The paper delivers the first comprehensive survey of MIMO OFDM-based ISAC for low-altitude non-cooperative UAV surveillance, covering system modeling, detection and tracking, identification methods, experimental validations, open challenges, and future directions toward 5G-A and 6G.
Integrated sensing and communication-assisted orthogonal time frequency space transmission for vehicular networks
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AFDM is made more secure by choosing phase functions whose first derivative sets brute-force demodulation complexity, yielding orders-of-magnitude gains over standard AFDM in simulations.
citing papers explorer
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MIMO OFDM-Enabled ISAC for Low-Altitude Non-Cooperative UAV Surveillance: A Survey
The paper delivers the first comprehensive survey of MIMO OFDM-based ISAC for low-altitude non-cooperative UAV surveillance, covering system modeling, detection and tracking, identification methods, experimental validations, open challenges, and future directions toward 5G-A and 6G.
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Making AFDM Secure Against Eavesdroppers: A Phase Function Design Approach
AFDM is made more secure by choosing phase functions whose first derivative sets brute-force demodulation complexity, yielding orders-of-magnitude gains over standard AFDM in simulations.