| Article ID | Journal | Published Year | Pages | File Type | 
|---|---|---|---|---|
| 10337961 | Ad Hoc Networks | 2012 | 17 Pages | 
Abstract
												In this paper, we propose a new class of cryptographic schemes, referred to as Hash-BasedSequentialAggregate andForwardSecureSignature (HaSAFSS), which allows a signer to sequentially generate a compact, fixed-size, and publicly verifiable signature efficiently. We develop three HaSAFSS schemes, Symmetric HaSAFSS (Sym-HaSAFSS), Elliptic Curve Cryptography (ECC) based HaSAFSS (ECC-HaSAFSS) and self-SUstaining HaSAFSS (SU-HaSAFSS). These schemes integrate the efficiency of MAC-based aggregate signatures and the public verifiability of Public Key Cryptography (PKC)-based signatures by preserving forward security via Timed-Release Encryption (TRE). We demonstrate that our schemes are secure and also significantly more efficient than previous approaches.
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											Authors
												Attila Altay Yavuz, Peng Ning, 
											