A low-complexity spectrum sensing technique for cognitive radios based on correlation of intra-segment decimated vectors

Efficient spectrum sensing plays a vital role in opportunistic and dynamic spectrum access for cognitive radios. Several spectrum sensing algorithms based on energy detection, matched filtering and autocorrelation based feature detection have therefore been proposed in the literature. All these algo...

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Main Authors: Altaf Ahmed, Syed Naveen, Meher, Pramod Kumar, Vinod, Achutavarrier Prasad
Other Authors: School of Computer Engineering
Format: Conference or Workshop Item
Language:English
Published: 2013
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Online Access:https://hdl.handle.net/10356/97713
http://hdl.handle.net/10220/11943
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-977132020-05-28T07:18:07Z A low-complexity spectrum sensing technique for cognitive radios based on correlation of intra-segment decimated vectors Altaf Ahmed, Syed Naveen Meher, Pramod Kumar Vinod, Achutavarrier Prasad School of Computer Engineering IEEE International Conference on Communication Systems (2012 : Singapore) DRNTU::Engineering::Computer science and engineering Efficient spectrum sensing plays a vital role in opportunistic and dynamic spectrum access for cognitive radios. Several spectrum sensing algorithms based on energy detection, matched filtering and autocorrelation based feature detection have therefore been proposed in the literature. All these algorithms tend to have higher complexity for achieving better sensing performance, which requires higher computing power and/or more sensing time. Moreover they are not flexible enough to dynamically trade complexity with sensing performance. In this paper, we present a novel low-complexity spectrum sensing technique based on correlation of intra-segment decimated vectors. The primary signal to be detected is sampled at a particular frequency, and digitized samples are segmented and decimated by suitable decimation index. The means of resulting vectors are correlated to detect the presence of the signal. MATLAB simulations of the proposed technique have been carried out to validate the proposed technique. Single-tone and Multi-tone signal at a 25MHz IF frequency and ATSC DTV (in UHF) signal and PAL-B Analog TV (in VHF) signal are down-converted to 25MHz IF frequency, and used to validate the proposed detection technique. Not only the proposed scheme is found to able to detect the presence of a signal effectively, but also the complexity of the proposed scheme is only nearly 1/10th of the complexity (for vector length n = 10) of the simplest of the existing correlation based technique. 2013-07-22T03:45:19Z 2019-12-06T19:45:47Z 2013-07-22T03:45:19Z 2019-12-06T19:45:47Z 2012 2012 Conference Paper Altaf Ahmed, S. N., Meher, P. K., & Vinod, A. P. (2012). A low-complexity spectrum sensing technique for cognitive radios based on correlation of intra-segment decimated vectors. 2012 IEEE International Conference on Communication Systems (ICCS). https://hdl.handle.net/10356/97713 http://hdl.handle.net/10220/11943 10.1109/ICCS.2012.6406187 en © 2012 IEEE.
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
topic DRNTU::Engineering::Computer science and engineering
spellingShingle DRNTU::Engineering::Computer science and engineering
Altaf Ahmed, Syed Naveen
Meher, Pramod Kumar
Vinod, Achutavarrier Prasad
A low-complexity spectrum sensing technique for cognitive radios based on correlation of intra-segment decimated vectors
description Efficient spectrum sensing plays a vital role in opportunistic and dynamic spectrum access for cognitive radios. Several spectrum sensing algorithms based on energy detection, matched filtering and autocorrelation based feature detection have therefore been proposed in the literature. All these algorithms tend to have higher complexity for achieving better sensing performance, which requires higher computing power and/or more sensing time. Moreover they are not flexible enough to dynamically trade complexity with sensing performance. In this paper, we present a novel low-complexity spectrum sensing technique based on correlation of intra-segment decimated vectors. The primary signal to be detected is sampled at a particular frequency, and digitized samples are segmented and decimated by suitable decimation index. The means of resulting vectors are correlated to detect the presence of the signal. MATLAB simulations of the proposed technique have been carried out to validate the proposed technique. Single-tone and Multi-tone signal at a 25MHz IF frequency and ATSC DTV (in UHF) signal and PAL-B Analog TV (in VHF) signal are down-converted to 25MHz IF frequency, and used to validate the proposed detection technique. Not only the proposed scheme is found to able to detect the presence of a signal effectively, but also the complexity of the proposed scheme is only nearly 1/10th of the complexity (for vector length n = 10) of the simplest of the existing correlation based technique.
author2 School of Computer Engineering
author_facet School of Computer Engineering
Altaf Ahmed, Syed Naveen
Meher, Pramod Kumar
Vinod, Achutavarrier Prasad
format Conference or Workshop Item
author Altaf Ahmed, Syed Naveen
Meher, Pramod Kumar
Vinod, Achutavarrier Prasad
author_sort Altaf Ahmed, Syed Naveen
title A low-complexity spectrum sensing technique for cognitive radios based on correlation of intra-segment decimated vectors
title_short A low-complexity spectrum sensing technique for cognitive radios based on correlation of intra-segment decimated vectors
title_full A low-complexity spectrum sensing technique for cognitive radios based on correlation of intra-segment decimated vectors
title_fullStr A low-complexity spectrum sensing technique for cognitive radios based on correlation of intra-segment decimated vectors
title_full_unstemmed A low-complexity spectrum sensing technique for cognitive radios based on correlation of intra-segment decimated vectors
title_sort low-complexity spectrum sensing technique for cognitive radios based on correlation of intra-segment decimated vectors
publishDate 2013
url https://hdl.handle.net/10356/97713
http://hdl.handle.net/10220/11943
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