Optically Transparent Meta-Grating Embedded in Rear Windshields for Automotive Radar Detection
Sergey Geyman, Dmytro Vovchuk, Denis Kolchanov, Mykola Khobzei, Vladyslav Tkach, Hagit Gilon, Eyal Cohen, Eran Yunger, Vjaceslavs Bobrovs, Aviel Glam, Ofer Amrani, Pavel Ginzburg

TL;DR
This paper introduces an optically transparent meta-grating embedded in rear windshields to significantly enhance automotive radar detection by increasing the radar cross-section without compromising transparency.
Contribution
It presents a novel design of a transparent meta-grating embedded in rear windshields that retroreflects radar signals, substantially improving vehicle detectability in automotive radar systems.
Findings
Achieved an RCS of 8 sq. m. with a 90% transparent sample.
Projected a potential RCS of 1000 sq. m. for full rear window implementation.
Enhanced radar detectability range by nearly an order of magnitude.
Abstract
Radar plays a crucial role in automotive safety by enabling reliable object detection, thereby assisting drivers and, prospectively, serving as one of the primary sensors in autonomous driving. The radar visibility of a road participant depends on its radar cross-section (RCS). While RCS is an inherent property, enhancing it, similar to using reflective vests for optical visibility, can significantly improve radar detection through cooperative target design. However, modern vehicles are not designed for this purpose, and embedded reflectors are not utilized due to the industry's conservative approach and the limited space available on the vehicle's exterior. Rear windshields offer a vast unused area, but they must still serve their primary function and remain transparent. We propose utilizing this area by embedding a reflecting surface that accounts for the interrogation scenario…
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Taxonomy
TopicsAdvanced Antenna and Metasurface Technologies · Metamaterials and Metasurfaces Applications · Plasmonic and Surface Plasmon Research
