n.i.d. exponential variables, and an ADMM-based resource allocator achieves 18 dB detection gain over single-band baselines.
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Waveform Design for 6G ISAC Systems Under Full-Duplex Residual Self-Interference
A dual-power phase-coded pulse waveform for full-duplex ISAC eliminates blind range and improves long-range multi-target detection under residual self-interference compared to OFDM and LFM baselines.