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Improving information content in Compressed Sensing by modifying the random re-construction matrices

Publication Type : Journal Article

Publisher : Indian Journal of Science and Technology

Source : Indian Journal of Science and Technology, Indian Society for Education and Environment, Volume 9, Number 14 (2016)

Url : https://www.scopus.com/inward/record.uri?eid=2-s2.0-84965120586&partnerID=40&md5=0291f1836b2e29e090f12c836bf6f0e2

Campus : Coimbatore

School : School of Engineering

Center : Electronics Communication and Instrumentation Forum (ECIF)

Department : Electronics and Communication

Year : 2016

Abstract : pBackground/Objectives: Compressed Sensing (CS) is an efficient sensing paradigm which guarantees reasonable reconstruction with less number of samples. We aim to increase the reconstruction quality of signals in CS. Methods/Statistical Analysis: The behavior of random matrices is analyzed and an efficient method for improving the reconstruction quality is developed in CS based ECG reconstruction applications. The method is compared against Biorthogonal wavelet based approaches. Findings: Our analysis reveals that introduction of a modified column vector in the reconstruction matrix, which contains the sum of all columns of random matrix increases the reconstruction quality in CS applications. This idea was applied to different sparsifying domains and the results are very encouraging. We studied the effect of doing this on the singular values and both unitary matrices U and V. The first singular value (σ) shot up making the condition number high, however there was not much change in the other singular values. The matrix U seems to remain random unitary matrix, where as matrix V has one value becoming unity in its rank space. Application/Improvements: Compared to wavelet based approaches the method shows reasonable improvement in Percentage Root Square Deviation (PRD)./p

Cite this Research Publication : Abhishek S., S. Veni, and Narayanankutty, K. A., “Improving information content in Compressed Sensing by modifying the random re-construction matrices”, Indian Journal of Science and Technology, vol. 9, 2016.

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