HEAL DSpace

Measurements and simulation for a joint non-gaussian fast-fading model in indoor-propagation environments

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dc.contributor.author Varlamos, PK en
dc.contributor.author Heretakis, II en
dc.contributor.author Papakanellos, PJ en
dc.contributor.author Trakadas, PT en
dc.contributor.author Capsalis, CN en
dc.date.accessioned 2014-03-01T01:22:43Z
dc.date.available 2014-03-01T01:22:43Z
dc.date.issued 2005 en
dc.identifier.issn 0895-2477 en
dc.identifier.uri https://dspace.lib.ntua.gr/xmlui/handle/123456789/16635
dc.subject Bivariate t-distribution en
dc.subject Indoor radio propagation en
dc.subject Measurements and simulation of non-line-of-sight channels en
dc.subject Rayleigh distribution en
dc.subject Small-scale fading statistics en
dc.subject.classification Engineering, Electrical & Electronic en
dc.subject.classification Optics en
dc.subject.other Communication channels (information theory) en
dc.subject.other Computer program listings en
dc.subject.other Computer simulation en
dc.subject.other Data acquisition en
dc.subject.other Mathematical models en
dc.subject.other Measurement theory en
dc.subject.other Monte Carlo methods en
dc.subject.other Permittivity en
dc.subject.other Personal computers en
dc.subject.other Polynomials en
dc.subject.other Radio transmission en
dc.subject.other Radio transmitters en
dc.subject.other Bivariate t-distribution en
dc.subject.other Indoor radio propagation en
dc.subject.other Measurements and simulation of non-line-of-sight channels en
dc.subject.other Rayleigh distribution en
dc.subject.other Small-scale fading statistics en
dc.subject.other Rayleigh fading en
dc.title Measurements and simulation for a joint non-gaussian fast-fading model in indoor-propagation environments en
heal.type journalArticle en
heal.identifier.primary 10.1002/mop.20866 en
heal.identifier.secondary http://dx.doi.org/10.1002/mop.20866 en
heal.language English en
heal.publicationDate 2005 en
heal.abstract Measurements and simulation are used to study-fast-fading variations of the received continuous-wave signal envelope in non-line-of-sight (NLOS) indoor environments at 1800 MHz. A recently developed joint non-Gaussian statistical model, based on the bivariate t-distribution, is proved to be superior to the Rayleigh distribution in 60% of the examined cases. (c) 2005 Wiley Periodicals, Inc. en
heal.publisher JOHN WILEY & SONS INC en
heal.journalName Microwave and Optical Technology Letters en
dc.identifier.doi 10.1002/mop.20866 en
dc.identifier.isi ISI:000229170100014 en
dc.identifier.volume 45 en
dc.identifier.issue 6 en
dc.identifier.spage 515 en
dc.identifier.epage 519 en


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