• Title/Summary/Keyword: 암호알고리즘

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Initial Authentication Protocol of Hadoop Distribution System based on Elliptic Curve (타원곡선기반 하둡 분산 시스템의 초기 인증 프로토콜)

  • Jeong, Yoon-Su;Kim, Yong-Tae;Park, Gil-Cheol
    • Journal of Digital Convergence
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    • v.12 no.10
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    • pp.253-258
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    • 2014
  • Recently, the development of cloud computing technology is developed as soon as smartphones is increases, and increased that users want to receive big data service. Hadoop framework of the big data service is provided to hadoop file system and hadoop mapreduce supported by data-intensive distributed applications. But, smpartphone service using hadoop system is a very vulnerable state to data authentication. In this paper, we propose a initial authentication protocol of hadoop system assisted by smartphone service. Proposed protocol is combine symmetric key cryptography techniques with ECC algorithm in order to support the secure multiple data processing systems. In particular, the proposed protocol to access the system by the user Hadoop when processing data, the initial authentication key and the symmetric key instead of the elliptic curve by using the public key-based security is improved.

A Study of a Secure Smart Car System using Attribute-based Delegation Method (속성 기반 권한위임 관리 기법을 사용한 스마트 자동차 안전성 검토에 관한 연구)

  • Kim, Jin-Mook;Moon, Jeong-Kyung;Hwang, Deuk-Young
    • Convergence Security Journal
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    • v.19 no.3
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    • pp.71-79
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    • 2019
  • The demand of smart cars is increasing rapidly. International stand organize such as 3GPP and 5GAA are proposing standard communication protocvols for connected-car, and automotive network infrastructure. But Smart car network have many security threats and more dangerous against the existed wire communication network. Typically, peripheral devices of a smart car may disguise their identity and steal location information and personal information about the vehicle. In addition, the infrastructure elements around smart cars can conspire and put driving cars in danger, threatening lives. This is a very serious security threat. Therefore, in order to solve these problems, we proposed a system that is secure from collusion and tampering attacks using attribute-based authorize delegation method and threshold encryption algorithms. We have demonstrated using a semantic safety model that the proposed system can be safe from collusion attack.

Number of Different Solutions to x5+bx3+b2mx2+1=0 over GF(2n) (GF(2n)위에서 x5+bx3+b2mx2+1=0의 서로 다른 해의 개수)

  • Choi, Un-Sook;Cho, Sung-Jin
    • The Journal of the Korea institute of electronic communication sciences
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    • v.8 no.11
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    • pp.1749-1754
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    • 2013
  • Binary sequences of period $2^n-1$ are widely used in many areas of engineering and sciences. Some well-known applications include coding theory, code-division multiple-access (CDMA) communications, and stream cipher systems. In this paper we analyze different solutions to $x^5+bx^3+b^{2^m}x^2+1=0$ over $GF(2^n)$. The number of different solutions determines frequencies of cross-correlations of nonlinear binary sequences generated by $d=3{\cdot}2^m-2$, n=2m, m=4k($k{\geq}2$). Also we give an algorithm for determination of number of different solutions to the equation.

A Study on Efficient Design of PUF-Based RFID Authentication Protocol (PUF 기반 RFID 인증 프로토콜의 효율적 설계에 관한 연구)

  • Byun, Jin Wook
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.24 no.5
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    • pp.987-999
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    • 2014
  • A PUF is embedded and implemented into a tag or a device, and outputs a noise y with an input of x, based on its own unique physical characteristics. Although x is used multiple times as inputs of PUF, the PUF outputs slightly different noises, ($y_1,{\cdots}y_n$), and also the PUF has tamper-resistance property, hence it has been widely used in cryptographic protocol. In this paper, we study how to design a PUF-based RFID authentication protocol in a secure and an efficient way. Compared with recent schemes, the proposed scheme guarantees both authentication and privacy of backword/forward under the compromise of long-term secrets stored in tag. And also, the most cost and time-consumming procedure, key recovery algorithm used with PUF, has been desgined in the side of RFID reader, not in the tag, and, consequently, gives possibility to minimize costs for implementation and running time.

A Model for Self-Authentication Based on Decentralized Identifier (탈중앙화 신원증명에 기반한 본인 인증 모델)

  • Kim, Ho-Yoon;Han, Kun-Hee;Shin, Seung-Soo
    • Journal of Convergence for Information Technology
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    • v.11 no.11
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    • pp.66-74
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    • 2021
  • With the development of the Internet, user authentication technology that proves me online is improving. Existing ID methods pose a threat of personal information leakage if the service provider manages personal information and security is weak, and the information subject is to the service provider. In this study, as online identification technology develops, we propose a DID-based self-authentication model to prevent the threat of leakage of personal information from a centralized format and strengthen sovereignty. The proposed model allows users to directly manage personal information and strengthen their sovereignty over information topics through VC issued by the issuing agency. As a research method, a self-authentication model that guarantees security and integrity is presented using a decentralized identifier method based on distributed ledger technology, and the security of the attack method is analyzed. Because it authenticates through DID Auth using public key encryption algorithms, it is safe from sniffing, man in the middle attack, and the proposed model can replace real identity card.

Novel Vulnerability against Dummy Based Side-Channel Countermeasures - Case Study: XMEGA (더미 기반 부채널 분석 대응기법 신규 취약점 - Case Study: XMEGA)

  • Lee, JongHyeok;Han, Dong-Guk
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.29 no.2
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    • pp.287-297
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    • 2019
  • When cryptographic algorithms are implemented to provide countermeasures against the side-channel analysis, designers frequently employ the combined countermeasures between the first-order masking scheme and hiding schemes. Their combination can be enough to offer security and efficiency. However, if dummy operations can be distinguished from real operations, an attacker can extract the secret key with lower complexity than the intended attack complexity by the designer inserting the dummy operations. In this paper, we categorize types of variables used in a dummy operation when C language is employed. Then, we present the novel vulnerability that can distinguish dummy operations for all cases where the hiding schemes are applied using different types of variables. Moreover, the countermeasure is provided to prevent the novel vulnerability.

The Security Vulnerabilities of 5G-AKA and PUF-based Security Improvement (5G 인증 및 키합의 프로토콜(5G-AKA)의 보안취약점과 PUF 기반의 보안성 향상 방안)

  • Jung, Jin Woo;Lee, Soo Jin
    • Convergence Security Journal
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    • v.19 no.1
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    • pp.3-10
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    • 2019
  • The 5G network is a next-generation converged network that combines various ICT technologies to realize the need for high speed, hyper connection and ultra low delay, and various efforts have been made to address the security vulnerabilities of the previous generation mobile networks. However, the standards released so far still have potential security vulnerabilities, such as USIM deception and replication attack, message re-transmission attack, and race-condition attack. In order to solve these security problems, this paper proposes a new 5G-AKA protocol with PUF technology, which is a physical unclonable function. The proposed PUF-based 5G-AKA improves the security vulnerabilities identified so far using the device-specific response for a specific challenge and hash function. This approach enables a strong white-list policy through the addition of inexpensive PUF circuits when utilizing 5G networks in areas where security is critical. In addition, since additional cryptographic algorithms are not applied to existing protocols, there is relatively little burden on increasing computational costs or increasing authentication parameter storage.

Revisiting Permutation Transformation Scheme for Cancelable Face Recognition (취소 가능한 얼굴 인식을 지원하는 치환 변환 기법에 대한 고찰)

  • Kim, Koon-Soon;Kang, Jeon-Il;Lee, Kyung-Hee;Nyang, Dae-Hun
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.16 no.6
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    • pp.37-46
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    • 2006
  • It is known to be hard to apply cryptographic one-way functions to the recognition system using bio-information directly. As one of the solutions about that problem there is a permutation transformation scheme. However, they did not show my algorithmic behavior or any performance analysis of the transformation by experiment. In this paper, by showing the recognition ratio of the transformed scheme by experiment, we prove that that scheme is sound. Also, we adopt their transformation to LDA(Linear Discriminant Analysis) to show the experimental results. In the negative side, we introduce a new type of attack against the permutation transformation schemes. finally, we briefly mention a generalization of the permutation transformation for countermeasure of the attack at the end of this paper.

Low-cost AES Implementation for RFID tags (RFID 태그를 위한 초소형 AES 연산기의 구현)

  • Koo, Bon-Seok;Ryu, Gwon-Ho;Yang, Sang-Woon;Chang, Tae-Joo;Lee, Sang-Jin
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.16 no.5
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    • pp.67-77
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    • 2006
  • Radio Frequency IDentification (RFID) will soon become an important technology in various industries. Therefore, security mechanisms for Rm systems are emerging crucial problems in RFID systems. In order to guarantee privacy and security, it is desirable to encrypt the transferred data with a strong crypto algorithm. In this paper, we present the ultra-light weight Advanced Encryption Standard (AES) processor which is suitable for RFID tags. The AES processor requires only 3,992 logic gates and is capable of both 128-bit encryption and decryption. The processor takes 446 clock cycles for encryption of a 128-bit data and 607 clock cycles for decryption. Therefore, it shows 55% improved result in encryption and 40% in decryption from previous cases.

A New Type of Differential Fault Analysis on DES Algorithm (DES 알고리즘에 대한 새로운 차분오류주입공격 방법)

  • So, Hyun-Dong;Kim, Sung-Kyoung;Hong, Seok-Hie;Kang, Eun-Sook
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.20 no.6
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    • pp.3-13
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    • 2010
  • Differential Fault Analysis (DFA) is widely known for one of the most efficient method analyzing block cipher. In this paper, we propose a new type of DFA on DES (Data Encryption Standard). DFA on DES was first introduced by Biham and Shamir, then Rivain recently introduced DFA on DES middle rounds (9-12 round). However previous attacks on DES can only be applied to the encryption process. Meanwhile, we first propose the DFA on DES key-schedule. In this paper, we proposed a more efficient DFA on DES key schedule with random fault. The proposed DFA method retrieves the key using a more practical fault model and requires fewer faults than the previous DFA on DES.