TY - JOUR
T1 - Discrete logarithm based additively homomorphic encryption and secure data aggregation
AU - Wang, Licheng
AU - Wang, Lihua
AU - Pan, Yun
AU - Zhang, Zonghua
AU - Yang, Yixian
PY - 2011/8/15
Y1 - 2011/8/15
N2 - At PKC 2006, Chevallier-Mames, Paillier, and Pointcheval proposed discrete logarithm based encryption schemes that are partially homomorphic, either additively or multiplicatively and announced an open problem: finding a discrete logarithm based cryptosystem that would help realize fully additive or multiplicative homomorphism. In this study, we achieve this goal by enclosing two opposite settings on the discrete logarithm problems (DLP) simultaneously: the first setting is that DLP over Zp0 (where p0 - 1 is smooth) is used to encode messages, while the second setting is that DLP over Zp (where p - 1 is non-smooth, i.e., containing large prime factors) is used to encrypt plaintexts. Then, based on the proposed scheme, novel protocols for secure data aggregation in wireless sensor networks are presented. Finally, taking Paillier's factoring-based additively homomorphic encryption schemes as the reference framework, we present detailed performance comparisons and further enhancement.
AB - At PKC 2006, Chevallier-Mames, Paillier, and Pointcheval proposed discrete logarithm based encryption schemes that are partially homomorphic, either additively or multiplicatively and announced an open problem: finding a discrete logarithm based cryptosystem that would help realize fully additive or multiplicative homomorphism. In this study, we achieve this goal by enclosing two opposite settings on the discrete logarithm problems (DLP) simultaneously: the first setting is that DLP over Zp0 (where p0 - 1 is smooth) is used to encode messages, while the second setting is that DLP over Zp (where p - 1 is non-smooth, i.e., containing large prime factors) is used to encrypt plaintexts. Then, based on the proposed scheme, novel protocols for secure data aggregation in wireless sensor networks are presented. Finally, taking Paillier's factoring-based additively homomorphic encryption schemes as the reference framework, we present detailed performance comparisons and further enhancement.
KW - Discrete logarithm problem
KW - Homomorphic encryption
KW - Secure data aggregation
KW - Wireless sensor networks
UR - https://www.scopus.com/pages/publications/79957515932
U2 - 10.1016/j.ins.2011.04.002
DO - 10.1016/j.ins.2011.04.002
M3 - Article
AN - SCOPUS:79957515932
SN - 0020-0255
VL - 181
SP - 3308
EP - 3322
JO - Information Sciences
JF - Information Sciences
IS - 16
ER -