DocumentCode :
616533
Title :
Power-efficient nonuniform 2-D fourier analysis using compressive sensing in WSNs
Author :
Xi Xu ; Ansari, Rashid ; Khokhar, Ashfaq
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Illinois at Chicago, Chicago, IL, USA
fYear :
2013
fDate :
7-10 April 2013
Firstpage :
4381
Lastpage :
4386
Abstract :
Nonuniform Discrete Fourier Transform (NDFT) has been well-investigated for performing fast computation of the frequency content of nonequispaced data samples. This nonuniform formulation is also well-suited for Fourier analysis of data samples collected in randomly deployed wireless sensors. However, most of the existing NDFT formulations employ global communication patterns and thus are inefficient in terms of energy consumption and execution time for in-network realization of NDFT. In this paper, we investigate NDFT implementation that leverages compressive sensing (CS) to reduce the amount of data and global communication, thus allowing the use of a few random measurements to adequately represent sparse signal. Our main idea is to organize 2D random deployment of sensors into a hierarchy of clusters. A local interpolation step is performed in the clusters at the lowest level to convert a nonuniform grid into a uniform grid. The global 2D Fast Fourier Transform (FFT) is then implemented using a multiresolution data aggregation architecture and exploiting CS to reduce data transmission. Using theoretical analysis as well as SIDnet-SWANS based simulations, we demonstrate significant advantages of the proposed method over existing state of the art, in terms of execution time, transmission energy efficiency, signal-to-noise ratio and communication overhead.
Keywords :
compressed sensing; discrete Fourier transforms; interpolation; random processes; wireless sensor networks; FFT; NDFT; SIDnet-SWANS based simulation; WSN; communication overhead; compressive sensing; energy consumption; frequency content; global 2D fast Fourier transform; global communication pattern; local interpolation step; multiresolution data aggregation architecture; nonuniform discrete Fourier transform; nonuniform formulation; power-efficient nonuniform 2D Fourier analysis; random measurement; signal-to-noise ratio; sparse signal; transmission energy efficiency; Algorithm design and analysis; Clustering algorithms; Discrete Fourier transforms; Energy consumption; Indexes; Sensors; Wireless sensor networks; Compressive Sensing; Distributed Computation; Nonuniform Discrete Fourier Transform; Power Efficient Algorithm; Wireless Sensor Network;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Wireless Communications and Networking Conference (WCNC), 2013 IEEE
Conference_Location :
Shanghai
ISSN :
1525-3511
Print_ISBN :
978-1-4673-5938-2
Electronic_ISBN :
1525-3511
Type :
conf
DOI :
10.1109/WCNC.2013.6555283
Filename :
6555283
Link To Document :
بازگشت