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Authors: Wataru Hasegawa ; Masakazu Soshi and Atsuko Miyaji

Affiliation: School of Information Science, Japan Advanced Institute of Science and Technology, Japan

Keyword(s): Mobile Agent, Security, Oblivious Transfer, Encrypted Circuit, Secure Function Evaluation.

Related Ontology Subjects/Areas/Topics: Cryptographic Techniques and Key Management ; Information and Systems Security ; Mobile Code & Agent Security

Abstract: Cachin et al. and Algesheimer et al. proposed schemes using secure function evaluation for protecting mobile agents in untrusted environments. One of essential ingredients of their protocols is oblivious transfer (although not all of them require it). Unfortunately, naive application of oblivious transfer is inefficient because it must be performed for each bit of encrypted circuit inputs. Therefore, in this paper we propose secure mobile agent protocols with emphasis on efficient oblivious transfer suitable for secure function evaluation.

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Paper citation in several formats:
Hasegawa, W.; Soshi, M. and Miyaji, A. (2007). MOBILE AGENT SECURITY WITH EFFICIENT OBLIVIOUS TRANSFER. In Proceedings of the Second International Conference on Security and Cryptography (ICETE 2007) - SECRYPT; ISBN 978-989-8111-12-8; ISSN 2184-3236, SciTePress, pages 299-304. DOI: 10.5220/0002129002990304

@conference{secrypt07,
author={Wataru Hasegawa. and Masakazu Soshi. and Atsuko Miyaji.},
title={MOBILE AGENT SECURITY WITH EFFICIENT OBLIVIOUS TRANSFER},
booktitle={Proceedings of the Second International Conference on Security and Cryptography (ICETE 2007) - SECRYPT},
year={2007},
pages={299-304},
publisher={SciTePress},
organization={INSTICC},
doi={10.5220/0002129002990304},
isbn={978-989-8111-12-8},
issn={2184-3236},
}

TY - CONF

JO - Proceedings of the Second International Conference on Security and Cryptography (ICETE 2007) - SECRYPT
TI - MOBILE AGENT SECURITY WITH EFFICIENT OBLIVIOUS TRANSFER
SN - 978-989-8111-12-8
IS - 2184-3236
AU - Hasegawa, W.
AU - Soshi, M.
AU - Miyaji, A.
PY - 2007
SP - 299
EP - 304
DO - 10.5220/0002129002990304
PB - SciTePress