Litcius/Paper detail

Distributed MIMO Passive Radar Target Detection: Holy Trinity, Durbin, and Gradient Tests

Amir Zaimbashi, Maria Greco, Fulvio Gini

2024IEEE Transactions on Aerospace and Electronic Systems10 citationsDOIOpen Access PDF

Abstract

This paper addresses the problem of target detection in a two-channel distributed MIMO passive radar (PR). In this scenario, multiple distributed transmitters emit signals that are received by the two-channel distributed receivers, one channel for surveillance and the other for reference. Both receiver channels are utilized to formulate the target detection problem as a binary composite hypothesis testing issue. To tackle this, we develop five detectors based on the generalized likelihood ratio test (GLRT), Rao, Wald, Gradient, and Durbin criteria. This framework for two-channel distributed MIMO PR target detection takes into account noisy reference channels. The invariance principle is employed here to show that all uncertainties affecting threshold setting can be consolidated into the direct-path signal power-to-noise ratio (DNR) in the reference channels. We also introduce the concept of “level-of-test,” which allows us to effectively adjust the detection thresholds irrespective of the DNR values of the reference channels. Among the proposed detectors, the Rao-based test exhibits superior and robust performance. Furthermore, the results demonstrate that the proposed detectors outperform the existing alternatives.

Topics & Concepts

Radar detectionMIMORadarRadar trackerPassive radarBistatic radarComputer scienceRadar lock-onRemote sensingContinuous-wave radarElectronic engineeringRadar imagingEngineeringTelecommunicationsGeologyChannel (broadcasting)Radar Systems and Signal ProcessingAdvanced SAR Imaging TechniquesMicrowave Imaging and Scattering Analysis