Coherent Source Enumeration With Compact ULAs
Source enumeration typically relies on subspace-based techniques that require accurate separation of signal and noise subspaces. However, prior works do not address coherent sources in small uniform linear arrays, where ambiguities arise in the spatial spectrum. We address this by decomposing the fo...
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| Vydáno v: | IEEE signal processing letters Ročník 32; s. 3077 - 3081 |
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2025
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| Abstract | Source enumeration typically relies on subspace-based techniques that require accurate separation of signal and noise subspaces. However, prior works do not address coherent sources in small uniform linear arrays, where ambiguities arise in the spatial spectrum. We address this by decomposing the forward-backward smoothed covariance matrix into a sum of a rank-constrained Toeplitz matrix and a diagonal matrix with non-negative entries representing the signal and noise subspaces, respectively. The resulting non-convex optimization problem is solved by proposing T oeplitz a pproach for r ank-based tar g et e s t imation (TARgEt) that employs the alternating direction method of multipliers. Numerical results on both synthetic and real-world datasets demonstrate the effectiveness and robustness of TARgEt over the state-of-the-art. |
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| AbstractList | Source enumeration typically relies on subspace-based techniques that require accurate separation of signal and noise subspaces. However, prior works do not address coherent sources in small uniform linear arrays, where ambiguities arise in the spatial spectrum. We address this by decomposing the forward-backward smoothed covariance matrix into a sum of a rank-constrained Toeplitz matrix and a diagonal matrix with non-negative entries representing the signal and noise subspaces, respectively. The resulting non-convex optimization problem is solved by proposing Toeplitz approach for rank-based target estimation (TARgEt) that employs the alternating direction method of multipliers. Numerical results on both synthetic and real-world datasets demonstrate the effectiveness and robustness of TARgEt over the state-of-the-art. Source enumeration typically relies on subspace-based techniques that require accurate separation of signal and noise subspaces. However, prior works do not address coherent sources in small uniform linear arrays, where ambiguities arise in the spatial spectrum. We address this by decomposing the forward-backward smoothed covariance matrix into a sum of a rank-constrained Toeplitz matrix and a diagonal matrix with non-negative entries representing the signal and noise subspaces, respectively. The resulting non-convex optimization problem is solved by proposing T oeplitz a pproach for r ank-based tar g et e s t imation (TARgEt) that employs the alternating direction method of multipliers. Numerical results on both synthetic and real-world datasets demonstrate the effectiveness and robustness of TARgEt over the state-of-the-art. |
| Author | Krishnan, Sunder Ram Mishra, Kumar Vijay Sil, Dibakar |
| Author_xml | – sequence: 1 givenname: Dibakar orcidid: 0000-0001-7010-0558 surname: Sil fullname: Sil, Dibakar email: dibakar.sil2@gmail.com organization: Independent Researcher, resides in, Bengaluru, India – sequence: 2 givenname: Sunder Ram orcidid: 0000-0003-4844-325X surname: Krishnan fullname: Krishnan, Sunder Ram email: eeksunderram@gmail.com organization: Amrita Vishwa Vidyapeetham, Amritapuri, India – sequence: 3 givenname: Kumar Vijay orcidid: 0000-0002-5386-609X surname: Mishra fullname: Mishra, Kumar Vijay email: kvm@ieee.org organization: University of Maryland, College Park, MD, USA |
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| SubjectTerms | Convexity Covariance matrices Covariance matrix Direction-of-arrival estimation Elliptopes Enumeration Estimation Linear arrays Matrix decomposition Noise Optimization rank constraint Sensor arrays Sensors smoothing Smoothing methods source enumeration Subspaces ULA Vectors |
| Title | Coherent Source Enumeration With Compact ULAs |
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