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General Signal Model for Multiple-Input Multiple-Output GMTI Radar.

Fuyou Li1, Feng He2, Zhen Dong3

  • 1School of Electronic Science, National University of Defense Technology, Changsha 410073, China. lifuyou08@nudt.edu.cn.

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|August 8, 2018
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Summary
This summary is machine-generated.

Multiple-input multiple-output (MIMO) ground moving target indication (GMTI) radar offers excellent performance. A new range-compensation method enhances frequency-division multiple access (FDMA) waveforms by eliminating range-dependence.

Keywords:
MIMO GMTI radarfast-time waveformsgeneral signal modelrange-compensation methodslow-time waveforms

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Area of Science:

  • Radar Systems Engineering
  • Signal Processing
  • Electromagnetics

Background:

  • Multiple-input multiple-output (MIMO) ground moving target indication (GMTI) radar systems are recognized for their superior performance.
  • Existing research highlights the potential of MIMO GMTI radar for advanced target detection.

Purpose of the Study:

  • To establish a general signal model for MIMO GMTI radar applicable to various waveforms.
  • To introduce and evaluate a novel range-compensation method for frequency-division multiple access (FDMA) waveforms.

Main Methods:

  • Development of a general signal model encompassing fast-time and slow-time waveforms.
  • Application of the model to analyze diverse waveforms including CDMA, FDMA, TDMA, and DDMA.
  • Proposal and simulation of a range-compensation technique to address FDMA range-dependence.

Main Results:

  • The general signal model effectively evaluates MIMO GMTI radar performance across different waveform types.
  • The proposed range-compensation method successfully eliminates range-dependence in FDMA waveforms.
  • Simulations demonstrate significant performance improvements for FDMA waveforms with range compensation.

Conclusions:

  • The developed general signal model provides a versatile tool for MIMO GMTI radar analysis.
  • The range-compensation method offers a practical solution for enhancing FDMA waveform utility in GMTI radar.
  • MIMO GMTI radar technology, particularly with optimized waveforms like compensated FDMA, shows promising advancements.