Routing Strategies for Multihop Wireless Relaying Networks

Multihop routing is an effective method for establishing connectivity between the nodes of a network. End-to-end outage probability and total power consumption are applied as the optimization criteria for routing protocol design in multihop networks based on the local channel state information measu...

Full description

Bibliographic Details
Main Author: Babaee, Ramin
Other Authors: Beaulieu, Norman C. (Electrical and Computer Engineering)
Format: Others
Language:en
Published: 2010
Subjects:
Online Access:http://hdl.handle.net/10048/1676
id ndltd-LACETR-oai-collectionscanada.gc.ca-AEU.10048-1676
record_format oai_dc
spelling ndltd-LACETR-oai-collectionscanada.gc.ca-AEU.10048-16762012-03-21T22:50:08ZBeaulieu, Norman C. (Electrical and Computer Engineering)Babaee, Ramin2010-12-23T22:44:47Z2010-12-23T22:44:47Z2010-12-23T22:44:47Zhttp://hdl.handle.net/10048/1676Multihop routing is an effective method for establishing connectivity between the nodes of a network. End-to-end outage probability and total power consumption are applied as the optimization criteria for routing protocol design in multihop networks based on the local channel state information measurement at the nodes of a network. The analysis shows that employing instantaneous channel state information in routing design results in significant performance improvement of multihop communication, e.g., achieving full diversity order when the optimization criterion is outage performance. The routing metrics derived from the optimization problems cannot be optimized in a distributed manner. Establishing an alternate framework, the metrics obtained are converted into new composite metrics, which satisfy the optimality and convergence requirements for implementation in distributed environments. The analysis shows that the running time of the proposed distributed algorithm is bounded by a polynomial.693241 bytesapplication/pdfenR. Babaee and N. C. Beaulieu, Joint routing and power allocation optimization for multi-hop wireless networks, in Proc. IEEE Wireless Commun. Netw. Conf. (WCNC), Sydney, Australia, Apr. 2010, pp. 16.R. Babaee and N. C. Beaulieu, Cross-layer design for multihop wireless relaying networks, IEEE Trans. Wireless Commun., vol. 9, no. 11, pp. 3522 3531, Nov. 2010.R. Babaee and N. C. Beaulieu, Optimal outage efficient routing in amplify-and-forward multihop wireless networks, in Proc. IEEE Global Telecommun. Conf. (GLOBECOM), Miami, FL, Dec. 2010.R. Babaee and N. C. Beaulieu, Distributed optimal outage efficient routing in multihop wireless networks, submitted to IEEE Trans. Commun., Jul. 2010.R. Babaee and N. C. Beaulieu, Power-optimized routing with bandwidth guarantee in multihop relaying networks, submitted to IEEE Int. Conf. Commun. (ICC), Sept. 2010.Routing algorithmMultihop communicationsOutage probabilityRouting metricPower allocationRouting Strategies for Multihop Wireless Relaying NetworksThesisMaster of ScienceMaster'sDepartment of Electrical and Computer EngineeringUniversity of Alberta2011-06CommunicationsArdakani, Masoud (Electrical and Computer Engineering)Elmallah, Ehab S. (Computing Science)
collection NDLTD
language en
format Others
sources NDLTD
topic Routing algorithm
Multihop communications
Outage probability
Routing metric
Power allocation
spellingShingle Routing algorithm
Multihop communications
Outage probability
Routing metric
Power allocation
Babaee, Ramin
Routing Strategies for Multihop Wireless Relaying Networks
description Multihop routing is an effective method for establishing connectivity between the nodes of a network. End-to-end outage probability and total power consumption are applied as the optimization criteria for routing protocol design in multihop networks based on the local channel state information measurement at the nodes of a network. The analysis shows that employing instantaneous channel state information in routing design results in significant performance improvement of multihop communication, e.g., achieving full diversity order when the optimization criterion is outage performance. The routing metrics derived from the optimization problems cannot be optimized in a distributed manner. Establishing an alternate framework, the metrics obtained are converted into new composite metrics, which satisfy the optimality and convergence requirements for implementation in distributed environments. The analysis shows that the running time of the proposed distributed algorithm is bounded by a polynomial. === Communications
author2 Beaulieu, Norman C. (Electrical and Computer Engineering)
author_facet Beaulieu, Norman C. (Electrical and Computer Engineering)
Babaee, Ramin
author Babaee, Ramin
author_sort Babaee, Ramin
title Routing Strategies for Multihop Wireless Relaying Networks
title_short Routing Strategies for Multihop Wireless Relaying Networks
title_full Routing Strategies for Multihop Wireless Relaying Networks
title_fullStr Routing Strategies for Multihop Wireless Relaying Networks
title_full_unstemmed Routing Strategies for Multihop Wireless Relaying Networks
title_sort routing strategies for multihop wireless relaying networks
publishDate 2010
url http://hdl.handle.net/10048/1676
work_keys_str_mv AT babaeeramin routingstrategiesformultihopwirelessrelayingnetworks
_version_ 1716390682400129024