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Compact MIMO Radar of Improved Angular Resolution Using Interleaved Array Geometry

delete2024-05-01
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PRE
AI
A
Ananya Mukherjee *
D
Debdeep Sarkar
DOI:10.1109/TVT.2023.3337800delete
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摘要

摘要

En 中文
In this paper, a compact two transmitter-four receiver (2Tx-4Rx) multiple input multiple output (MIMO) Radar based on binomially tapered-series fed patch (BT-SFP) antenna has been designed at 76 GHz mm-wave band for autonomous driving applications with high angular resolution. Considering three different MIMO Radar topologies, the efficient target detection have been studied by using suitable Radar performance metrics like ambiguity function and field of view (FOV), besides antenna parameters like impedance matching and mutual coupling. An improved angular resolution has been obtained by judicial placement of antenna elements in the proposed interleaved MIMO array topology, which leads to a minimally redundant array configuration having more extensive virtual aperture of $1.4\lambda$ (here $\lambda$ is the free-space wavelength at 76 GHz), improved isolation and broad ambiguity free region in the azimuthal plane. The proposed interleaved MIMO array topology yielded a 12(degrees) angular resolution in single layer configuration having total area of 30 x 18 mm(2)(35.42 lambda(2)), which renders it as a simple cost-effective design that exhibit less spectral broadening in frequency domain and thus less sensitive to the environmental noise. To validate the proposed methodology, a scaled structure of the interleaved MIMO array operating at 24 GHz has been realized using full-wave solver CST-MWS. Furthermore, the interleaved MIMO array prototype at 24 GHz is fabricated, and reasonable match between simulated results (S-parameters and patterns) and experimental data is obtained.
Keyword:
MIMO communication
MIMO radar
Radar antennas
Radar
Transmitting antennas
Apertures
Receiving antennas
Automotive Radars
ambiguity function
angular resolution
multiple input multiple output (MIMO)
range- Doppler plot
series fed microstrip patch

期刊

IEEE Transactions on Vehicular Technology 封面图
IEEE Transactions on Vehicular Technology
IF:
7.1
论文数:
1.8W
被引数:
6.6W

机构

I
indian institute of science (iisc) - bangalore
学者数:
1.4W
论文数: 1.4W
被引数: 11
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