DocumentCode
1709695
Title
Analysis of detection performance of modified periodogram over fading channels
Author
Olabiyi, O. ; Annamalai, A.
Author_Institution
Dept. of Electr. & Comput. Eng., Prairie View A&M Univ., Prairie View, TX, USA
fYear
2012
Firstpage
449
Lastpage
453
Abstract
In this article, we investigate the performance of classical and modified periodogram based on the Neyman-Pearson (NP) criterion in terms of the false alarm and detection probabilities. We derive analytical expressions that allow us to compare the performance of the classical periodogram with the Bartlett´s and the Welch´s modified periodogram over generalized fading channels. Our analytical framework also captures the effect zero padding (more FFT points than the length of input sequence) on the detection performance. We show that an unpadded classical periodogram gives the same detection performance as the time domain (TD) equivalent. However, the use of zero padding leads to better energy detection performance. The Welch´s overlapping periodogram averages is also shown to outperform Bartlett´s method (non-overlapping periodogram). Thus we conclude that, it is advantageous to implement the energy detection in the frequency domain (FD) than in the TD. Numerical results have been generated for several representative cases and a careful review of previous works reveals that this is a new contribution to the performance analysis of modified periodogram over fading channels.
Keywords
fading channels; fast Fourier transforms; probability; time-frequency analysis; Bartlett modified periodogram detection; Neyman-Pearson criterion; Welch modified periodogram detection; Welch overlapping periodogram; detection probability; energy detection; fading channels; false alarm; frequency domain analysis; time domain analysis; zero padding; Algorithm design and analysis; Detectors; Energy resolution; Fading; Partitioning algorithms; Performance analysis; Signal to noise ratio; Generalized Marcum Q-Function; Modified Periodograms; Receiver Operating Characteristics; Welch´s and Bartlett´s Periodograms;
fLanguage
English
Publisher
ieee
Conference_Titel
Consumer Communications and Networking Conference (CCNC), 2012 IEEE
Conference_Location
Las Vegas, NV
Print_ISBN
978-1-4577-2070-3
Type
conf
DOI
10.1109/CCNC.2012.6181032
Filename
6181032
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