Samir Tata, Mohamed Mohamed, et al.
SCC 2017
In this paper, we present C-ABSC, a cooperative privacy preserving attribute based signcryption mechanism. It consists on performing the combined signing and encrypting processes of a set of data devices' inputs in a secure collaborative manner. The main idea behind C-ABSC relies on the distribution of the signcrypting operation among different devices, with respect to selected sub-sets of a general access predicate, such as an untrusted aggregating entity is capable of decrypting the received aggregated data only if a sufficient number of IoT devices cooperates. The C-ABSC scheme is multifold. First, it provides a selective access to authenticated aggregated data contents. Second, it provides a privacy preserving signcrypting process, such that a curious aggregator can neither infer the used IoT device's attributes for signing nor deciphering single data chunks. Third, C-ABSC relies on low computation and communication processes, mainly for resource-constrained devices.
Samir Tata, Mohamed Mohamed, et al.
SCC 2017
Dongfang Zhao, Nagapramod Mandagere, et al.
Big Data 2015
Nesrine Kaaniche, Mohamed Mohamed, et al.
EDGE 2017
Ali Anwar, Mohamed Mohamed, et al.
FAST 2018