Skip to main content
Top
Published in:

16-06-2024 | Short Paper

Robust Adaptive Beamforming Based on Covariance Matrix Reconstruction with Gaussian Random Dimensionality Reduction

Authors: Jieke Zhang, Zhi Zheng, Cheng Wang

Published in: Circuits, Systems, and Signal Processing | Issue 9/2024

Log in

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

The performance of adaptive beamforming will deteriorate severely under small sample support, especially when the number of snapshots is smaller than the number of sensors. In this paper, we propose an effective algorithm for robust adaptive beamforming under small sample. Firstly, we utilize standard Guassian random matrices to construct projection matrices for dimension reduction of sample covariance matrix (SCM) and steering vector (SV). Subsequently, the dimensionality-reduced SCM and SV are used to obtain more accurate Capon power spectrum in the case of small sample. By integrating the corresponding Capon power spectrum over the angular sector without desired signal, the interference-plus-noise covariance matrix (INCM) is then reconstructed. Moreover, the SV of desired signal is estimated by solving a quadratic programming problem. Finally, the weight vector of the beamformer is calculated based on the reconstructed INCM and the estimated SV. Simulation results demonstrate the effectiveness and robustness of the proposed algorithm.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

ATZelektronik

Die Fachzeitschrift ATZelektronik bietet für Entwickler und Entscheider in der Automobil- und Zulieferindustrie qualitativ hochwertige und fundierte Informationen aus dem gesamten Spektrum der Pkw- und Nutzfahrzeug-Elektronik. 

Lassen Sie sich jetzt unverbindlich 2 kostenlose Ausgabe zusenden.

ATZelectronics worldwide

ATZlectronics worldwide is up-to-speed on new trends and developments in automotive electronics on a scientific level with a high depth of information. 

Order your 30-days-trial for free and without any commitment.

Show more products
Literature
1.
go back to reference O. Besson, Adaptive detection using randomly reduced dimension generalized likelihood ratio test. Signal Process. 166, 107265 (2020)CrossRef O. Besson, Adaptive detection using randomly reduced dimension generalized likelihood ratio test. Signal Process. 166, 107265 (2020)CrossRef
2.
go back to reference B.D. Carlson, Covariance matrix estimation errors and diagonal loading in adaptive arrays. IEEE Trans. Aerosp. Electron. Syst. 24(4), 397–401 (1988)CrossRef B.D. Carlson, Covariance matrix estimation errors and diagonal loading in adaptive arrays. IEEE Trans. Aerosp. Electron. Syst. 24(4), 397–401 (1988)CrossRef
3.
go back to reference L. Chang, C.-C. Yeh, Performance of DMI and eigenspace-based beamformers. IEEE Trans. Antennas Propag. 40(11), 1336–1347 (1992)CrossRef L. Chang, C.-C. Yeh, Performance of DMI and eigenspace-based beamformers. IEEE Trans. Antennas Propag. 40(11), 1336–1347 (1992)CrossRef
4.
go back to reference R. Couillet, M. Debbah, Random Matrix Methods for Wireless Communications (Cambridge University Press, Cambridge, 2011)CrossRef R. Couillet, M. Debbah, Random Matrix Methods for Wireless Communications (Cambridge University Press, Cambridge, 2011)CrossRef
5.
go back to reference L. Du, J. Li, P. Stoica, Fully automatic computation of diagonal loading levels for robust adaptive beamforming. IEEE Trans. Aerosp. Electron. Syst. 46(1), 449–458 (2010)CrossRef L. Du, J. Li, P. Stoica, Fully automatic computation of diagonal loading levels for robust adaptive beamforming. IEEE Trans. Aerosp. Electron. Syst. 46(1), 449–458 (2010)CrossRef
6.
go back to reference A.B. Gershman, N.D. Sidiropoulos, S. Shahbazpanahi, M. Bengtsson, B. Ottersten, Convex optimization-based beamforming: from receive to transmit and network designs. IEEE Signal Process. Mag. 27(3), 62–75 (2010)CrossRef A.B. Gershman, N.D. Sidiropoulos, S. Shahbazpanahi, M. Bengtsson, B. Ottersten, Convex optimization-based beamforming: from receive to transmit and network designs. IEEE Signal Process. Mag. 27(3), 62–75 (2010)CrossRef
7.
go back to reference M. Grant, S. Boyd, Y. Ye, CVX: Matlab software for disciplined convex programming, version 2.1, June 2015 (online) M. Grant, S. Boyd, Y. Ye, CVX: Matlab software for disciplined convex programming, version 2.1, June 2015 (online)
8.
go back to reference Y. Gu, A. Leshem, Robust adaptive beamforming based on jointly estimating covariance matrix and steering vector, in 2011 IEEE International Conference on Acoustics, Speech and Signal Processing (ICASSP). IEEE, pp. 2640–2643 (2011) Y. Gu, A. Leshem, Robust adaptive beamforming based on jointly estimating covariance matrix and steering vector, in 2011 IEEE International Conference on Acoustics, Speech and Signal Processing (ICASSP). IEEE, pp. 2640–2643 (2011)
9.
go back to reference Y. Gu, A. Leshem, Robust adaptive beamforming based on interference covariance matrix reconstruction and steering vector estimation. IEEE Trans. Signal Process. 60(7), 3881–3885 (2012)MathSciNetCrossRef Y. Gu, A. Leshem, Robust adaptive beamforming based on interference covariance matrix reconstruction and steering vector estimation. IEEE Trans. Signal Process. 60(7), 3881–3885 (2012)MathSciNetCrossRef
10.
go back to reference F. Huang, W. Sheng, X. Ma, Modified projection approach for robust adaptive array beamforming. Signal Process. 92(7), 1758–1763 (2012)CrossRef F. Huang, W. Sheng, X. Ma, Modified projection approach for robust adaptive array beamforming. Signal Process. 92(7), 1758–1763 (2012)CrossRef
11.
go back to reference L. Huang, J. Zhang, X. Xu, Z. Ye, Robust adaptive beamforming with a novel interference-plus-noise covariance matrix reconstruction method. IEEE Trans. Signal Process. 63(7), 1643–1650 (2015)MathSciNetCrossRef L. Huang, J. Zhang, X. Xu, Z. Ye, Robust adaptive beamforming with a novel interference-plus-noise covariance matrix reconstruction method. IEEE Trans. Signal Process. 63(7), 1643–1650 (2015)MathSciNetCrossRef
12.
go back to reference O. Ledoit, M. Wolf, Some hypothesis tests for the covariance matrix when the dimension is large compared to the sample size. Ann. Stat. 30(4), 1081–1102 (2002)MathSciNetCrossRef O. Ledoit, M. Wolf, Some hypothesis tests for the covariance matrix when the dimension is large compared to the sample size. Ann. Stat. 30(4), 1081–1102 (2002)MathSciNetCrossRef
13.
14.
go back to reference T.L. Marzetta, S.H. Simon, H. Ren, Capon-MVDR spectral estimation from singular data covariance matrix, with no diagonal loading, in Proceedings of the 14th Annual Workshop ASAP, MIT Lincoln Laboratory, pp. 1–6 (2006) T.L. Marzetta, S.H. Simon, H. Ren, Capon-MVDR spectral estimation from singular data covariance matrix, with no diagonal loading, in Proceedings of the 14th Annual Workshop ASAP, MIT Lincoln Laboratory, pp. 1–6 (2006)
15.
go back to reference T.L. Marzetta, G.H. Tucci, S.H. Simon, A random matrix-theoretic approach to handling singular covariance estimates. IEEE Trans. Inf. Theory 57(9), 6256–6271 (2011)MathSciNetCrossRef T.L. Marzetta, G.H. Tucci, S.H. Simon, A random matrix-theoretic approach to handling singular covariance estimates. IEEE Trans. Inf. Theory 57(9), 6256–6271 (2011)MathSciNetCrossRef
16.
go back to reference X. Mestre, M.A. Lagunas, Finite sample size effect on minimum variance beamformers: optimum diagonal loading factor for large arrays. IEEE Trans. Signal Process. 54(1), 69–82 (2005)CrossRef X. Mestre, M.A. Lagunas, Finite sample size effect on minimum variance beamformers: optimum diagonal loading factor for large arrays. IEEE Trans. Signal Process. 54(1), 69–82 (2005)CrossRef
17.
go back to reference F. Shen, F. Chen, J. Song, Robust adaptive beamforming based on steering vector estimation and covariance matrix reconstruction. IEEE Commun. Lett. 19(9), 1636–1639 (2015)CrossRef F. Shen, F. Chen, J. Song, Robust adaptive beamforming based on steering vector estimation and covariance matrix reconstruction. IEEE Commun. Lett. 19(9), 1636–1639 (2015)CrossRef
18.
go back to reference S.A. Vorobyov, Principles of minimum variance robust adaptive beamforming design. Signal Process. 93(12), 3264–3277 (2013)CrossRef S.A. Vorobyov, Principles of minimum variance robust adaptive beamforming design. Signal Process. 93(12), 3264–3277 (2013)CrossRef
19.
go back to reference L. Yang, M.R. McKay, R. Couillet, High-dimensional MVDR beamforming: optimized solutions based on spiked random matrix models. IEEE Trans. Signal Process. 66(7), 1933–1947 (2018)MathSciNetCrossRef L. Yang, M.R. McKay, R. Couillet, High-dimensional MVDR beamforming: optimized solutions based on spiked random matrix models. IEEE Trans. Signal Process. 66(7), 1933–1947 (2018)MathSciNetCrossRef
20.
go back to reference H. Yang, P. Wang, Z. Ye, Robust adaptive beamforming via covariance matrix reconstruction and interference power estimation. IEEE Commun. Lett. 25(10), 3394–3397 (2021)CrossRef H. Yang, P. Wang, Z. Ye, Robust adaptive beamforming via covariance matrix reconstruction and interference power estimation. IEEE Commun. Lett. 25(10), 3394–3397 (2021)CrossRef
21.
go back to reference H. Zheng, C. Zhou, Z. Shi, G. Liao, Sub-Nyquist tensor beamformer: a coprimality constrained design. IEEE Trans. Signal Process. 71, 4163–4177 (2023)MathSciNetCrossRef H. Zheng, C. Zhou, Z. Shi, G. Liao, Sub-Nyquist tensor beamformer: a coprimality constrained design. IEEE Trans. Signal Process. 71, 4163–4177 (2023)MathSciNetCrossRef
22.
go back to reference C. Zhou, Y. Gu, S. He, Z. Shi, A robust and efficient algorithm for coprime array adaptive beamforming. IEEE Trans. Veh. Technol. 67(2), 1099–1112 (2018)CrossRef C. Zhou, Y. Gu, S. He, Z. Shi, A robust and efficient algorithm for coprime array adaptive beamforming. IEEE Trans. Veh. Technol. 67(2), 1099–1112 (2018)CrossRef
23.
go back to reference X. Zhu, X. Xu, Z. Ye, Robust adaptive beamforming via subspace for interference covariance matrix reconstruction. Signal Process. 167, 107289 (2020)CrossRef X. Zhu, X. Xu, Z. Ye, Robust adaptive beamforming via subspace for interference covariance matrix reconstruction. Signal Process. 167, 107289 (2020)CrossRef
Metadata
Title
Robust Adaptive Beamforming Based on Covariance Matrix Reconstruction with Gaussian Random Dimensionality Reduction
Authors
Jieke Zhang
Zhi Zheng
Cheng Wang
Publication date
16-06-2024
Publisher
Springer US
Published in
Circuits, Systems, and Signal Processing / Issue 9/2024
Print ISSN: 0278-081X
Electronic ISSN: 1531-5878
DOI
https://doi.org/10.1007/s00034-024-02742-x