Interference and noise cancellation for joint communication radar (JCR) system based on contextual information

02/14/2023
by   Christantus O. Nnamani, et al.
0

This paper examines the separation of wireless communication and radar signals, thereby guaranteeing cohabitation and acting as a panacea to spectrum sensing. First, considering that the channel impulse response was known by the receivers (communication and radar), we showed that the optimizing beamforming weights mitigate the interference caused by signals and improve the physical layer security (PLS) of the system. Furthermore, when the channel responses were unknown, we designed an interference filter as a low-complex noise and interference cancellation autoencoder. By mitigating the interference on the legitimate users, the PLS was guaranteed. Results showed that even for a low signal-to-noise ratio, the autoencoder produces low root-mean-square error (RMSE) values.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
04/04/2023

Code-Division OFDM Joint Communication and Sensing System for 6G Machine-type Communication

The joint communication and sensing (JCS) system can provide higher spec...
research
04/24/2021

Optimal Transmit Beamforming for Integrated Sensing and Communication

This paper studies the transmit beamforming in a downlink integrated sen...
research
02/18/2019

Deep Learning Based Autoencoder for Interference Channel

Deep learning (DL) based autoencoder has shown great potential to signif...
research
09/21/2023

RadYOLOLet: Radar Detection and Parameter Estimation Using YOLO and WaveLet

Detection of radar signals without assistance from the radar transmitter...
research
02/15/2023

Performance Limits of a Deep Learning-Enabled Text Semantic Communication under Interference

Semantic communication (SemCom) has emerged as a 6G enabler while promis...
research
02/28/2022

Deep learning enhanced Rydberg multifrequency microwave recognition

Recognition of multifrequency microwave (MW) electric fields is challeng...
research
10/07/2020

Index-Modulated Circularly-Shifted Chirps for Dual-Function Radar Communication Systems

In this study, we analyze index modulation (IM) based on circularly-shif...

Please sign up or login with your details

Forgot password? Click here to reset