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dc.creatorGeorgiadis, L.en
dc.creatorTassiulas, L.en
dc.date.accessioned2015-11-23T10:27:34Z
dc.date.available2015-11-23T10:27:34Z
dc.date.issued2006
dc.identifier10.1109/tit.2006.874401
dc.identifier.issn0018-9448
dc.identifier.urihttp://hdl.handle.net/11615/27743
dc.description.abstractA single commodity network that models the information flow in an arbitrary topology sensor field that collects and forwards information to a backbone through certain designated gateway nodes is considered. Resilient operation in overload stress situations caused by unpredictable traffic or topology variations is investigated. That amounts to studying the network in instability mode, where the traffic load distribution is outside the throughput region. A fluid model is adopted where superflows model traffic forwarding and backlog formations at the network level. Quantitative performance metrics of the overload including throughput, lexicographic minimization, most balanced allocation, and amount of lost traffic due to buffer overflow are considered to capture the information loss process due to overflow in the network. Optimal superflows with respect to these metrics are characterized and a distributed asynchronous algorithm that computes such superflows is given. The characterization of the optimal superflow amounts to obtaining a structural decomposition of the network in a sequence of disjoint subregions with decreasing overload such that traffic flows only from regions of higher overload to regions of lower overload. The optimal superflow represents the smoothest trajectory to overflow, followed by the network in case of instability.en
dc.source.uri<Go to ISI>://WOS:000238319400027
dc.subjectdistributed algorithmsen
dc.subjectlexicographic optimizationen
dc.subjectlost trafficen
dc.subjectminimizationen
dc.subjectmost balanced allocationen
dc.subjectnetwork controlen
dc.subjectoverloaden
dc.subjectresponseen
dc.subjectsensor networksen
dc.subjectthroughput maximizationen
dc.subjectCOMMUNICATION-NETWORKSen
dc.subjectINFORMATIONen
dc.subjectTHROUGHPUTen
dc.subjectComputer Science, Information Systemsen
dc.subjectEngineering, Electrical &en
dc.subjectElectronicen
dc.titleOptimal overload response in sensor networksen
dc.typejournalArticleen


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