Privacy in wireless sensor networks using ring signature
Author(s) -
Ashmita Debnath,
Pradheepkumar Singaravelu,
Shekhar Verma
Publication year - 2014
Publication title -
journal of king saud university - computer and information sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.617
H-Index - 33
eISSN - 2213-1248
pISSN - 1319-1578
DOI - 10.1016/j.jksuci.2013.12.006
Subject(s) - computer science , wireless sensor network , node (physics) , computer network , ring signature , overhead (engineering) , adversary , sensor node , authentication (law) , signature (topology) , message authentication code , network packet , computer security , key distribution in wireless sensor networks , wireless , cryptography , wireless network , public key cryptography , encryption , engineering , structural engineering , mathematics , operating system , geometry , telecommunications
The veracity of a message from a sensor node must be verified in order to avoid a false reaction by the sink. This verification requires the authentication of the source node. The authentication process must also preserve the privacy such that the node and the sensed object are not endangered. In this work, a ring signature was proposed to authenticate the source node while preserving its spatial privacy. However, other nodes as signers and their numbers must be chosen to preclude the possibility of a traffic analysis attack by an adversary. The spatial uncertainty increases with the number of signers but requires larger memory size and communication overhead. This requirement can breach the privacy of the sensed object. To determine the effectiveness of the proposed scheme, the location estimate of a sensor node by an adversary and enhancement in the location uncertainty with a ring signature was evaluated. Using simulation studies, the ring signature was estimated to require approximately four members from the same neighbor region of the source node to sustain the privacy of the node. Furthermore, the ring signature was also determined to have a small overhead and not to adversely affect the performance of the sensor network
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