Simulation Framework for a 3-D High-Resolution Imaging Radar at 300 GHz with a Scattering Model Based on Rendering Techniques

Journal Article (2017)
Author(s)

G. Ortiz-Jimenez (TU Delft - Microwave Sensing, Signals & Systems)

García-Rial Federico (Universidad Politécnica de Madrid)

Luis A. Úbeda-Medina (Universidad Politécnica de Madrid)

Rafael Pagés (Universidad Politécnica de Madrid)

Narciso García (Universidad Politécnica de Madrid)

Jesus Grajal (Universidad Politécnica de Madrid)

Microwave Sensing, Signals & Systems
DOI related publication
https://doi.org/10.1109/TTHZ.2017.2702590
More Info
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Publication Year
2017
Language
English
Microwave Sensing, Signals & Systems
Issue number
4
Volume number
7
Pages (from-to)
404-414

Abstract

We present a simulation framework for a 3-D high-resolution imaging radar at 300 GHz with mechanical scanning. This tool allows us to reproduce the imaging capabilities of the radar in different setups and with different targets. The simulations are based on a ray-tracing approximation combined with a bidirectional reflectance distribution function (BRDF) model for the scattering of rough surfaces. Moreover, we present a novel approach to estimate the scattering parameters of the BRDF model for different types of targets from the combination of the radar data and information obtained from an infrared structure light sensor. This new framework will serve as a baseline for the design of future radar multistatic configurations and to generate synthetic data to train automatic target recognition algorithms.

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