• Title/Summary/Keyword: Tag Privacy

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Hash based Secure RFID Authentication Protocol for User Privacy Protection (사용자 프라이버시 보호를 위한 해쉬 기반의 안전한 RFID 인증 프로토콜)

  • Lee, Han-Kwon;Cho, Tae-Kyung;Yoo, Hyun-Joong;Park, Byoung-Soo
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.8 no.1
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    • pp.33-40
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    • 2007
  • RFID, a non-contact wireless identification technology is being noticed as a technology to alternate barcode system in distribution industry and general industry. Despite of merit of RFID, there are issues to be solved for practical use. One of them, which are most important, is resolution of user's information protection. RFID system without security function bears risk exposing personal data and user's privacy. In this paper, we propose mutual authentication protocol for RFID system in order to solve this security issue. This study aimed to protect user's privacy by providing dynamic ID for tag through authentication protocol safe from security threats. Information being transmitted between backend, reader and tag has no direct connection with ID of tag, and it conducts authentication process using one-way hash function, which prevents attacker's obtaining of tag information using information being transmitted.

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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 Study on RFID System for Accessing Multiple Objects Using Encrypted ID (암호화된 ID를 이용한 다중 객체 접근 방식의 RFID 시스템 연구)

  • Jung, Jong-Jin;Kim, Ji-Yeon
    • Journal of Korea Society of Industrial Information Systems
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    • v.13 no.2
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    • pp.80-87
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    • 2008
  • RFID systems are being studied and developed in the area of the industry and marketplace. Recently RFID systems are core element of the ubiquitous technologies in individual life and industry. However, RFID systems often cause some serious problems such as violation of privacy and information security because their contactless devices communicate each other by radio frequency In this paper, we propose multiple objects RFID tag scheme including tag structure and authentication protocol. The proposed RFID tag structure maintains several object IDs of different applications in a tag memory. The tag structure allows those applications to access object IDs simultaneously. The authentication protocol for multiple objects tag is designed ta overcome the problems of security and privacy. The protocol has robustness against various attacks in low cost RFID systems. We evaluate the efficiency of proposed scheme and compare security of our scheme with several traditional schemes.

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Enhanced Authentication Protocol of RFID System (RFID 시스템의 개선된 인증 프로토콜)

  • Lee, Sang-Ryul
    • Journal of the Korea Society of Computer and Information
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    • v.12 no.6
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    • pp.193-200
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    • 2007
  • There is an advantage that RFID system is better than previous bar code system in storage ability and noncontact property. But, everyone can easily receive the transmitting information by using RF signal. So, there is a problem that system security and personal privacy are threatened. In this paper, I propose RFID system that is secure against attacks like eavesdropping, replay, spoofing and location tracking and can efficiently provide mutual authentication services between reader and tag. The proposed RFID system can be used in various sections of ubiquitous computing environment.

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Mutual Authentication Protocol Of The Low-cost RFID Using Random Partial ID (랜덤 부분 ID를 이용한 저비용 RFID 상호인증 프로토콜)

  • Li Yong-Zhen;Mun Hyung-Jin;Jeong Yoon-Su;Lee Sang-Ho
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.31 no.7C
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    • pp.755-761
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    • 2006
  • Previous RFID technique, it is recognizable without the physical contact between the reader and the tag, causes the serious privacy infringement such as excessive information exposure and user's location information tracking due to the wireless characteristics. Especially the information security problem of read only tag is solved by physical method. In this paper, we propose a low-cost mutual authentication protocol which is adopted to read-only tag and secure to several attacks using XOR and Partial ID. The proposed protocol is secure against reply attacking, eavesdropping, spoofing attacking and location tracking.

A Scheme of Computational Time Reduction on Back-End Server Using Computational Grid (계산 그리드를 이용한 백엔드 서버의 계산시간 단축 방안)

  • Hong, Seong-Pyo;Han, Seung-Jo
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.16 no.12
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    • pp.2695-2701
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    • 2012
  • We need privacy protection protocols, that satisfy three essential security requirements; confidentiality, indistinguishability and forward security, in order to protect user's privacy in RFID system. The hash-chain based protocol that Ohkubo et. al proposed is the most secure protocol, that satisfies all of the essential security requirements, among existing protocols. But, this protocol has a disadvantage that it takes very long time to identify a tag in the back-end server. In this paper, we propose a scheme to keep security just as it is and to reduce computation time for identifying a tag in back-end server. The proposed scheme shows the results that the identification time in back-end server is reduced considerably compared to the hash-chain based protocol.

A Study on the Efficient RFID Tag Identification considering Performance Information of Individual Nodes in a Grid Environment (그리드 환경에서 노드별 성능정보를 고려한 효율적인 RFID 태그 판별에 관한 연구)

  • Shin, Myeong-Sook;Lee, Joon
    • The Journal of the Korea institute of electronic communication sciences
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    • v.6 no.5
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    • pp.797-802
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    • 2011
  • RFID is recognized to technically occupy important position in ubiquitous computing environment and expected to create new markets in a variety of fields from now on. In order to generalize RFID system, it is required to solve the problem of privacy invasion and expedite lots of tags We suggest efficient RFID Tag Identification to identify tags quickly on the satisfaction with 3 security requirements of privacy protection in this paper. This methods are transferred to Grid environment through parallel analysis of Hash-Chain, and we measure performance of each nodes under the Grid environment. Then, We'll suggest SP-Division Algorithm to identify tags with each nodes and implement it in a Grid environment.

Method Decoder for Low-Cost RFID Tags

  • Juels, Ari
    • 한국정보컨버전스학회:학술대회논문집
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    • 2008.06a
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    • pp.47-52
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    • 2008
  • A radio-frequency identification(RFID) tag is a small, inexpensive microchip that emits an identifier in response to a query from a nearby reader. The price of these tags promises to drop to the range of $0.05 per unit in the next several years, offering a viable and powerful replacement for barcodes. The challenge in providing security for low-cost RFID tags is that they are computationally weak devices, unable to perform even basic symmetric-key cryptographic operations. Security researchers often therefore assume that good privacy protection in RFID tags is unattainable. In this paper, we explore a notion of minimalist cryptography suitable for RFID tags. We consider the type of security obtainable in RFID devices with a small amount of rewritable memory, but very limited computing capability. Our aim is to show that standard cryptography is not necessary as a starting point for improving security of very weak RFID devices. Our contribution is threefold: 1. We propose a new formal security model for authentication and privacy in RFID tags. This model takes into account the natural computational limitations and the likely attack scenarios for RFID tags in real-world settings. It represents a useful divergence from standard cryptographic security modeling, and thus a new view of practical formalization of minimal security requirements for low-cost RFID-tag security. 2. We describe protocol that provably achieves the properties of authentication and privacy in RFID tags in our proposed model, and in a good practical sense. Our proposed protocol involves no computationally intensive cryptographic operations, and relatively little storage. 3. Of particular practical interest, we describe some reduced-functionality variants of our protocol. We show, for instance, how static pseudonyms may considerably enhance security against eavesdropping in low-cost RFID tags. Our most basic static-pseudonym proposals require virtually no increase in existing RFID tag resources.

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Performance Evaluation of Authentication Protocol for Mobile RFID Privacy (모바일 RFID 프라이버시를 위한 인증 프로토콜 성능 평가)

  • Eom, Tae-Yang;Yi, Jeong-Hyun
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.36 no.6B
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    • pp.618-630
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    • 2011
  • Mobile RFID system, that consists of the existing RFID reader mounted on the mobile devices such as smartphones, is able to provide the users a variety of services and convenience. Although the users can get the information about a certain product anytime anywhere, there is high probability that their privacy may be violated because their belongings with RFID tags can be scanned by other mobile readers at any time. Several RFID authentication schemes have been proposed to deal with these privacy issues. However, since the existing solutions require heavy computation on the tag side, most of them is not applicable to the general low-cost passive tags which do not have any processing unit. In this paper, we propose the efficient authentication scheme for mobile RFID system applicable to the passive tags as well as the active ones by the best use of computing capability of mobile devices. The proposed scheme satisfies the import security issues such as tag protection, untraceability, anti-traffic analysis. We also implement the proposed scheme on top of real smartphone for feasibility and show the experimental results from it.

A Low-Cost RFID Tag Search Protocol Preventing the Reuse of Mobile Reader's Tag-List (모바일 리더의 태그 리스트 재사용을 방지하는 저비용 RFID 태그 검색 프로토콜)

  • Yeo, Don-Gu;Lee, Sang-Rae;Choi, Hyun-Woo;Jang, Jae-Hoon;Youm, Heung-Youl
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.21 no.1
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    • pp.143-151
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    • 2011
  • When a real-time data transfer is not possible between a reader and a back-end server in the mobile environment, the reader should support a capability to search a certain tag without communicating with a back-end server. Some recent papers related to the mobile reader-based tag search protocol have addressed privacy concerns for the reader and the tags. However, to our best knowledge, there are no papers addressing the problem arising from reusing tag lists existed in the mobile reader. In other words, there arise a problem that a mobile reader which has lost an right to access to a specific tag is able to search that tag by reusing a tag list for searching a particular tag. If mobile reader having an unauthorized tag list, the mobile reader can reuse a particular tag list. Our protocol provides the enhanced secure tag lists preventing the reuse of the tag lists and an efficient tag search protocol based on dynamic identity in the mobile reader-based RFID environments.