MIMO radar with spatial-frequency diversity for improved detection performance

The Multiple Input Multiple Output (MIMO) radar concept exploits the independence between signals at the array elements unlike beamforming which presumes a high correlation between signals either transmitted or received by an array. Radar Cross Section (RCS) of a complex target varies with both tran...

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Published in2010 IEEE International Conference on Communication Control and Computing Technologies pp. 66 - 70
Main Authors Shanbhag, Kiran V, Deb, Debasish, Kulkarni, Muralidhar
Format Conference Proceeding
LanguageEnglish
Published IEEE 01.10.2010
Subjects
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ISBN9781424477692
1424477697
DOI10.1109/ICCCCT.2010.5670726

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Abstract The Multiple Input Multiple Output (MIMO) radar concept exploits the independence between signals at the array elements unlike beamforming which presumes a high correlation between signals either transmitted or received by an array. Radar Cross Section (RCS) of a complex target varies with both transmitted frequency and target geometry. By widely separating transmit and receive antennas, MIMO radar systems observe a target simultaneously from different aspects resulting in spatial diversity, thus improving the detection performance. Also by utilizing different frequencies, independent RCS of the target can be observed, thus resulting in frequency diversity. In this paper, the spatial and the frequency diversities are studied together to bring out the combined benefits. The system proposed will not only have several antennas appropriately spaced but also several operating frequencies appropriately spaced, providing a better detection performance than conventional MIMO radar systems for the same transmission power. The simulation results exhibit a better detection performance of the proposed system as compared to MIMO radar systems with only spatial diversity.
AbstractList The Multiple Input Multiple Output (MIMO) radar concept exploits the independence between signals at the array elements unlike beamforming which presumes a high correlation between signals either transmitted or received by an array. Radar Cross Section (RCS) of a complex target varies with both transmitted frequency and target geometry. By widely separating transmit and receive antennas, MIMO radar systems observe a target simultaneously from different aspects resulting in spatial diversity, thus improving the detection performance. Also by utilizing different frequencies, independent RCS of the target can be observed, thus resulting in frequency diversity. In this paper, the spatial and the frequency diversities are studied together to bring out the combined benefits. The system proposed will not only have several antennas appropriately spaced but also several operating frequencies appropriately spaced, providing a better detection performance than conventional MIMO radar systems for the same transmission power. The simulation results exhibit a better detection performance of the proposed system as compared to MIMO radar systems with only spatial diversity.
Author Deb, Debasish
Kulkarni, Muralidhar
Shanbhag, Kiran V
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  organization: Dept. of ECE, NITK, Surathkal, India
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Snippet The Multiple Input Multiple Output (MIMO) radar concept exploits the independence between signals at the array elements unlike beamforming which presumes a...
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StartPage 66
SubjectTerms Arrays
Chi-square distribution
Frequency diversity
MIMO radar
Orthogonality
Radar antennas
RCS
Receiver Operating Characteristics (ROC)
Scatterers
Signal to noise ratio
Transmitting antennas
Title MIMO radar with spatial-frequency diversity for improved detection performance
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