Title :
Enhanced Privacy ID from Bilinear Pairing for Hardware Authentication and Attestation
Author :
Brickell, Ernie ; Li, Jiangtao
Author_Institution :
Intel Corp., Hillsboro, OR, USA
Abstract :
Enhanced Privacy ID (EPID) is a cryptographic scheme that enables the remote authentication and attestation of a hardware device while preserving the privacy of the device. EPID can be seen as a direct anonymous attestation scheme with enhanced revocation capabilities. In EPID, a device can be revoked if the private key embedded in the hardware device has been extracted and published widely so that the revocation manager finds the corrupted private key. In addition, the revocation manager can revoke a device based on the signatures the device has created, if the private key of the device is not known. In this paper, we introduce a new security notion of EPID including the formal definitions of anonymity and unforgeability. We also give a construction of an EPID scheme from bilinear pairing. Our EPID scheme is efficient and provably secure in the random oracle model under the strong Diffie-Hellman assumption and the decisional Diffie-Hellman assumption.
Keywords :
data privacy; private key cryptography; bilinear pairing; corrupted private key; cryptographic scheme; decisional Diffie-Hellman assumption; enhanced privacy ID; hardware attestation; hardware authentication; revocation manager; Authentication; Games; Hardware; Privacy; Protocols; Public key; anonymity; cryptographic protocol; direct anonymous attestation; hardware authentication; privacy; trusted computing;
Conference_Titel :
Social Computing (SocialCom), 2010 IEEE Second International Conference on
Conference_Location :
Minneapolis, MN
Print_ISBN :
978-1-4244-8439-3
Electronic_ISBN :
978-0-7695-4211-9
DOI :
10.1109/SocialCom.2010.118