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ConTra Corona: Contact Tracing against the Coronavirus by Bridging the Centralized–Decentralized Divide for Stronger Privacy
27th International Conference on Theory and Application of Cryptology and Information Security, ASIACRYPT 2021 ; 13091 LNCS:665-695, 2021.
Article in English | Scopus | ID: covidwho-1602788
ABSTRACT
Contact tracing is among the most important interventions to mitigate the spread of any pandemic, usually in the form of manual contact tracing. Smartphone-facilitated digital contact tracing may help to increase tracing capabilities and extend the coverage to those contacts one does not know in person. Most implemented protocols use local Bluetooth Low Energy (BLE) communication to detect contagion-relevant proximity, together with cryptographic protections, as necessary to improve the privacy of the users of such a system. However, current decentralized protocols, including DP3T [T+20], do not sufficiently protect infected users from having their status revealed to their contacts, which raises fear of stigmatization. We alleviate this by proposing a new and practical solution with stronger privacy guarantees against active adversaries. It is based on the upload-what-you-observed paradigm, includes a separation of duties on the server side, and a mechanism to ensure that users cannot deduce which encounter caused a warning with high time resolution. Finally, we present a simulation-based security notion of digital contact tracing in the real–ideal setting, and prove the security of our protocol in this framework. © 2021, International Association for Cryptologic Research.
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Full text: Available Collection: Databases of international organizations Database: Scopus Language: English Journal: 27th International Conference on Theory and Application of Cryptology and Information Security, ASIACRYPT 2021 Year: 2021 Document Type: Article

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Full text: Available Collection: Databases of international organizations Database: Scopus Language: English Journal: 27th International Conference on Theory and Application of Cryptology and Information Security, ASIACRYPT 2021 Year: 2021 Document Type: Article