IP Library Granted Patent US 11,075,710
Granted Patent B2
US 11,075,710 · App. 16/756,684 · Granted Jul 27, 2021

Automatic repeat-request system for providing absolute safety and authentication in wireless networks

Inventors: Hüseyin Arslan (Istanbul, TR); Jehad M. Hamamreh (Istanbul, TR)
H04K3/825H04K1/02H04L1/1825H04L9/0875H04L9/3231H04W12/03H04W12/06H04K2203/16H04K2203/18H04K2203/32H04K2203/34H04K2203/36H04L5/0007H04L2209/80
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Quick Facts
Patent No.
US 11,075,710
App. No.
16/756,684
Granted
Jul 27, 2021
Kind
B2
Abstract

A system and method for providing confidentiality against eavesdropping and authentication against impersonation attacks for advanced wireless communication systems are disclosed. The method exploits ARQ as a MAC layer mechanism and artificial noise as a physical layer mechanism with maximal ratio combining to achieve secrecy. An artificial noise, not requiring class space in the channel, is designed and added to the data package based on the QoS requirements and channel condition between legitimate parties. Basically, a special AN, which does not require null-space in the channel, is designed based on the QoS requirements and the channel condition between the legitimate parties and injected to the data packet. If the same packet is requested by the legitimate receiver (Bob), an AN cancelling signal is designed and added to the next packet. Then, an AN-free packet is obtained by using MRC process at Bob, while deteriorating the eavesdropper's performance.

Claims (6)

1. A method and system designed to provide data authentication against absolute data privacy and spoofing against hidden eavesdropping without the need for extra changes or leading extra changes on the receiving side and without the use of or secret keys in wireless communication systems, comprising: at least one superimposed mixer signal that runs on a transmitter Tx and converts data packets required to be transferred in the device into secure, stored data packets, added to the data packet to be transmitted in a first Automatic Repeat-Request (ARQ) round, named sequential noise r1; at least a second superimposed mixer signal that runs on the transmitter Tx and converts data packets required to be transferred in the device into secure, stored data packets, added to the data packet to be transmitted in a second ARQ round, named sequential noise r2; at least one maximal ratio combination (MRC) process that can combine the first received data packet and the second received data packet in a manner designed to cancel and remove the interference effect of the superimposed mixer signals r1 and r2 while improving the reliability of the data acquisition quality.

2. A system according to the claim 1 , characterized by the appropriately designed superimposed mixer signals, which are configured to operate on the transmitter Tx on a device that can exchange secure data with wireless networks, as well as a function of Quality of service (QoS) requirements of the service to be secured with legitimate channel width.

3. A system according to the claim 1 , wherein the addition of superimposed mixer signals designed and configured to completely cancel the interference effects at the location of the legitimate receiver, while causing interference in the receiving nodes of a different position.

4. A system according to the claim 1 , wherein the spatial degree of freedom (zero space generated by the multiple antennas) is absent, the channel is located within the flat damping (ie, there is no more possibility) and can provide privacy in one of the most challenging scenarios with a single antenna on the transmitting side.

5. A system according to the claim 1 , characterized not only by increasing the privacy but also by reducing the level of Peak-to-Average Power Ratio (PAPR) and alleviating the Out-of-Band Emission (OOBE) level of OFDM-based (Orthogonal Frequency Division Multiplexing) systems, as well as creating additional degrees of freedom within the force field due to the inserted Artificial Noise (AN) which can be used for other purposes.

6. A system according to the claim 1 , wherein it can be obtained by using OFDM based waveforms over the distribution channels.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 16, 2020
From: ARSLAN, HÜSEYIN; HAMAMREH, JEHAD M.
To: ISTANBUL MEDIPOL UNIVERSITESI
Reel/Frame 052418/0979 →
Priority Claims (1)
TR 2017/23427 · Dec 31, 2017 · national
Continuity (1)
Related Publication 20210203433A1 · Jul 1, 2021