Optimal power allocation scheme for distributed antenna system with OFDM in frequency-selective fading channels

Optimal power allocation (PA) scheme for distributed antenna systems with orthogonal frequency division multiplexing (DAS-OFDM) over frequency-selective fading channels is presented. The PA design is to optimise the transmit powers of subcarriers to maximise the capacity subject to the total power c...

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Published inElectronics letters Vol. 54; no. 7; pp. 454 - 456
Main Authors Yu, Xiangbin, Wang, Hao, Leung, Shu-Hung, Teng, Tao
Format Journal Article
LanguageEnglish
Published The Institution of Engineering and Technology 05.04.2018
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ISSN0013-5194
1350-911X
1350-911X
DOI10.1049/el.2017.4513

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Abstract Optimal power allocation (PA) scheme for distributed antenna systems with orthogonal frequency division multiplexing (DAS-OFDM) over frequency-selective fading channels is presented. The PA design is to optimise the transmit powers of subcarriers to maximise the capacity subject to the total power constraint. Based on the Karush–Kuhn–Tucker optimality conditions, the optimal PA to the distributed nodes for a subcarrier can be simplified to allocating the power to the node of the largest channel gain. With this result, an efficient algorithm is derived to obtain the optimal PA to the nodes for all the subcarriers of the DAS-OFDM. Compared with an existing suboptimal scheme, the developed scheme can obtain higher capacity and has lower complexity. By computer simulations, the effectiveness of the proposed scheme is verified.
AbstractList Optimal power allocation (PA) scheme for distributed antenna systems with orthogonal frequency division multiplexing (DAS-OFDM) over frequency-selective fading channels is presented. The PA design is to optimise the transmit powers of subcarriers to maximise the capacity subject to the total power constraint. Based on the Karush–Kuhn–Tucker optimality conditions, the optimal PA to the distributed nodes for a subcarrier can be simplified to allocating the power to the node of the largest channel gain. With this result, an efficient algorithm is derived to obtain the optimal PA to the nodes for all the subcarriers of the DAS-OFDM. Compared with an existing suboptimal scheme, the developed scheme can obtain higher capacity and has lower complexity. By computer simulations, the effectiveness of the proposed scheme is verified.
Author Yu, Xiangbin
Teng, Tao
Leung, Shu-Hung
Wang, Hao
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crossref_primary_10_3233_JIFS_210727
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10.1109/TWC.2011.122211.110645
10.1109/MWC.2010.5490977
10.1109/TCOMM.2015.2504958
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Issue 7
Keywords optimal PA scheme
optimal power allocation scheme
channel capacity
transmit power optimisation
computer simulations
largest channel gain
DAS-OFDM
optimisation
fading channels
antenna arrays
distributed antenna system with orthogonal frequency division multiplexing
OFDM modulation
capacity maximisation
Karush– Kuhn–Tucker optimality conditions
frequency-selective fading channels
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Snippet Optimal power allocation (PA) scheme for distributed antenna systems with orthogonal frequency division multiplexing (DAS-OFDM) over frequency-selective fading...
Optimal power allocation (PA) scheme for distributed antenna systems with orthogonal frequency division multiplexing (DAS‐OFDM) over frequency‐selective fading...
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iet
SourceType Enrichment Source
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Publisher
StartPage 454
SubjectTerms antenna arrays
capacity maximisation
channel capacity
computer simulations
DAS‐OFDM
distributed antenna system with orthogonal frequency division multiplexing
fading channels
frequency‐selective fading channels
Karush– Kuhn–Tucker optimality conditions
largest channel gain
OFDM modulation
optimal PA scheme
optimal power allocation scheme
optimisation
transmit power optimisation
Wireless communications
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Title Optimal power allocation scheme for distributed antenna system with OFDM in frequency-selective fading channels
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