Protocol-free encryption and header layering isolate trusted IIoT data paths, improving attack resilience and data integrity.
A higher-frequency channel supplies keying material for lower-band encryption, improving randomness and security with less computational overhead.
Chaotic state vectors let sender and receiver generate matching encryption keys independently, avoiding key exchange and reducing communication overhead.
Encrypted key-exchange requests resemble random noise while authenticated messages use a second band, masking VPN traffic from eavesdropper inference.
Common starting points and updated distances let devices generate matching encryption states while mitigating man-in-the-middle attacks.
A communication system applies non-linear phase transformations to complex baseband symbols.
A communication system applies unitary braid divisional multiplexing to encode signals via arbitrary transformations.
Scrambling serial data with pseudo-random sequences and inserting dummy bits ensures reliable clock recovery while minimizing electromagnetic interference.