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Interchannel Interference and Mitigation in Distributed MIMO RF Sensing.

Sahil Waqar1, Matthias Pätzold1

  • 1Faculty of Engineering and Science, University of Agder, 4630 Kristiansand, Norway.

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Summary

We developed a method to eliminate cross-channel interference in millimeter-wave MIMO radar systems. This technique enables precise tracking of moving targets using radio frequency sensing.

Keywords:
3D channel modelFMCWRF sensingdistributed MIMOinterchannel interferencemicro-Doppler signaturesmillimeter wave (mm-Wave)sensor network

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Area of Science:

  • Electrical Engineering
  • Signal Processing
  • Radar Systems

Background:

  • Cross-channel interference is a significant challenge in Multiple-Input Multiple-Output (MIMO) radio frequency (RF) sensing systems.
  • Millimeter-wave (mm-Wave) MIMO systems, particularly those using Frequency-Modulated Continuous Wave (FMCW) radar, are susceptible to interference affecting subchannel performance.

Purpose of the Study:

  • To analyze and mitigate cross-channel interference in mm-Wave MIMO RF sensing systems.
  • To present a geometrical 3D channel model for simulating time-variant trajectories of moving scatterers.
  • To validate a novel interference mitigation technique using a commercial K-band MIMO radar.

Main Methods:

  • Developed a geometrical 3D channel model for simulating time-variant scatterer trajectories.
  • Utilized the Ancortek SDR-KIT 2400T2R4, a K-band FMCW MIMO radar, for RF data collection.
  • Proposed an optimal interference mitigation strategy involving induced propagation delay and range gating.

Main Results:

  • Successfully simulated time-variant trajectories of moving scatterers in a mm-Wave MIMO system.
  • Demonstrated complete elimination of cross-channel interference using the proposed propagation delay and range gating method.
  • Validated the effectiveness of the solution on the Ancortek SDR-KIT 2400T2R4 radar system.

Conclusions:

  • The proposed method effectively mitigates cross-channel interference in K-band MIMO radar systems.
  • The solution enables the resolution of all subchannel links in distributed MIMO configurations.
  • This advancement allows for robust MIMO RF sensing to track moving targets irrespective of their motion direction.