dc.contributor.author |
Safa H. |
dc.contributor.author |
El-Hajj W. |
dc.contributor.author |
Zoubian H. |
dc.contributor.editor |
|
dc.date |
2012 |
dc.date.accessioned |
2017-10-03T15:53:15Z |
dc.date.available |
2017-10-03T15:53:15Z |
dc.date.issued |
2012 |
dc.identifier |
10.1109/ICC.2012.6363906 |
dc.identifier.isbn |
9781457720529 |
dc.identifier.issn |
15503607 |
dc.identifier.uri |
http://hdl.handle.net/10938/12842 |
dc.description.abstract |
A wireless sensor network (WSN) is a collection of tiny and limited-capability sensor nodes that report their sensed data to a data collector, referred to as a sink node. WSNs are used in many applications, but are challenged by memory and energy constraints. To address these issues, solutions have been proposed on different levels including the topological level where multiple sinks can be used in the network to reduce the number of hops between a sensor and its sink node. Topological level solutions are very crucial in time-sensitive applications where the maximum worst case delay incurred by a message to get from a sensor to the corresponding sink should be minimal or at least less than a certain value. In turn, the maximum worst case delay can be minimized by choosing near optimal locations of the sinks. Consequently the network lifetime will be extended since the energy consumed by the sensor nodes will be reduced. In this paper, we propose an efficient and robust approach based on Particle Swarm Optimization (PSO) heuristic to solve the multiple sink placement problem; more specifically we use Discrete PSO (DPSO) with local search (LS). We start by formulating the problem then discretizing it and finally applying PSO while introducing local search to the inner workings of the algorithm. When compared to Genetic Algorithm-based Sink Placement (GASP), which is considered the state-of-the-art in solving the multiple sink placement problem, our approach improved the results in most scenarios while requiring less runtime. © 2012 IEEE. |
dc.format.extent |
|
dc.format.extent |
Pages: (5445-5450) |
dc.language |
English |
dc.relation.ispartof |
Publication Name: IEEE International Conference on Communications; Conference Title: 2012 IEEE International Conference on Communications, ICC 2012; Conference Date: 10 June 2012 through 15 June 2012; Conference Location: Ottawa, ON; Publication Year: 2012; Pages: (5445-5450); |
dc.relation.ispartofseries |
|
dc.relation.uri |
|
dc.source |
Scopus |
dc.subject.other |
|
dc.title |
Particle Swarm Optimization based approach to solve the multiple sink placement problem in WSNs |
dc.type |
Conference Paper |
dc.contributor.affiliation |
Safa, H., Computer Science Department, American University of Beirut, Beirut, Lebanon |
dc.contributor.affiliation |
El-Hajj, W., Computer Science Department, American University of Beirut, Beirut, Lebanon |
dc.contributor.affiliation |
Zoubian, H., Computer Science Department, American University of Beirut, Beirut, Lebanon |
dc.contributor.authorAddress |
Safa, H.; Computer Science Department, American University of Beirut, Beirut, Lebanon; email: haidar.safa@aub.edu.lb |
dc.contributor.authorCorporate |
University: American University of Beirut; Faculty: Faculty of Arts and Sciences; Department: Computer Science; |
dc.contributor.authorDepartment |
Computer Science |
dc.contributor.authorDivision |
|
dc.contributor.authorEmail |
|
dc.contributor.faculty |
Faculty of Arts and Sciences |
dc.contributor.authorInitials |
|
dc.contributor.authorOrcidID |
|
dc.contributor.authorReprintAddress |
|
dc.contributor.authorResearcherID |
|
dc.contributor.authorUniversity |
American University of Beirut |
dc.description.cited |
|
dc.description.citedCount |
1 |
dc.description.citedTotWOSCount |
|
dc.description.citedWOSCount |
|
dc.format.extentCount |
6 |
dc.identifier.articleNo |
6363906 |
dc.identifier.coden |
|
dc.identifier.pubmedID |
|
dc.identifier.scopusID |
84871988560 |
dc.identifier.url |
|
dc.publisher.address |
|
dc.relation.ispartofConference |
Conference Title: 2012 IEEE International Conference on Communications, ICC 2012 : Conference Date: 10 June 2012 through 15 June 2012 , Conference Location: Ottawa, ON. |
dc.relation.ispartofConferenceCode |
94823 |
dc.relation.ispartofConferenceDate |
10 June 2012 through 15 June 2012 |
dc.relation.ispartofConferenceHosting |
|
dc.relation.ispartofConferenceLoc |
Ottawa, ON |
dc.relation.ispartofConferenceSponsor |
|
dc.relation.ispartofConferenceTitle |
2012 IEEE International Conference on Communications, ICC 2012 |
dc.relation.ispartofFundingAgency |
|
dc.relation.ispartOfISOAbbr |
|
dc.relation.ispartOfIssue |
|
dc.relation.ispartOfPart |
|
dc.relation.ispartofPubTitle |
IEEE International Conference on Communications |
dc.relation.ispartofPubTitleAbbr |
IEEE Int Conf Commun |
dc.relation.ispartOfSpecialIssue |
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dc.relation.ispartOfSuppl |
|
dc.relation.ispartOfVolume |
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dc.source.ID |
|
dc.type.publication |
Series |
dc.subject.otherAuthKeyword |
Genetic Algorithms |
dc.subject.otherAuthKeyword |
Particle Swarm Optimization |
dc.subject.otherAuthKeyword |
Sink Placement Problem |
dc.subject.otherAuthKeyword |
Wireless Sensor Networks |
dc.subject.otherChemCAS |
|
dc.subject.otherIndex |
Data collectors |
dc.subject.otherIndex |
Energy constraint |
dc.subject.otherIndex |
Local search |
dc.subject.otherIndex |
Network lifetime |
dc.subject.otherIndex |
Number of hops |
dc.subject.otherIndex |
Optimal locations |
dc.subject.otherIndex |
Placement problems |
dc.subject.otherIndex |
Robust approaches |
dc.subject.otherIndex |
Runtimes |
dc.subject.otherIndex |
Sink nodes |
dc.subject.otherIndex |
Time sensitive applications |
dc.subject.otherIndex |
Topological levels |
dc.subject.otherIndex |
Genetic algorithms |
dc.subject.otherIndex |
Particle swarm optimization (PSO) |
dc.subject.otherIndex |
Sensors |
dc.subject.otherIndex |
Topology |
dc.subject.otherIndex |
Wireless sensor networks |
dc.subject.otherIndex |
Sensor nodes |
dc.subject.otherKeywordPlus |
|
dc.subject.otherWOS |
|