Resource Allocation for the Multiband Relay Channel: A Building Block for Hybrid Wireless Networks
We investigate optimal resource allocation for the multiband relay channel. We find the optimal power and bandwidth allocation strategies that maximize the bounds on the capacity, by solving the corresponding max-min optimization problem. We provide sufficient conditions under which the associated m...
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Series: | EURASIP Journal on Wireless Communications and Networking |
Online Access: | http://dx.doi.org/10.1155/2010/792410 |
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doaj-4c46e683efe94cd0a381ad1752ccf95b2020-11-24T20:54:14ZengSpringerOpenEURASIP Journal on Wireless Communications and Networking1687-14721687-14992010-01-01201010.1155/2010/792410Resource Allocation for the Multiband Relay Channel: A Building Block for Hybrid Wireless NetworksKyounghwan LeeAylin YenerXiang HeWe investigate optimal resource allocation for the multiband relay channel. We find the optimal power and bandwidth allocation strategies that maximize the bounds on the capacity, by solving the corresponding max-min optimization problem. We provide sufficient conditions under which the associated max-min problem is equivalent to a supporting plane problem, which renders the solution for an arbitrary number of bands tractable. In addition, the sufficient conditions derived are general enough so that a class of utility functions can be accommodated with this formulation. As an example, we concentrate on the case where the source has two bands and the relay has a single band available and find the optimal resource allocation. We observe that joint power and bandwidth optimization always yields higher achievable rates than power optimization alone, establishing the merit of bandwidth sharing. Motivated by our analytical results, we examine a simple scenario where new channels become available for a transmitter to communicate; that is, new source to relay bands are added to a frequency division relay network. Given the channel conditions of the network, we establish the guidelines on how to allocate resources in order to achieve higher rates, depending on the relative quality of the available links. http://dx.doi.org/10.1155/2010/792410 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Kyounghwan Lee Aylin Yener Xiang He |
spellingShingle |
Kyounghwan Lee Aylin Yener Xiang He Resource Allocation for the Multiband Relay Channel: A Building Block for Hybrid Wireless Networks EURASIP Journal on Wireless Communications and Networking |
author_facet |
Kyounghwan Lee Aylin Yener Xiang He |
author_sort |
Kyounghwan Lee |
title |
Resource Allocation for the Multiband Relay Channel: A Building Block for Hybrid Wireless Networks |
title_short |
Resource Allocation for the Multiband Relay Channel: A Building Block for Hybrid Wireless Networks |
title_full |
Resource Allocation for the Multiband Relay Channel: A Building Block for Hybrid Wireless Networks |
title_fullStr |
Resource Allocation for the Multiband Relay Channel: A Building Block for Hybrid Wireless Networks |
title_full_unstemmed |
Resource Allocation for the Multiband Relay Channel: A Building Block for Hybrid Wireless Networks |
title_sort |
resource allocation for the multiband relay channel: a building block for hybrid wireless networks |
publisher |
SpringerOpen |
series |
EURASIP Journal on Wireless Communications and Networking |
issn |
1687-1472 1687-1499 |
publishDate |
2010-01-01 |
description |
We investigate optimal resource allocation for the multiband relay channel. We find the optimal power and bandwidth allocation strategies that maximize the bounds on the capacity, by solving the corresponding max-min optimization problem. We provide sufficient conditions under which the associated max-min problem is equivalent to a supporting plane problem, which renders the solution for an arbitrary number of bands tractable. In addition, the sufficient conditions derived are general enough so that a class of utility functions can be accommodated with this formulation. As an example, we concentrate on the case where the source has two bands and the relay has a single band available and find the optimal resource allocation. We observe that joint power and bandwidth optimization always yields higher achievable rates than power optimization alone, establishing the merit of bandwidth sharing. Motivated by our analytical results, we examine a simple scenario where new channels become available for a transmitter to communicate; that is, new source to relay bands are added to a frequency division relay network. Given the channel conditions of the network, we establish the guidelines on how to allocate resources in order to achieve higher rates, depending on the relative quality of the available links. |
url |
http://dx.doi.org/10.1155/2010/792410 |
work_keys_str_mv |
AT kyounghwanlee resourceallocationforthemultibandrelaychannelabuildingblockforhybridwirelessnetworks AT aylinyener resourceallocationforthemultibandrelaychannelabuildingblockforhybridwirelessnetworks AT xianghe resourceallocationforthemultibandrelaychannelabuildingblockforhybridwirelessnetworks |
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1716795117908525056 |