• Title/Summary/Keyword: S/Key Protocol

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A S/KEY Based Secure Authentication Protocol Using Public Key Cryptography (공개키를 적용한 S/KEY 기반의 안전한 사용자 인증 프로토콜)

  • You, Il-Sun;Cho, Kyung-San
    • The KIPS Transactions:PartC
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    • v.10C no.6
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    • pp.763-768
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    • 2003
  • In this paper, we propose a S/KEY based authentication protocol using smart cards to address the vulnerebilities of both the S/KEY authentication protocol and the secure one-time password protpcol which YEH, SHEN and HWANG proposed [1]. Because out protpcel is based on public key, it can authenticate the server and distribute a session key without any pre-shared secret. Also, it can prevent off-line dictionary attacks by using the randomly generated user is stored in the users smart card. More importantly, it can truly achieve the strength of the S/KEY scheme that no secret information need be stored on the server.

A Lightweight Authentication and Key Agreement Protocol in Wireless Sensor Networks (무선센서 네트워크에서 경량화된 인증과 키 동의 프로토콜)

  • Yoon, Sin-Sook;Ha, Jae-Cheol
    • Journal of Internet Computing and Services
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    • v.10 no.2
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    • pp.41-51
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    • 2009
  • Recently, there are many researches on security to remove vulnerability which is caused by wireless communication in wireless sensor networks. To guarantee secure communication, we should basically provide key management for each node, mutual authentication and key agreement protocol between two nodes. Although many protocols are presented to supply these security services, some of them require plentiful storage memory, powerful computation and communication capacity. In this paper, we propose a lightweight and efficient authentication and key agreement protocol between two sensor nodes, which is an enhanced version of Juang's scheme. In Juang's protocol, sensor node's information used to share a secret key should be transmitted to registration center via a base station. On the contrary, since node's information in our protocol is transmitted up to only base station, the proposed scheme can decrease computation and communication cost for establishing the shared key between two nodes.

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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.

Certificateless Non-Interactive Key Exchange Protocol with Forward Secrecy (전방향 안전성을 만족하며 인증서 기반이 아닌 비대화형 키 교환 프로토콜)

  • Lee, Young Kyung;Eom, Ji Eun;Seo, Seung-Hyun;Lee, Dong Hoon
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.25 no.3
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    • pp.531-546
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    • 2015
  • A non-interactive key exchange protocol provides an efficiency of overall system by eliminating additional communication. However, traditional non-interactive key exchange protocols without updating a private key fail to provide forward secrecy, since there is no usage of ephemeral key for randomness of session key. In 2012, Sang et al. proposed a certificateless non-interactive key exchange(CL-NIKE) protocol, but they do not prove the security of the protocol and it does not provide forward secrecy. In this paper, we propose a new CL-NIKE protocol and it's security model. Then we prove the proposed protocol is secure under the security model based on DBDH(Decision Bilinear Diffie-Hellman) assumption. Moreover, we propose a CL-NIKE protocol with forward secrecy which updates user's private key by using multilinear map and prove it's security.

An Improved One Round Authenticated Group Key Agreement (개선된 원 라운드 인증 그룹 키 합의 프로토콜)

  • Kim, Ho-Hee;Kim, Soon-Ja
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.23 no.1
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    • pp.3-10
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    • 2013
  • Several identity-based and authenticated key agreement protocols have been proposed. It remains at issue to design secure identity based and authenticated key agreement protocols. In this paper, we propose a one round authenticated group key agreement protocol which uses one more key pair as well as the public key and private key of typical IBE(Identity-Based Encryption) system. The proposed protocol modified Shi et al.'s protocol and He et al.'s protocol. The public and private keys and the signature process of our protocol are simpler than them of their protocols. Our protocol is secure and more efficient than their protocols in communication and computation costs.

EC-SRP Protocol ; Elliptic Curve Secure Remote Password Protocol (타원곡선을 이용한 안전한 패스워드 프로토콜)

  • 이용기;이정규
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.9 no.1
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    • pp.85-102
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    • 1999
  • In this paper, we propose an EC-SRP(Elliptic Curve - Secure Remote Password) protocol that uses ECDLP(Elliptic Curve Discrete Logarithm Problem) instead SRP protocols’s DLP. Since EC-SRP uses ECDLP, it inherits the high performance and security those are the properties of elliptic curve. And we reduced the number of elliptic curve scalar multiplication to improve EC-SRP protocol’s performance. Also we have proved BC-SRP protocol is a secure AKC(Authenticated Key Agreement with Key Confirmation) protocol in a random oracle model.

An Efficient Downlink MAC Protocol for Multi-User MIMO WLANs

  • Liu, Kui;Li, Changle;Guo, Chao;Chen, Rui
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • v.11 no.9
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    • pp.4242-4263
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    • 2017
  • Multi-User Multiple-Input Multiple-Output (MU-MIMO) technology has recently attracted significant attention from academia and industry because of it is increasingly important role in improving networks' capacity and data rate. Moreover, MU-MIMO systems for the Fifth Generation (5G) have already been researched. High Quality of Service (QoS) and efficient operations at the Medium Access Control (MAC) layer have become key requirements. In this paper, we propose a downlink MU-MIMO MAC protocol based on adaptive Channel State Information (CSI) feedback (called MMM-A) for Wireless Local Area Networks (WLANs). A modified CSMA/CA mechanism using new frame formats is adopted in the proposed protocol. Specifically, the CSI is exchanged between stations (STAs) in an adaptive way, and a packet selection strategy which can guarantee a fairer QoS for scenarios with differentiated traffic is also included in the MMM-A protocol. We then derive the expressions of the throughput and access delay, and analyze the performance of the protocol. It is easy to find that the MMM-A protocol outperforms the commonly used protocols in terms of the saturated throughput and access delay through simulation and analysis results.

A Secure Quantum-Resistant Authentication and Key Distribution Protocol for NFC Payment Environments (NFC 결제 환경에서 양자 컴퓨팅에 안전한 인증 및 키 분배 프로토콜)

  • Kim, JongHyun;Park, KiSung;Park, YoungHo
    • Journal of Korea Multimedia Society
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    • v.21 no.4
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    • pp.485-492
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    • 2018
  • Recently, the numerous authentication and key distribution protocol for NFC payment environment have been proposed using public key cryptosystems. However, these protocol are vulnerable to quantum computing attack because quantum computing can solve factoring and discrete logarithm problem effectively using Grover and Shor's algorithm. For these reason, the secure authentication and key distribution have become a very important security issue in order to prevent quantum computing attacks. Therefore, to ensure user's payment information and privacy, we propose a secure quantum resistant authentication and key distribution protocol for NFC payment environments.

Dynamic Key Lifetime Change Protocol for Performance Improvement of Virtual Private Networks using IPSec (IPSec을 적용한 가상사설망의 성능개선을 위한 동적 키 재생성 주기 변경 프로토콜)

  • 한종훈;이정우;박성한
    • Proceedings of the IEEK Conference
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    • 2003.11c
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    • pp.125-128
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    • 2003
  • In this paper, we propose a dynamic key lifetime change protocol for performance enhancement of virtual private networks using IPSec. The proposed protocol changes the key lifetime according to the number of secure tunnels. The proposed protocol is implemented with Linux 2.4.18 and FreeS/WAN 1.99. The system employing our proposed protocol performs better than the original version in terms of network performance and security.

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Password-Based Key Exchange Protocols for Cross-Realm (Cross-Realm 환경에서 패스워드기반 키교환 프로토콜)

  • Lee, Young Sook
    • Journal of Korea Society of Digital Industry and Information Management
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    • v.5 no.4
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    • pp.139-150
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    • 2009
  • Authentication and key exchange are fundamental for establishing secure communication channels over public insecure networks. Password-based protocols for authenticated key exchange are designed to work even when user authentication is done via the use of passwords drawn from a small known set of values. There have been many protocols proposed over the years for password authenticated key exchange in the three-party scenario, in which two clients attempt to establish a secret key interacting with one same authentication server. However, little has been done for password authenticated key exchange in the more general and realistic four-party setting, where two clients trying to establish a secret key are registered with different authentication servers. In fact, the recent protocol by Yeh and Sun seems to be the only password authenticated key exchange protocol in the four-party setting. But, the Yeh-Sun protocol adopts the so called "hybrid model", in which each client needs not only to remember a password shared with the server but also to store and manage the server's public key. In some sense, this hybrid approach obviates the reason for considering password authenticated protocols in the first place; it is difficult for humans to securely manage long cryptographic keys. In this work, we introduce a key agreement protocol and a key distribution protocol, respectively, that requires each client only to remember a password shared with its authentication server.