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public:papers:spw2016 [2016-06-19 21:27] – [What is this paper about?] rostadal | public:papers:spw2016 [2016-12-01 13:28] (current) – external edit 127.0.0.1 | ||
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* Provided three additional attacker models compared to the one used (Random Key compromise): | * Provided three additional attacker models compared to the one used (Random Key compromise): | ||
* Proposed different ways of evaluation of SA protocols: a ratio of compromised and non-compromised link keys, a percentage of secure communication among neighbours, or the percentage of secure communication from nodes to the base station. | * Proposed different ways of evaluation of SA protocols: a ratio of compromised and non-compromised link keys, a percentage of secure communication among neighbours, or the percentage of secure communication from nodes to the base station. | ||
- | * Extended the KMSforWSN framework. The whole framework including the documentation could be download here. | + | * Extended the KMSforWSN framework. The whole framework including the documentation could be download |
* Discussed different attacker capabilities and behaviour to parametrise the attacker. | * Discussed different attacker capabilities and behaviour to parametrise the attacker. | ||
* Performed an initial comparison of a local and global attacker on Random key compromise and Random node compromise pattern. | * Performed an initial comparison of a local and global attacker on Random key compromise and Random node compromise pattern. | ||
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- | //A success rate of SA protocols for a different number of malware infected nodes. A decrease in the percentage of secured links is linear. One can obtain reasonably secure network (more than 85% of secure links) even in case of 7 malware infected nodes considering the hybrid designed protocols are used.// | + | //A success rate of SA protocols for a different number of malware infected nodes. A decrease in the percentage of secured links is linear |