Outage probability versus power allocation factors, with m = 2, = = 1 [BPCU] and = 5 [dB].

<p>Outage probability versus power allocation factors, with m = 2, = = 1 [BPCU] and = 5 [dB].</p>

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Главный автор: Minh Tran (7698803) (author)
Другие авторы: Minh Bui Vu (22683661) (author), Sang Quang Nguyen (22683664) (author)
Опубликовано: 2025
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_version_ 1849927626307665920
author Minh Tran (7698803)
author2 Minh Bui Vu (22683661)
Sang Quang Nguyen (22683664)
author2_role author
author
author_facet Minh Tran (7698803)
Minh Bui Vu (22683661)
Sang Quang Nguyen (22683664)
author_role author
dc.creator.none.fl_str_mv Minh Tran (7698803)
Minh Bui Vu (22683661)
Sang Quang Nguyen (22683664)
dc.date.none.fl_str_mv 2025-11-25T18:41:56Z
dc.identifier.none.fl_str_mv 10.1371/journal.pone.0336951.g006
dc.relation.none.fl_str_mv https://figshare.com/articles/figure/Outage_probability_versus_power_allocation_factors_with_m_2_1_BPCU_and_5_dB_/30714997
dc.rights.none.fl_str_mv CC BY 4.0
info:eu-repo/semantics/openAccess
dc.subject.none.fl_str_mv Pharmacology
Evolutionary Biology
Space Science
Biological Sciences not elsewhere classified
Chemical Sciences not elsewhere classified
Physical Sciences not elsewhere classified
thereby mitigating inter
secondary users via
orthogonal multiple access
numerical results confirm
monte carlo simulations
ergodic data rate
base station communicates
amplify incident signals
adjust phase shifts
enhance spectral efficiency
deriving exact op
asymptotic op analysis
enhanced noma systems
overcoming multiplicative fading
div >< p
comprehensive performance analysis
approximate edr expression
achievable diversity order
assisted noma architecture
op ), throughput
diversity order
network assisted
energy efficiency
minimize op
user interference
sharing scenario
sharing networks
primary user
paper presents
outage probability
optimization problem
nakagami -<
main contributions
form expressions
ee ),
downlink non
also formulate
active ris
dc.title.none.fl_str_mv Outage probability versus power allocation factors, with m = 2, = = 1 [BPCU] and = 5 [dB].
dc.type.none.fl_str_mv Image
Figure
info:eu-repo/semantics/publishedVersion
image
description <p>Outage probability versus power allocation factors, with m = 2, = = 1 [BPCU] and = 5 [dB].</p>
eu_rights_str_mv openAccess
id Manara_10b23880cfe36bb74ab673fb848449c1
identifier_str_mv 10.1371/journal.pone.0336951.g006
network_acronym_str Manara
network_name_str ManaraRepo
oai_identifier_str oai:figshare.com:article/30714997
publishDate 2025
repository.mail.fl_str_mv
repository.name.fl_str_mv
repository_id_str
rights_invalid_str_mv CC BY 4.0
spelling Outage probability versus power allocation factors, with m = 2, = = 1 [BPCU] and = 5 [dB].Minh Tran (7698803)Minh Bui Vu (22683661)Sang Quang Nguyen (22683664)PharmacologyEvolutionary BiologySpace ScienceBiological Sciences not elsewhere classifiedChemical Sciences not elsewhere classifiedPhysical Sciences not elsewhere classifiedthereby mitigating intersecondary users viaorthogonal multiple accessnumerical results confirmmonte carlo simulationsergodic data ratebase station communicatesamplify incident signalsadjust phase shiftsenhance spectral efficiencyderiving exact opasymptotic op analysisenhanced noma systemsovercoming multiplicative fadingdiv >< pcomprehensive performance analysisapproximate edr expressionachievable diversity orderassisted noma architectureop ), throughputdiversity ordernetwork assistedenergy efficiencyminimize opuser interferencesharing scenariosharing networksprimary userpaper presentsoutage probabilityoptimization problemnakagami -<main contributionsform expressionsee ),downlink nonalso formulateactive ris<p>Outage probability versus power allocation factors, with m = 2, = = 1 [BPCU] and = 5 [dB].</p>2025-11-25T18:41:56ZImageFigureinfo:eu-repo/semantics/publishedVersionimage10.1371/journal.pone.0336951.g006https://figshare.com/articles/figure/Outage_probability_versus_power_allocation_factors_with_m_2_1_BPCU_and_5_dB_/30714997CC BY 4.0info:eu-repo/semantics/openAccessoai:figshare.com:article/307149972025-11-25T18:41:56Z
spellingShingle Outage probability versus power allocation factors, with m = 2, = = 1 [BPCU] and = 5 [dB].
Minh Tran (7698803)
Pharmacology
Evolutionary Biology
Space Science
Biological Sciences not elsewhere classified
Chemical Sciences not elsewhere classified
Physical Sciences not elsewhere classified
thereby mitigating inter
secondary users via
orthogonal multiple access
numerical results confirm
monte carlo simulations
ergodic data rate
base station communicates
amplify incident signals
adjust phase shifts
enhance spectral efficiency
deriving exact op
asymptotic op analysis
enhanced noma systems
overcoming multiplicative fading
div >< p
comprehensive performance analysis
approximate edr expression
achievable diversity order
assisted noma architecture
op ), throughput
diversity order
network assisted
energy efficiency
minimize op
user interference
sharing scenario
sharing networks
primary user
paper presents
outage probability
optimization problem
nakagami -<
main contributions
form expressions
ee ),
downlink non
also formulate
active ris
status_str publishedVersion
title Outage probability versus power allocation factors, with m = 2, = = 1 [BPCU] and = 5 [dB].
title_full Outage probability versus power allocation factors, with m = 2, = = 1 [BPCU] and = 5 [dB].
title_fullStr Outage probability versus power allocation factors, with m = 2, = = 1 [BPCU] and = 5 [dB].
title_full_unstemmed Outage probability versus power allocation factors, with m = 2, = = 1 [BPCU] and = 5 [dB].
title_short Outage probability versus power allocation factors, with m = 2, = = 1 [BPCU] and = 5 [dB].
title_sort Outage probability versus power allocation factors, with m = 2, = = 1 [BPCU] and = 5 [dB].
topic Pharmacology
Evolutionary Biology
Space Science
Biological Sciences not elsewhere classified
Chemical Sciences not elsewhere classified
Physical Sciences not elsewhere classified
thereby mitigating inter
secondary users via
orthogonal multiple access
numerical results confirm
monte carlo simulations
ergodic data rate
base station communicates
amplify incident signals
adjust phase shifts
enhance spectral efficiency
deriving exact op
asymptotic op analysis
enhanced noma systems
overcoming multiplicative fading
div >< p
comprehensive performance analysis
approximate edr expression
achievable diversity order
assisted noma architecture
op ), throughput
diversity order
network assisted
energy efficiency
minimize op
user interference
sharing scenario
sharing networks
primary user
paper presents
outage probability
optimization problem
nakagami -<
main contributions
form expressions
ee ),
downlink non
also formulate
active ris