Energy detection of unknown deterministic signals in κ-μ and η-μ generalized fading channels with diversity receivers

In this article, we present an alternative moment generating function (MGF) based method for evaluating the receiver operating characteristics (ROC) of diversity energy detectors in a generalized fading environment. In contrast to the existing approaches that are based on either the circular contour...

Full description

Saved in:
Bibliographic Details
Published in2014 International Conference on Computing, Networking and Communications (ICNC) pp. 761 - 765
Main Authors Annamalai, A., Olaluwe, A.
Format Conference Proceeding
LanguageEnglish
Published IEEE 01.02.2014
Subjects
Online AccessGet full text
DOI10.1109/ICCNC.2014.6785432

Cover

Abstract In this article, we present an alternative moment generating function (MGF) based method for evaluating the receiver operating characteristics (ROC) of diversity energy detectors in a generalized fading environment. In contrast to the existing approaches that are based on either the circular contour integral and/or infinite series representations of the generalized Marcum Q-function Q u (.,.), we utilize an exponential-type integral for Q u (.,.) to facilitate the statistical averaging task over the independent and non-identically distributed (i.n.d) fading signal-to-noise ratios (SNRs). This leads to a very compact, exact, and an efficient solution for computing the average detection probabilities of diversity enabled energy detectors in a myriad of fading environments especially for the practical cases of square law selection (SLS) and square-law combining (SLC) diversity receivers with i.n.d and correlated fading statistics. Our unified analytical framework also encapsulates the existing results for Rayleigh, Nakagami-m, Nakagami-q and Rice fading environments by appropriate substitutions of the fading parameters in the κ-μ and η-μ generalized stochastic channel models.
AbstractList In this article, we present an alternative moment generating function (MGF) based method for evaluating the receiver operating characteristics (ROC) of diversity energy detectors in a generalized fading environment. In contrast to the existing approaches that are based on either the circular contour integral and/or infinite series representations of the generalized Marcum Q-function Q u (.,.), we utilize an exponential-type integral for Q u (.,.) to facilitate the statistical averaging task over the independent and non-identically distributed (i.n.d) fading signal-to-noise ratios (SNRs). This leads to a very compact, exact, and an efficient solution for computing the average detection probabilities of diversity enabled energy detectors in a myriad of fading environments especially for the practical cases of square law selection (SLS) and square-law combining (SLC) diversity receivers with i.n.d and correlated fading statistics. Our unified analytical framework also encapsulates the existing results for Rayleigh, Nakagami-m, Nakagami-q and Rice fading environments by appropriate substitutions of the fading parameters in the κ-μ and η-μ generalized stochastic channel models.
Author Olaluwe, A.
Annamalai, A.
Author_xml – sequence: 1
  givenname: A.
  surname: Annamalai
  fullname: Annamalai, A.
  organization: Dept. of Electr. & Comput. Eng., Prairie View A&M Univ., Prairie View, TX, USA
– sequence: 2
  givenname: A.
  surname: Olaluwe
  fullname: Olaluwe, A.
  organization: Dept. of Electr. & Comput. Eng., Prairie View A&M Univ., Prairie View, TX, USA
BookMark eNotkEFOwzAQRY0ECyi9AGx8gZRJYsf2EkUFKlWw6b5y4kk6op2gJFCFiyEhztAzEUpXf2b09KT5V-KcG0YhbmKYxTG4u0WeP-ezBGI1y4zVKk3OxNQZGyvjXJJqay_FMGds60EG7LHsqWHZVPKdX7nZ8_HY7oip66mUHdXst50klofv6PAjPQd5-PqbahwtfkufGGTlA3Ety41nxhHfU7-RgT6w7agfZIslHpdrcVGNOpyeciJWD_NV_hQtXx4X-f0yIgd9VGirNShjKuUd6ArAJj52HlSGDtGCCSGxUBVFVlgfwIx_VcpaBG1gBNOJuP3XEiKu31ra-XZYn_pIfwF6S16p
ContentType Conference Proceeding
DBID 6IE
6IL
CBEJK
RIE
RIL
DOI 10.1109/ICCNC.2014.6785432
DatabaseName IEEE Electronic Library (IEL) Conference Proceedings
IEEE Proceedings Order Plan All Online (POP All Online) 1998-present by volume
IEEE Xplore All Conference Proceedings
IEEE Xplore
IEEE Proceedings Order Plans (POP All) 1998-Present
DatabaseTitleList
Database_xml – sequence: 1
  dbid: RIE
  name: IEEE Electronic Library (IEL)
  url: https://proxy.k.utb.cz/login?url=https://ieeexplore.ieee.org/
  sourceTypes: Publisher
DeliveryMethod fulltext_linktorsrc
EISBN 9781479923588
1479923583
EndPage 765
ExternalDocumentID 6785432
Genre orig-research
GroupedDBID 6IE
6IL
CBEJK
RIE
RIL
ID FETCH-LOGICAL-i90t-b58550477f4a905f0082a19a046e9ee807dd280fbb6b8ad07235f488e0570a193
IEDL.DBID RIE
IngestDate Thu Jun 29 18:38:25 EDT 2023
IsPeerReviewed false
IsScholarly false
Language English
LinkModel DirectLink
MergedId FETCHMERGED-LOGICAL-i90t-b58550477f4a905f0082a19a046e9ee807dd280fbb6b8ad07235f488e0570a193
PageCount 5
ParticipantIDs ieee_primary_6785432
PublicationCentury 2000
PublicationDate 2014-Feb.
PublicationDateYYYYMMDD 2014-02-01
PublicationDate_xml – month: 02
  year: 2014
  text: 2014-Feb.
PublicationDecade 2010
PublicationTitle 2014 International Conference on Computing, Networking and Communications (ICNC)
PublicationTitleAbbrev ICCNC
PublicationYear 2014
Publisher IEEE
Publisher_xml – name: IEEE
Score 1.6439573
Snippet In this article, we present an alternative moment generating function (MGF) based method for evaluating the receiver operating characteristics (ROC) of...
SourceID ieee
SourceType Publisher
StartPage 761
SubjectTerms Cognitive radio
Detectors
Diversity reception
energy detection
maximal-ratio combining
moment generating function method
Rayleigh channels
Receivers
Signal to noise ratio
square-law combining
square-law selection
κ-μ and η-μ fading channels
Title Energy detection of unknown deterministic signals in κ-μ and η-μ generalized fading channels with diversity receivers
URI https://ieeexplore.ieee.org/document/6785432
hasFullText 1
inHoldings 1
isFullTextHit
isPrint
link http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwjV1NSwMxEA21J08qrfhNDh7NNm2T_TgvLVVo8VCht7JJJrIIqZTtwf4xQfwN_U1msm1F8eAtmwR2SSYz2cl7L4Tc-k0v16qnGM9SzYSxnGUWUoY6KtIWsW_HhP54Eo-exMNMzhrkbs-FAYAAPoMIi-Es3yz0ClNlHe9Ypeh7h3vgzazmau14MDzr3Of5JEewloi2HX_cmBICxvCIjHevqnEiL9GqUpFe_1Jh_O-3HJP2NzWPPu6DzglpgGuRt0Fg8FEDVUBWObqwdOUwX-ZC5bJWyC01RbyGtzhaOrr5YJtPWjhDN-9Yeq4VqMs1GGoDtJ4iLdj56EkxXUvNDsNBvZuE8NAm0-Fgmo_Y9k4FVma8YkqigJlIEiuKjEuLO4CimxX-LxkygJQnxvRSbpWKVVoYnvT60vo1Dn5bx33H_ilpuoWDM0K7OvVNCZ7bGhGrwhsDt9qAiDWXEsQ5aeGozV9r1Yz5dsAu_q6-JIc4czUe-oo0q-UKrn24r9RNmOcvimGxmQ
linkProvider IEEE
linkToHtml http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwjV3LTgIxFG0ILnSlBoxvu3BphwLtPNYTCCgQF5iwI9P21kxMiiEzC_kxE-M38E22HcBoXLjrtE1m0se9d27POUXo1ga9VIqOIDSJJWFKU5JoiInTUeE6C227S-iPJ-Hgid3P-KyG7nZcGADw4DMIXNGf5auFLF2qrGUNK2dda3D3rN9nvGJrbZkwNGkN03SSOrgWCzZdf9yZ4l1G_xCNty-rkCIvQVmIQK5-6TD-92uOUPObnIcfd27nGNXANNBbz3P4sILCY6sMXmhcGpcxM75yWWnk5hI7xIZdczg3eP1B1p84Mwqv313pudKgzlegsPbgeuyIwcb6T-wStlhtURzYGkrwD0007fem6YBsblUgeUILIriTMGNRpFmWUK5dDJC1k8z-J0MCENNIqU5MtRChiDNFo06Xa7vLwQZ21HbsnqC6WRg4RbgtY9sUuZNbxUKR2eVAtVTAQkk5B3aGGm7U5q-VbsZ8M2Dnf1ffoP3BdDyaj4aThwt04GaxQkdfonqxLOHKOv9CXPs5_wL75bTm
openUrl ctx_ver=Z39.88-2004&ctx_enc=info%3Aofi%2Fenc%3AUTF-8&rfr_id=info%3Asid%2Fsummon.serialssolutions.com&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Abook&rft.genre=proceeding&rft.title=2014+International+Conference+on+Computing%2C+Networking+and+Communications+%28ICNC%29&rft.atitle=Energy+detection+of+unknown+deterministic+signals+in+%CE%BA-%CE%BC+and+%CE%B7-%CE%BC+generalized+fading+channels+with+diversity+receivers&rft.au=Annamalai%2C+A.&rft.au=Olaluwe%2C+A.&rft.date=2014-02-01&rft.pub=IEEE&rft.spage=761&rft.epage=765&rft_id=info:doi/10.1109%2FICCNC.2014.6785432&rft.externalDocID=6785432