• Title/Summary/Keyword: session key attack

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A Study on IKE v2 Analysis Method for RealTime (NIKEv2 AR : IKE v2 실시간 분석 기술 연구)

  • Park, Junghyung;Ryu, Hyungyul;Ryou, Jaecheol
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.32 no.4
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    • pp.661-671
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    • 2022
  • Due to the COVID-19 pandemic, remote working, e-learning, e-teaching and online collaboration have widely spread and become popular. Accordingly, the usage of IPsec VPN for security reasons has also dramatically increased. With the spread of VPN, VPN vulunerabilities are becoming an important target of attack for attackers, and many studies have been conducted on this. IKE v2 analysis is an essential process not only for developing and building IPsec VPN systems but also for security analysis. Network packet analysis tools such as Wireshark and Tcpdump are used for IKE v2 analysis. Wireshark is one of the most famous and widely-used network protocol analyzers and supports IKE v2 analysis. However Wireshark has many limitations, such as requiring system administrator privileges for IKE v2 analysis. In this paper, we describe Wireshark's limitations in detatil and propose a new analysis method. The proposed analysis method can analyze all encrypted IKE v2 messages in real time from the session key exchange In addition, the proposed analysis method is expected to be used for dynamic testing such as fuzzing as packet manipulation.

ECU Data Integrity Verification System Using Blockchain (블록체인을 활용한 ECU 데이터 무결성 검증 시스템)

  • Sang-Pil, Byeon;Ho-Yoon, Kim;Seung-Soo, Shin
    • Journal of Industrial Convergence
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    • v.20 no.11
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    • pp.57-63
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    • 2022
  • If ECU data, which is responsible for collecting and processing data such as sensors and signals of automobiles, is manipulated by an attack, it can cause damage to the driver. In this paper, we propose a system that verifies the integrity of automotive ECU data using blockchain. Since the car and the server encrypt data using the session key to transmit and receive data, reliability is ensured in the communication process. The server verifies the integrity of the transmitted data using a hash function, and if there is no problem in the data, it is stored in the blockchain and off-chain distributed storage. The ECU data hash value is stored in the blockchain and cannot be tampered with, and the original ECU data is stored in a distributed storage. Using the verification system, users can verify attacks and tampering with ECU data, and malicious users can access ECU data and perform integrity verification when data is tampered with. It can be used according to the user's needs in situations such as insurance, car repair, trading and sales. For future research, it is necessary to establish an efficient system for real-time data integrity verification.

Design of PUF-Based Encryption Processor and Mutual Authentication Protocol for Low-Cost RFID Authentication (저비용 RFID 인증을 위한 PUF 기반 암호화 프로세서와 상호 인증 프로토콜 설계)

  • Che, Wonseok;Kim, Sungsoo;Kim, Yonghwan;Yun, Taejin;Ahn, Kwangseon;Han, Kijun
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.39B no.12
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    • pp.831-841
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    • 2014
  • The attacker can access the RFID systems illegally because authentication operation on the RFID systems are performed in wireless communication. Authentication methods based on the PUF were presented to defend attacks. Because of Hash and AES, the cost is expensive for the low-cost RFID tag. In this paper, the PUF-based encryption processor and the mutual authentication protocol are proposed for low-cost RFID authentication. The challenge-response pairs (PUF's input and output) are utilized as the authentication key and encrypted by the PUF's characteristics. The encryption method is changed each session and XOR operation with random number is utilized. Therefore, it is difficult for the attacker to analyze challenge-response pairs and attack the systems. In addition, the proposed method with PUF is strong against physical attacks. And the method protects the tag cloning attack by physical attacks because there is no authentication data in the tag. Proposed processor is implemented at low cost with small footprint and low power.

A Design of Authority Management Protocol for Secure Storage Access Control in Cloud Environment (클라우드 환경에서 안전한 스토리지 접근 제어를 위한 권한 관리 프로토콜 설계)

  • Min, So-Yeon;Lee, Kwang-Hyong;Jin, Byung-Wook
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.17 no.9
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    • pp.12-20
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    • 2016
  • With the enhancements in existing major industries, cloud computing-based converging services have been created, as well as value-added industries. A variety of converging services are now provided, from personalized services up to industrial services. In Korea, they have become the driving force behind existing industries throughout the whole economy, but mainly in finance, mobile systems, social computing, and home services, based on cloud services. However, not only denial of service (DOS) and distributed DOS (DDOS) attacks have occurred, but also attack techniques targeting core data in storage servers. Even security threats that are hardly detected, such as multiple attacks on a certain target, APT, and backdoor penetration have also occurred. To supplement defenses against these, in this article, a protocol for authority management is designed to provide users with safe storage services. This protocol was studied in cases of integration between a cloud environment and big data-based technology, security threats, and their requirements. Also studied were amalgamation examples and their requirements in technology-based cloud environments and big data. With the protocol suggested, based on this, security was analyzed for attack techniques that occur in the existing cloud environment, as well as big data-based techniques, in order to find improvements in session key development of approximately 55%.