• Title/Summary/Keyword: Attacker Identification

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Study on Token based KMS for Information Sharing (정보 공유를 위한 토큰 기반 KMS 연구)

  • Sung-Hwa Han;Hoo-Ki Lee
    • Convergence Security Journal
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    • v.23 no.5
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    • pp.29-34
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    • 2023
  • KMS (Knowledge Management System) is used by various organizations to share information. This KMS includes important information as well as basic information used by each organization. To protect infortant information stored in KMS, many KMS use user identification and authentication features. In such a KMS security environment, if the account information of a user who can access the KMS is leaked, a malicious attacker using the account information can access the KMS and access all authorized important information. In this study, we propose KMS with user access control function that can protect important information even if user account information is leaked. The KMS with the user access control function proposed in this study protects the stored files in the KMS by applying an encryption algorithm. Users can access important documents by using tokens after logging in. A malicious attacker without a Token cannot access important files. As a result of checking the unit function for the target user access control function for effectiveness verification, it was confirmed that the access control function to be provided by KMS is normally provided.

Security Analysis and Improvements of Authentication Protocol for Privacy Protection in RFID Systems (프라이버시 보호를 위한 RFID 인증 프로토콜의 안전성 분석과 개선)

  • Kim, Jiye;Won, Dongho
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.41 no.5
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    • pp.581-591
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    • 2016
  • RFID(Radio Frequency IDentification) is a key technology in ubiquitous computing and is expected to be employed in more fields in the near future. Nevertheless, the RFID system is vulnerable to attacks by eavesdropping or altering of the messages transmitted in wireless channels. In 2013, Oh et al. proposed a mutual authentication protocol between a tag and a reader in RFID systems. Their protocol is designed to resist location tracking for privacy protection. However, all tags and readers use only one network-wide key in their protocol and tags are usually vulnerable to physical attacks. We found that their protocol is still vulnerable to tag/reader impersonation attacks and location tracking if an attacker obtains the network-wide key from a tag. In this paper, we propose a security improved authentication protocol for privacy protection in RFID systems. In addition, we demonstrate that the proposed scheme is efficient in terms of computation and communication costs.

A Secure Technique Design for Privacy Protection in RFID System (RFID 시스템에서 프라이버시 보호를 위한 보안기법 설계)

  • Oh, Gi-Oug;Park, Mi-Og
    • Journal of the Korea Society of Computer and Information
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    • v.15 no.8
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    • pp.107-115
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    • 2010
  • RFID (Radio Frequency IDentification) technology, automatic identification and data capture technologies in ubiquitous computing is an essential skill. Low-cost Radio Frequency Identification tags using memory and no physical contact due to the ease of use and maintenance of excellence are going to use expanded. However, it is possible to the illegal acquisition of the information between RFID tags and readers because RFID uses the RF signal, and the obtained information can be used for the purpose of location tracking and invasion of privacy. In this paper, we proposed the security scheme to protect against the illegal user location tracking and invasion of privacy. The security scheme proposed in this paper, using Gray Code and reduced the capacity of the calculation of the actual tags, However, it is impossible for the malicious attacker to track information because tag information transmitted from the reader is not fixed. Therefore, even if the tags information is obtained by a malicious way, our scheme provides more simple and safe user privacy than any other protection methods to protect user privacy, because not actual information but encrypted information is becoming exposed.

Identification of Counterfeit Android Malware Apps using Hyperledger Fabric Blockchain (블록체인을 이용한 위변조 안드로이드 악성 앱 판별)

  • Hwang, Sumin;Lee, Hyung-Woo
    • Journal of Internet Computing and Services
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    • v.20 no.2
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    • pp.61-68
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    • 2019
  • Although the number of smartphone users is continuously increasing due to the advantage of being able to easily use most of the Internet services, the number of counterfeit applications is rapidly increasing and personal information stored in the smartphone is leaked to the outside. Because Android app was developed with Java language, it is relatively easy to create counterfeit apps if attacker performs the de-compilation process to reverse app by abusing the repackaging vulnerability. Although an obfuscation technique can be applied to prevent this, but most mobile apps are not adopted. Therefore, it is fundamentally impossible to block repackaging attacks on Android mobile apps. In addition, personal information stored in the smartphone is leaked outside because it does not provide a forgery self-verification procedure on installing an app in smartphone. In order to solve this problem, blockchain is used to implement a process of certificated application registration and a fake app identification and detection mechanism is proposed on Hyperledger Fabric framework.

Shoulder-Surfing Resistant Password Input Method for Mobile Environment (모바일 환경에서 엿보기 공격에 강한 패스워드 입력방법)

  • Kim, Chang-Soon;Youn, Sun-Bum;Lee, Mun-Kyu
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.20 no.3
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    • pp.93-104
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    • 2010
  • The advent of various mobile devices and mobile services has caused diversification of information stored in a mobile device, e.g., SMS, photos, movies, addresses, e-mails, digital certificates, and so on. Because mobile devices are lost or stolen easily, user authentication is critical to protect the information stored in mobile devices. However, the current user authentication methods using Personal Identification Numbers (PINs) and passwords are vulnerable to Shoulder Surfing Attacks (SSAs), which enables an attacker to obtain user's information. Although there are already several SSA-resistant authentication methods in the literature, most of these methods lack of usability. Moreover, they are not suitable for use in mobile devices. In this paper, we propose a user friendly password input method for mobile devices which is secure against SSA. We also perform user tests and compare the security and usability of the proposed method with those of the existing password input methods.

Cryptography Module Detection and Identification Mechanism on Malicious Ransomware Software (악성 랜섬웨어 SW에 사용된 암호화 모듈에 대한 탐지 및 식별 메커니즘)

  • Hyung-Woo Lee
    • Journal of Internet of Things and Convergence
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    • v.9 no.1
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    • pp.1-7
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    • 2023
  • Cases in which personal terminals or servers are infected by ransomware are rapidly increasing. Ransomware uses a self-developed encryption module or combines existing symmetric key/public key encryption modules to illegally encrypt files stored in the victim system using a key known only to the attacker. Therefore, in order to decrypt it, it is necessary to know the value of the key used, and since the process of finding the decryption key takes a lot of time, financial costs are eventually paid. At this time, most of the ransomware malware is included in a hidden form in binary files, so when the program is executed, the user is infected with the malicious code without even knowing it. Therefore, in order to respond to ransomware attacks in the form of binary files, it is necessary to identify the encryption module used. Therefore, in this study, we developed a mechanism that can detect and identify by reverse analyzing the encryption module applied to the malicious code hidden in the binary file.

An Certification and a Location Tracing Protect Model on RFID (RFID 시스템에서의 인증 및 위치추적 방지 모델)

  • Kim, Jin-Mook;Ryou, Hwang-Bin
    • Convergence Security Journal
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    • v.6 no.1
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    • pp.33-43
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    • 2006
  • RFID System has an advantage that it need not touch an objects for identification of many objects. Because it is working through wireless communication. Also, So many objects can be identified with RFID System at once. However, although RFID System has convenience like above, it has serious privacy concern at the same time. If RFID System is working with an target object through wireless communication, other objects will respond to RFID System signal as well as a target object. Hence, RFID System can be easily exposed user privacy by attacker. In this paper, We propose RFID system authentication model in order to protecting user privacy and traking. Proposed RFID system is operating that not only server authenticate RFID reader but also RFID reader and tag authenticate mutually by using symetric cryptography that operating with tiny and simple processing.

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Auto-configurable Security Mechanism for NFV

  • Kim, HyunJin;Park, PyungKoo;Ryou, Jaecheol
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • v.12 no.2
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    • pp.786-799
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    • 2018
  • Recently, NFV has attracted attention as a next-generation network virtualization technology for hardware -independent and efficient utilization of resources. NFV is a technology that not only virtualize computing, server, storage, network resources based on cloud computing but also connect Multi-Tenant of VNFs, a software network function. Therefore, it is possible to reduce the cost for constructing a physical network and to construct a logical network quickly by using NFV. However, in NFV, when a new VNF is added to a running Tenant, authentication between VNFs is not performed. Because of this problem, it is impossible to identify the presence of Fake-VNF in the tenant. Such a problem can cause an access from malicious attacker to one of VNFs in tenant as well as other VNFs in the tenant, disabling the NFV environment. In this paper, we propose Auto-configurable Security Mechanism in NFV including authentication between tenant-internal VNFs, and enforcement mechanism of security policy for traffic control between VNFs. This proposal not only authenticate identification of VNF when the VNF is registered, but also apply the security policy automatically to prevent malicious behavior in the tenant. Therefore, we can establish an independent communication channel for VNFs and guarantee a secure NFV environment.

A Dynamic Defense Using Client Puzzle for Identity-Forgery Attack on the South-Bound of Software Defined Networks

  • Wu, Zehui;Wei, Qiang;Ren, Kailei;Wang, Qingxian
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • v.11 no.2
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    • pp.846-864
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    • 2017
  • Software Defined Network (SDN) realizes management and control over the underlying forwarding device, along with acquisition and analysis of network topology and flow characters through south bridge protocol. Data path Identification (DPID) is the unique identity for managing the underlying device, so forged DPID can be used to attack the link of underlying forwarding devices, as well as carry out DoS over the upper-level controller. This paper proposes a dynamic defense method based on Client-Puzzle model, in which the controller achieves dynamic management over requests from forwarding devices through generating questions with multi-level difficulty. This method can rapidly reduce network load, and at the same time separate attack flow from legal flow, enabling the controller to provide continuous service for legal visit. We conduct experiments on open-source SDN controllers like Fluid and Ryu, the result of which verifies feasibility of this defense method. The experimental result also shows that when cost of controller and forwarding device increases by about 2%-5%, the cost of attacker's CPU increases by near 90%, which greatly raises the attack difficulty for attackers.

Hacking Path Retracing Algorithm using Packet Marking (패킷 마킹을 이용한 해킹경로 역추적 알고리즘)

  • 원승영;한승완;서동일;김선영;오창석
    • The Journal of the Korea Contents Association
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    • v.3 no.1
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    • pp.21-30
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    • 2003
  • Retracing schemes using packet marking are currently being studied to protect network resources by isolating DDoS attack. One promising solution is the probabilistic packet marking (PPM). However, PPM can't use ICMP by encoding a mark into the IP identification field. Likewise, it can't identify the original source through a hash function used to encode trace information and reduce the mark size. In addition, the retracing problem overlaps with the result from the XOR operation. An algorithm is therefore proposed to pursue the attacker's source efficiently. The source is marked in a packet using a router ID, with marking information abstracted.

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