• Title/Summary/Keyword: Key-Exchange Protocol

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Invited Speech at ICSS 2007 Generation of Session, Authentication, and Encryption Keys for CDMA2000 1x EV-DO Air Interface Standard

  • Rhee, Man-Young
    • Review of KIISC
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    • v.17 no.2
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    • pp.9-23
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    • 2007
  • The air interface supports a security layer which provides the key exchange protocol, authentication protocol, and encryption protocol. The authentication is performed on the encryption protocol packet. The authentication protocol header or trailer may contain the digital signature that is used to authenticate a portion of the authentication protocol packet that is authenticated. The encryption protocol may add a trailer to hide the actual length of the plaintext of padding to be used by the encryption algorithm. The encryption protocol header may contain variables such as the initialization vector (IV) to be used by the encryption protocol. It is our aim to firstly compute the session key created from the D H key exchange algorithm, and thereof the authenticating key and the encryption key being generated from the session key.

Practical Password-Authenticated Three-Party Key Exchange

  • Kwon, Jeong-Ok;Jeong, Ik-Rae;Lee, Dong-Hoon
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • v.2 no.6
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    • pp.312-332
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    • 2008
  • Password-based authentication key exchange (PAKE) protocols in the literature typically assume a password that is shared between a client and a server. PAKE has been applied in various environments, especially in the “client-server” applications of remotely accessed systems, such as e-banking. With the rapid developments in modern communication environments, such as ad-hoc networks and ubiquitous computing, it is customary to construct a secure peer-to-peer channel, which is quite a different paradigm from existing paradigms. In such a peer-to-peer channel, it would be much more common for users to not share a password with others. In this paper, we consider password-based authentication key exchange in the three-party setting, where two users do not share a password between themselves but only with one server. The users make a session-key by using their different passwords with the help of the server. We propose an efficient password-based authentication key exchange protocol with different passwords that achieves forward secrecy in the standard model. The protocol requires parties to only memorize human-memorable passwords; all other information that is necessary to run the protocol is made public. The protocol is also light-weighted, i.e., it requires only three rounds and four modular exponentiations per user. In fact, this amount of computation and the number of rounds are comparable to the most efficient password-based authentication key exchange protocol in the random-oracle model. The dispensation of random oracles in the protocol does not require the security of any expensive signature schemes or zero-knowlegde proofs.

The Distributed Authentication and Key Exchange Protocols for Smartcard (스마트카드에 적용가능한 분산형 인증 및 키 교환 프로토콜)

  • Oh Heung-Ryongl;Yoon Ho-Sun;Youm Heung-Youl
    • Journal of Internet Computing and Services
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    • v.6 no.3
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    • pp.17-30
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    • 2005
  • A PAK(Password-Authenticated Key Exchange) protocol is used as a protocol to provide both the mutual authentication and allow the communication entities to share the session key for the subsequent secure communication, using the human-memorable portable short-length password, In this paper, we propose distributed key exchange protocols applicable to a smartcard using the MTI(Matsumoto, Takashima, Imai) key distribution protocol and PAK protocol. If only one server keeps the password verification data which is used for password authentication protocol. then It could easily be compromised by an attacker, called the server-compromised attack, which results in impersonating either a user or a server, Therefore, these password verification data should be distributed among the many server using the secret sharing scheme, The Object of this paper Is to present a password-based key exchange protocol which is to allow user authentication and session key distribution, using the private key in a smartcard and a password typed by a user. Moreover, to avoid the server-compromised attack, we propose the distributee key exchange protocols using the MTI key distribution protocol, And we present the security analysis of the proposed key exchange protocol and compare the proposed protocols with the existing protocols.

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A Highly Secure Identity-Based Authenticated Key-Exchange Protocol for Satellite Communication

  • Yantao, Zhong;Jianfeng, Ma
    • Journal of Communications and Networks
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    • v.12 no.6
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    • pp.592-599
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    • 2010
  • In recent years, significant improvements have been made to the techniques used for analyzing satellite communication and attacking satellite systems. In 2003, a research team at Los Alamos National Laboratory, USA, demonstrated the ease with which civilian global positioning system (GPS) spoofing attacks can be implemented. They fed fake signals to the GPS receiver so that it operates as though it were located at a position different from its actual location. Moreover, Galileo in-orbit validation element A and Compass-M1 civilian codes in all available frequency bands were decoded in 2007 and 2009. These events indicate that cryptography should be used in addition to the coding technique for secure and authenticated satellite communication. In this study, we address this issue by using an authenticated key-exchange protocol to build a secure and authenticated communication channel for satellite communication. Our protocol uses identity-based cryptography. We also prove the security of our protocol in the extended Canetti-Krawczyk model, which is the strongest security model for authenticated key-exchange protocols, under the random oracle assumption and computational Diffie-Hellman assumption. In addition, our protocol helps achieve high efficiency in both communication and computation and thus improve security in satellite communication.

Recoverable Password Based Key Exchange Protocol (복구 가능한 패스워드 기반 키 분배 프로토콜)

  • 손기욱;최영철;박상준;원동호
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.11 no.5
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    • pp.97-104
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    • 2001
  • In this paper, we propose Recoverable Password Based Key Exchange Protocol(RPKEP). RPKEP has user who has password, server which share the secret key information with user, and password recovery agency(PRA) which help to recover the user\`s password. Proposed protocol has some advantages that it is secure against off-line dictionary attack which is considered most important in password based key exchange protocol and suer\`s security is preserved even though user\`s secret information stored in the server is disclosed. By applying Chaum\`s blind signature scheme in the process of password recovery, even the PRA can\`t obtain any information about user\`s password.

Group Key Exchange over Combined Wired and Wireless Networks

  • Nam, Jung-Hyun;Won, Dong-Ho
    • Journal of Communications and Networks
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    • v.8 no.4
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    • pp.461-474
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    • 2006
  • A group key exchange protocol is a cryptographic primitive that describes how a group of parties communicating over a public network can come up with a common secret key. Due to its significance both in network security and cryptography, the design of secure and efficient group key exchange protocols has attracted many researchers' attention over the years. However, despite all the efforts undertaken, there seems to have been no previous systematic look at the growing problem of key exchange over combined wired and wireless networks which consist of both stationary computers with sufficient computational capabilities and mobile devices with relatively restricted computing resources. In this paper, we present the first group key exchange protocol that is specifically designed to be well suited for this rapidly expanding network environment. Our construction meets simplicity, efficiency, and strong notions of security.

Multi-Server Authenticated Key Exchange Protocol (다중서버를 이용한 인증된 키교환 프로토콜)

  • 이정현;김현정;이동훈
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.13 no.1
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    • pp.87-97
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    • 2003
  • In this paper, we define two security concepts, “non-computable security” and “distribution security”, about authentication information committed to a authentication server without any trustee, and propose an authenticatied key exchange protocol based on password, satisfying “distribution security”. We call it MAP(Muti-Server Authentication Protocol based on Password) and show that SSSO(Secure Single Sign On) using MAP solves a problem of SSO(Single Sign On) using authentication protocol based on password with a trustee.

An Authentication and Key Management Protocol for Secure Data Exchange in EPON MAC Layer (EPON MAC 계층의 안전한 데이터 전송을 위한 인증 및 키관리 프로토콜)

  • Kang, In-kon;Lee, Do-Hoon;Lee, Bong-Ju;Kim, Young-Chon
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.28 no.1B
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    • pp.1-10
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    • 2003
  • An EPON which is going on standardization in IEEE 802.3ah, is tree topology consists of a OLT and multiple ONU using passive optical components, so this network is susceptible to variable security threats - eavesdropping, masquerading, denial of service and so on. In this paper, we design a security protocol supporting authentication and confidentiality services in MAC layer in order to prevent these security threats and to guarantee secure data exchange The designed security protocol introduce public-key based authentication and key management protocols for efficient key management, and choose Rijndael algorithm, which is recent standard of AES, to provide the confidentiality of EPON Proposed authentication and key management protocols perform authentication and public-key exchange at a time, and are secure protocols using derived common cipher key by exchanging public random number To implement the designed security protocol, we propose the procedures of authentication and public-key exchange, session key update, key recovery. This proposed protocol is verified using unknown session key, forward secrecy, unknown key-share, key-compromise impersonation.

An Implementation and Evaluation of Improved Anti-DoS IKE Protocol Engine for Interaction with IPsec System (IPsec과 연동되는 개선된 Anti-DoS IKE 프로토콜 엔진의 구현 및 평가)

  • Kim, Sung-Chan;Choun, Jun-Ho;Jun, Moon-Seog
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.31 no.11B
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    • pp.1005-1016
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    • 2006
  • As the increment usage of Internet, the security systems's importance is emphasized. The current Internet Key Exchange protocol(IKE) which has been used for key exchange of security system, was pointed out a problem of efficiency and stability. In this research, we try to resolve those problems, and evaluate the newly designed Key Exchange protocol in the IPsec interaction test bed system environment. In this research we implemented the new Key Exchange Protocol as a recommendation of RFC proposal, so as to resolve the problem which was pointed out the key exchange complexity and the speed of authentication process. We also designed the defense mechanism against the Denial of Service attack. We improved the key exchange speed as a result of simplification of complex key exchange phase, and increased efficiency as a result of reuse the preexistence state value when it's renegotiated.

Cryptanalysis on a Three Party Key Exchange Protocol-STPKE'

  • Tallapally, Shirisha;Padmavathy, R.
    • Journal of Information Processing Systems
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    • v.6 no.1
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    • pp.43-52
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    • 2010
  • In the secure communication areas, three-party authenticated key exchange protocol is an important cryptographic technique. In this protocol, two clients will share a human-memorable password with a trusted server, in which two users can generate a secure session key. On the other hand the protocol should resist all types of password guessing attacks. Recently, STPKE' protocol has been proposed by Kim and Choi. An undetectable online password guessing attack on STPKE' protocol is presented in the current study. An alternative protocol to overcome undetectable online password guessing attacks is proposed. The results show that the proposed protocol can resist undetectable online password guessing attacks. Additionally, it achieves the same security level with reduced random numbers and without XOR operations. The computational efficiency is improved by $\approx$ 30% for problems of size $\approx$ 2048 bits. The proposed protocol is achieving better performance efficiency and withstands password guessing attacks. The results show that the proposed protocol is secure, efficient and practical.