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dc.contributor.authorDi Pietro, Roberto
dc.contributor.authorOligeri, Gabriele
dc.contributor.authorSoriente, Claudio
dc.contributor.authorTsudik, Gene
dc.date.accessioned2025-01-10T16:15:23Z
dc.date.available2025-01-10T16:15:23Z
dc.date.issued2013
dc.identifier.citationDi Pietro, R., Oligeri, G., Soriente, C., & Tsudik, G. (2012). United we stand: Intrusion resilience in mobile unattended WSNs. IEEE Transactions on Mobile Computing, 12(7), 1456-1468. https://doi.org/10.1109/TMC.2012.126es
dc.identifier.issn1536-1233
dc.identifier.otherhttps://ieeexplore.ieee.org/document/6212503es
dc.identifier.urihttp://hdl.handle.net/20.500.12020/1455
dc.description.abstractWireless Sensor Networks (WSNs) are susceptible to a wide range of attacks due to their distributed nature, limited sensor resources, and lack of tamper resistance. Once a sensor is corrupted, the adversary learns all secrets. Thereafter, most security measures become ineffective. Recovering secrecy after compromise requires either help from a trusted third party or access to a source of high-quality cryptographic randomness. Neither is available in Unattended Wireless Sensor Networks (UWSNs), where the sink visits the network periodically. Prior results have shown that sensor collaboration is an effective but expensive means of obtaining probabilistic intrusion resilience in static UWSNs. In this paper, we focus on intrusion resilience in Mobile Unattended Wireless Sensor Networks (mUWSNs), where sensors move according to some mobility models. Note that such a mobility feature could be independent from security (e.g., sensors move to improve area coverage). We define novel security metrics to evaluate intrusion resilience protocols for sensor networks. We also propose a cooperative protocol that—by leveraging sensor mobility—allows compromised sensors to recover secure state after compromise. This is obtained with very low overhead and in a fully distributed fashion. Thorough analysis and extensive simulations support our findings.es
dc.language.isoenes
dc.publisherIEEEes
dc.titleUnited We Stand: Intrusion Resilience in Mobile Unattended WSNses
dc.typearticlees
dc.identifier.doihttps://doi.org/10.1109/TMC.2012.126
dc.issue.number7es
dc.journal.titleIEEE Transactions on Mobile Computinges
dc.page.initial1456es
dc.page.final1468es
dc.rights.accessRightsclosedAccesses
dc.subject.areaIngenieríases
dc.subject.keywordWireless Sensor Networkses
dc.subject.keywordSecurityes
dc.subject.unesco33 Ciencias Tecnológicases
dc.volume.number12es


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