An Improved Performance Radar Sensor for K-Band Automotive Radars

Author:

Abd El-Hameed Anwer S.12ORCID,Ouf Eman G.1,Elboushi Ayman1ORCID,Seliem Asmaa G.2,Izumi Yuta3

Affiliation:

1. Electronics Research Institute, Cairo 4473221, Egypt

2. Communication and Computer Department, Faculty of Engineering, Nahda University, Beni Suef 62746, Egypt

3. Muroran Institute of Technology, Hankkaido 0500071, Japan

Abstract

This paper presents a new radar sensor configuration of a planar grid antenna array (PGAA) for automotive ultra-wideband (UWB) radar applications. For system realisation, the MIMO concept is adopted. The proposed antenna is designed to operate over the 24 GHz frequency band. It is based on split-ring resonator (SRR) elements to enhance the operating bandwidth and increase the antenna gain, leading to a better-performing radar system. The PGAA consists of thirty-one radiating elements, in which each element excitation is obtained using a common transmission line centre fed by a 50 Ω coaxial probe. By introducing a superstrate dielectric layer at a distance of λ/2 from the top of the antenna array, the PGAA gain and impedance bandwidth are further improved. The gain is improved by 2.7 dB to reach 16.5 dBi at 24 GHz, and the impedance bandwidth is enhanced to 9.3 GHz (37.7%). The measured impedance bandwidth of the proposed antenna array ranges from 20 GHz to 29.3 GHz for a reflection coefficient (S11) of less than −10 dB. The proposed antenna is validated for automotive applications.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference33 articles.

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3. Sakakibara, K., Sugawa, S., Kikuma, N., and Hirayama, H. (2010, January 12–16). Millimeter-wave microstrip array antenna with matching-circuit-integratedradiating-elements for travelling-wave excitation. Proceedings of the Fourth European Conference on Antennas and Propagation, Barcelona, Spain.

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