DocumentCode
2150270
Title
Optimized compressed sensing matrix design for noisy communication channels
Author
Shirazinia, Amirpasha ; Dey, Subhrakanti
Author_Institution
Signals & Systems Division, Department of Engineering Sciences, Uppsala University, Sweden
fYear
2015
fDate
8-12 June 2015
Firstpage
4547
Lastpage
4552
Abstract
We investigate a power-constrained sensing matrix design problem for a compressed sensing framework. We adopt a mean square error (MSE) performance criterion for sparse source reconstruction in a system where the source-to-sensor channel and the sensor-to-decoder communication channel are noisy. Our proposed sensing matrix design procedure relies upon minimizing a lower-bound on the MSE. Under certain conditions, we derive closed-form solutions to the optimization problem. Through numerical experiments, by applying practical sparse reconstruction algorithms, we show the strength of the proposed scheme by comparing it with other relevant methods. We discuss the computational complexity of our design method, and develop an equivalent stochastic optimization method to the problem of interest that can be solved approximately with a significantly less computational burden. We illustrate that the low-complexity method still outperforms the popular competing methods.
Keywords
Approximation methods; Computational complexity; Decoding; Noise measurement; Optimization; Sensors; Sparse matrices;
fLanguage
English
Publisher
ieee
Conference_Titel
Communications (ICC), 2015 IEEE International Conference on
Conference_Location
London, United Kingdom
Type
conf
DOI
10.1109/ICC.2015.7249039
Filename
7249039
Link To Document