Cooperative Diversity and Power Consumption in Multi-hop WSN : Effects of node energy on Single Frequency Networks

At the present time, wireless sensor networks are becoming more and more  common and energy consumption is a key factor in the deployment and  maintenance of these networks. This thesis compares non-SFN multi-hop and  a single frequency network (SFN) or cooperative diversity algorithms with  respect...

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Main Authors: UL HAQ, ANWAAR, MALIK, HAROON
Format: Others
Language:English
Published: Mittuniversitetet, Avdelningen för informations- och kommunikationssystem 2014
Subjects:
Online Access:http://urn.kb.se/resolve?urn=urn:nbn:se:miun:diva-21564
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spelling ndltd-UPSALLA1-oai-DiVA.org-miun-215642014-03-19T04:52:51ZCooperative Diversity and Power Consumption in Multi-hop WSN : Effects of node energy on Single Frequency NetworksengUL HAQ, ANWAARMALIK, HAROONMittuniversitetet, Avdelningen för informations- och kommunikationssystemMittuniversitetet, Avdelningen för informations- och kommunikationssystem2014Macro diversityMulti-hopSingle Frequency networkReachabilityDeclineOutageAt the present time, wireless sensor networks are becoming more and more  common and energy consumption is a key factor in the deployment and  maintenance of these networks. This thesis compares non-SFN multi-hop and  a single frequency network (SFN) or cooperative diversity algorithms with  respect to the energy consumed by the nodes. Since the nodes have limited  power capacity it is extremely important to have an efficient algorithm. In  addition, the behaviour of the network when SFN is employed must be  studied and advice offered with regards to improvements in order to achieve  preferential results. The effect on the network regarding macro diversity is  positive but, the battery energy consumption is still higher and has a drainage  effect on the network for simple multi-hop. The report will include  background information regarding mobile ad-hoc networks and the  relationship with cooperative diversity. It will also deal with how different  algorithms affect the energy consumption in multi-hop networks. Simulations  will also be presented in Matlab plots for two single frequency network  scenarios against a simple multi-hop regarding node energy during the  network discovery and decline. Results will include comparative figures which  are followed by a discussion concerning the simulation results and its effects.  The applications for wireless sensor networks include area monitoring,  environmental monitoring, data logging, industrial monitoring, agriculture  and the idea can additionally be used for wireless radio and TV distribution.  The simulations have been conducted for cooperative diversity algorithms  (SFN-A and SFN-D) against an algorithm which does not use cooperative  diversity in Matlab. The node energy consumption is compared for both  scenarios with regards to both  network reachability and decline. The node  power is analysed during the reachability of the network from the start to  attaining 100% of the discovered network. During network decline, the  behaviour of the node energy is studied for algorithms with SFN-A, SFN-D  and non SFN.  Also, the number of times node transmission occurs with  regards to  node discovery is also analysed.  Student thesisinfo:eu-repo/semantics/bachelorThesistexthttp://urn.kb.se/resolve?urn=urn:nbn:se:miun:diva-21564application/pdfinfo:eu-repo/semantics/openAccess
collection NDLTD
language English
format Others
sources NDLTD
topic Macro diversity
Multi-hop
Single Frequency network
Reachability
Decline
Outage
spellingShingle Macro diversity
Multi-hop
Single Frequency network
Reachability
Decline
Outage
UL HAQ, ANWAAR
MALIK, HAROON
Cooperative Diversity and Power Consumption in Multi-hop WSN : Effects of node energy on Single Frequency Networks
description At the present time, wireless sensor networks are becoming more and more  common and energy consumption is a key factor in the deployment and  maintenance of these networks. This thesis compares non-SFN multi-hop and  a single frequency network (SFN) or cooperative diversity algorithms with  respect to the energy consumed by the nodes. Since the nodes have limited  power capacity it is extremely important to have an efficient algorithm. In  addition, the behaviour of the network when SFN is employed must be  studied and advice offered with regards to improvements in order to achieve  preferential results. The effect on the network regarding macro diversity is  positive but, the battery energy consumption is still higher and has a drainage  effect on the network for simple multi-hop. The report will include  background information regarding mobile ad-hoc networks and the  relationship with cooperative diversity. It will also deal with how different  algorithms affect the energy consumption in multi-hop networks. Simulations  will also be presented in Matlab plots for two single frequency network  scenarios against a simple multi-hop regarding node energy during the  network discovery and decline. Results will include comparative figures which  are followed by a discussion concerning the simulation results and its effects.  The applications for wireless sensor networks include area monitoring,  environmental monitoring, data logging, industrial monitoring, agriculture  and the idea can additionally be used for wireless radio and TV distribution.  The simulations have been conducted for cooperative diversity algorithms  (SFN-A and SFN-D) against an algorithm which does not use cooperative  diversity in Matlab. The node energy consumption is compared for both  scenarios with regards to both  network reachability and decline. The node  power is analysed during the reachability of the network from the start to  attaining 100% of the discovered network. During network decline, the  behaviour of the node energy is studied for algorithms with SFN-A, SFN-D  and non SFN.  Also, the number of times node transmission occurs with  regards to  node discovery is also analysed. 
author UL HAQ, ANWAAR
MALIK, HAROON
author_facet UL HAQ, ANWAAR
MALIK, HAROON
author_sort UL HAQ, ANWAAR
title Cooperative Diversity and Power Consumption in Multi-hop WSN : Effects of node energy on Single Frequency Networks
title_short Cooperative Diversity and Power Consumption in Multi-hop WSN : Effects of node energy on Single Frequency Networks
title_full Cooperative Diversity and Power Consumption in Multi-hop WSN : Effects of node energy on Single Frequency Networks
title_fullStr Cooperative Diversity and Power Consumption in Multi-hop WSN : Effects of node energy on Single Frequency Networks
title_full_unstemmed Cooperative Diversity and Power Consumption in Multi-hop WSN : Effects of node energy on Single Frequency Networks
title_sort cooperative diversity and power consumption in multi-hop wsn : effects of node energy on single frequency networks
publisher Mittuniversitetet, Avdelningen för informations- och kommunikationssystem
publishDate 2014
url http://urn.kb.se/resolve?urn=urn:nbn:se:miun:diva-21564
work_keys_str_mv AT ulhaqanwaar cooperativediversityandpowerconsumptioninmultihopwsneffectsofnodeenergyonsinglefrequencynetworks
AT malikharoon cooperativediversityandpowerconsumptioninmultihopwsneffectsofnodeenergyonsinglefrequencynetworks
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