Journal 2024

FDA-MIMO Transmitter and Receiver Optimization

Lan Lan, Massimo Rosamilia, Augusto Aubry, Antonio De Maio, Guisheng Liao

IEEE Transactions on Signal Processing

Abstract

Research summary

This paper addresses the joint design of the transmit parameters (i.e., radar code/frequency increments) and the receive filter in a Frequency Diverse Array (FDA)-Multiple-Input Multiple-Output (MIMO) radar system. The operating environment includes clutter, namely signal-dependent interference tied up to the FDA transmitted waveforms and the antenna array features, along with conventional thermal noise. The chosen optimization policy relies on the constrained maximization of the Signal-to-Interference-plus-Noise Ratio (SINR) which for Gaussian interference is tantamount to maximizing the radar detection performance. In this context, a bespoke Minorization-Maximization (MM)-Maximum Block Improvement (MBI) algorithm is proposed to tackle the resulting constrained non-convex optimization problem. The convergence properties of the resulting procedure are rigorously proven, along with a thorough investigation of the computational complexity for its implementation. Finally, numerical results are provided to show the effectiveness of the new technique under diverse clutter scenarios of practical relevance and in comparison with some counterparts. © 1991-2012 IEEE.

Keywords

Antenna arrays Clutter (information theory) Constrained optimization Convex optimization MIMO radar MIMO systems Radar antennas Radar signal processing Signal receivers Signal to noise ratio Tracking radar Clutter Code Convergence Frequency diverse array-multiple-input multiple-output radar Joint transmit and receive optimization Maximum block improvement Multiple-input multiple-output radars Optimisations Signal-dependent interference Radar clutter