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Contenuto archiviato il 2024-06-18

Ad-hoc PAN and WIreless Sensor SEcure NETwork

Descrizione del progetto


Secure, dependable and trusted Infrastructures
AWISSENET (Ad-hoc PAN & WIreless Sensor SEcure NETwork)

AWISSENET (Ad-hoc personal area network and WIreless Sensor SEcure NETwork) is a project focused on security and resilience across ad-hoc Personal Area Networks (PANs) and wireless sensor networks. AWISSENET motivation is to implement and validate a scalable, secure, trusted networking protocol stack, able to offer self-configuration and secure roaming of data and services over multiple administrative domains and across insecure infrastructures of heterogeneous ad-hoc and wireless tiny sensor networks. AWISSENET optimisations will be extended where applicable from networking up to the applications layer, focusing on three key principles:

  • Discovery, evaluation and selection of trusted routes based on multiple security metrics and key pre-distribution methods. The overall scheme must support secure routing even with disappearing nodes, multiple levels of in-network processing and multiple layers of aggregation. Moreover, to protect the secure routing of information from traffic analysis attacks, the project will research utilisation of dynamic obfuscation of relationships.
  • Secure Service Discovery, providing a network-level security framework, which will protect service discovery messages inside the AWISSENET, when crossing unknown domains or when interacting with public service providers.
  • Intrusion detection, intruder identification and recovery based on distributed trust to provide security against malicious attacks.
  • The AWISSENET results will be packed in an AWISSENET security toolbox, which will enable easy configuration and instant support of Ad-hoc PAN and WIreless Sensor SEcure NETworks. The proposed architecture and protocol toolbox will be prototyped and validated in a large trial of more than 100 sensor nodes. Over this trial, a number of PAN and sensor application scenarios will be validated e.g. disaster recovery and ambient intelligence in environments like industry, home, or roads.

AWISSENET (Ad-hoc personal area network and WIreless Sensor SEcure NETwork) is a project focused on security and resilience across ad-hoc PANs and wireless sensor networks. AWISSENET motivation is to implement and validate a scalable, secure, trusted networking protocol stack, able to offer self-configuration and secure roaming of data and services over multiple administrative domains and across insecure infrastructures of heterogeneous ad-hoc and wireless tiny sensory networks. AWISSENET optimisations will be extended where applicable from networking up to the applications layer, focusing on three key principles:
• Discovery, evaluation and selection of trusted routes based on multiple security metrics and key pre-distribution methods. The overall scheme must support secure routing even with disappearing nodes, multiple levels of in-network processing and multiple layers of aggregation. Moreover to protect the secure routing information from traffic analysis attacks, we will research utilisation of dynamic obfuscation of relationships.
• Secure Service Discovery, providing a network-level security framework, which will protect service discovery messages inside the AWISSENET, when crossing unknown domains or when interacting with public service providers.
• Intrusion detection, intruder identification and recovery based on distributed trust to provide security against malicious attacks.
The AWISSENET results will be packed in a AWISSENET security toolbox, which will enable easy configuration and instant support of Ad-hoc PAN and WIreless Sensor SEcure NETworks. The proposed architecture and protocol toolbox will be prototyped and validated in a large trial of more than 100 sensor nodes. Over this trial, a number of PAN and sensor application scenarios will be validated e.g. ambient intelligence in environments like industry, home, roads and disaster recovery.

Campo scientifico (EuroSciVoc)

CORDIS classifica i progetti con EuroSciVoc, una tassonomia multilingue dei campi scientifici, attraverso un processo semi-automatico basato su tecniche NLP. Cfr.: Il Vocabolario Scientifico Europeo.

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Coordinatore

HELLENIC AEROSPACE INDUSTRY SA
Contributo UE
€ 268 437,00
Indirizzo
Mesogeion street 2-4
11527 Athens
Grecia

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Αττική Aττική Κεντρικός Τομέας Αθηνών
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Private for-profit entities (excluding Higher or Secondary Education Establishments)
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Partecipanti (7)

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