Rate-Optimized Power Allocation for DF-Relayed OFDM Transmission under Sum and Individual Power Constraints

<p/> <p>We consider an OFDM (orthogonal frequency division multiplexing) point-to-point transmission scheme which is enhanced by means of a relay. Symbols sent by the source during a first time slot may be (but are not necessarily) retransmitted by the relay during a second time slot. Th...

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Main Authors: Vandendorpe Luc, Louveaux J&#233;r&#244;me, Oguz Onur, Zaidi Abdellatif
Format: Article
Language:English
Published: SpringerOpen 2009-01-01
Series:EURASIP Journal on Wireless Communications and Networking
Online Access:http://jwcn.eurasipjournals.com/content/2009/814278
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spelling doaj-338b6c61c8b3433a8e457239af860da02020-11-24T22:13:39ZengSpringerOpenEURASIP Journal on Wireless Communications and Networking1687-14721687-14992009-01-0120091814278Rate-Optimized Power Allocation for DF-Relayed OFDM Transmission under Sum and Individual Power ConstraintsVandendorpe LucLouveaux J&#233;r&#244;meOguz OnurZaidi Abdellatif<p/> <p>We consider an OFDM (orthogonal frequency division multiplexing) point-to-point transmission scheme which is enhanced by means of a relay. Symbols sent by the source during a first time slot may be (but are not necessarily) retransmitted by the relay during a second time slot. The relay is assumed to be of the DF (decode-and-forward) type. For each relayed carrier, the destination implements maximum ratio combining. Two protocols are considered. Assuming perfect CSI (channel state information), the paper investigates the power allocation problem so as to maximize the rate offered by the scheme for two types of power constraints. Both cases of sum power constraint and individual power constraints at the source and at the relay are addressed. The theoretical analysis is illustrated through numerical results for the two protocols and both types of constraints.</p>http://jwcn.eurasipjournals.com/content/2009/814278
collection DOAJ
language English
format Article
sources DOAJ
author Vandendorpe Luc
Louveaux J&#233;r&#244;me
Oguz Onur
Zaidi Abdellatif
spellingShingle Vandendorpe Luc
Louveaux J&#233;r&#244;me
Oguz Onur
Zaidi Abdellatif
Rate-Optimized Power Allocation for DF-Relayed OFDM Transmission under Sum and Individual Power Constraints
EURASIP Journal on Wireless Communications and Networking
author_facet Vandendorpe Luc
Louveaux J&#233;r&#244;me
Oguz Onur
Zaidi Abdellatif
author_sort Vandendorpe Luc
title Rate-Optimized Power Allocation for DF-Relayed OFDM Transmission under Sum and Individual Power Constraints
title_short Rate-Optimized Power Allocation for DF-Relayed OFDM Transmission under Sum and Individual Power Constraints
title_full Rate-Optimized Power Allocation for DF-Relayed OFDM Transmission under Sum and Individual Power Constraints
title_fullStr Rate-Optimized Power Allocation for DF-Relayed OFDM Transmission under Sum and Individual Power Constraints
title_full_unstemmed Rate-Optimized Power Allocation for DF-Relayed OFDM Transmission under Sum and Individual Power Constraints
title_sort rate-optimized power allocation for df-relayed ofdm transmission under sum and individual power constraints
publisher SpringerOpen
series EURASIP Journal on Wireless Communications and Networking
issn 1687-1472
1687-1499
publishDate 2009-01-01
description <p/> <p>We consider an OFDM (orthogonal frequency division multiplexing) point-to-point transmission scheme which is enhanced by means of a relay. Symbols sent by the source during a first time slot may be (but are not necessarily) retransmitted by the relay during a second time slot. The relay is assumed to be of the DF (decode-and-forward) type. For each relayed carrier, the destination implements maximum ratio combining. Two protocols are considered. Assuming perfect CSI (channel state information), the paper investigates the power allocation problem so as to maximize the rate offered by the scheme for two types of power constraints. Both cases of sum power constraint and individual power constraints at the source and at the relay are addressed. The theoretical analysis is illustrated through numerical results for the two protocols and both types of constraints.</p>
url http://jwcn.eurasipjournals.com/content/2009/814278
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