Performance Evaluation of Photonics-Based Coherent MIMO Radar Systems for Maritime Surveillance

Author:

Amir Malik Muhammad Haris1ORCID,Maresca Salvatore2ORCID,Pandey Gaurav1,Malacarne Antonio3,Bogoni Antonella13,Scaffardi Mirco3ORCID

Affiliation:

1. Institute of Technologies of Communication, Information, and Perception (TeCIP), Scuola Superiore Sant’Anna, 56124 Pisa, Italy

2. Institute of Electronics, Information Engineering and Telecommunications (IEIIT), Consiglio Nazionale delle Ricerche (CNR), 56124 Pisa, Italy

3. National Inter-University Consortium for Telecommunications (CNIT), 56124 Pisa, Italy

Abstract

Multiple-input multiple-output (MIMO) radars offer significant advantages over conventional standalone radars in terms of target detection and localization capabilities. However, to fully exploit their potential, such systems require excellent time and phase synchronization among the central unit and the radar heads. Only recently, thanks to microwave photonics (MWP) techniques, it has been possible to develop the first coherent MIMO radar demonstrators. In this paper, a simulation tool in MATLAB programming language is proposed to model coherent MIMO radars based on MWP techniques in maritime surveillance applications. Moreover, a novel approach for estimating the radar cross section of extended maritime targets is presented. The system performance in co-located and distributed MIMO configuration, as well as in single- and multi-band operations, is evaluated by means of relevant key performance indicators (KPIs). Simulations are carried out in two close-to-reality scenarios. In the first, a co-located MIMO radar is mounted on top of a patrolling vessel. In the second, a distributed MIMO radar is deployed inside a port. The proposed KPIs are analyzed in terms of both geometric and frequency diversities of the system, laying the foundations for general system optimization criteria valid in any given surveillance application.

Funder

FISR funding scheme, Italian Ministry of University and Research

Publisher

MDPI AG

Subject

General Engineering

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