• Title/Summary/Keyword: COS(card operating system)

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Design of COS for smart card user authentication using signature (서명을 이용한 스마트카드 사용자 인증을 위한 COS 설계)

  • 송영상;신인철
    • Journal of the Institute of Electronics Engineers of Korea CI
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    • v.41 no.4
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    • pp.103-112
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    • 2004
  • This paper suggests the way to realize smart card security system by using handwritten signature instead of a password which is traditionally used for user authentication. Because of the familiarity of signature we don't need to try to remember the password and signature is difficult to be used by guess or illegal forced situation. The feature data of handwritten signature is large, so we designed COS which is consist of special commands for processing user's handwritten signature data, user authentication, and basic commands based on ISO 7816-3. Also protocol among user, smart card terminal and DB server is designed. In registration process, the feature data of user signature is saved in both a DB server and a smart card. User authentication is processed by comparing the user signature and the saved feature data in a smart card and in a DB server. And the authentication result and hash value of signature data in DB server are transferred to smart card. During this process the authentication between DB server and user is finished. The proposed security system has more higher level of security in user authentication of smart card and it will Provide safer and more convenient security services.

A Study on Java COS for Devices Which Have Safe Power System (전력공급이 안정된 장치들을 위한 자바 COS에 관한 연구)

  • Jung, Min-Soo
    • Journal of Korea Multimedia Society
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    • v.14 no.1
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    • pp.103-111
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    • 2011
  • Legacy Java card which adapts a Java platform loads and executes an application when electronics power is provided. However, recently the most Java cards are embedded into a mobile terminal as USIM cards, therefore the power is continually provided for the smart cards. In this case, operation of a Java card system needs to consider its operating system to be advanced in memory management, object management and transaction mechanism. In this paper, we present a high performance Java Card system which is able to have efficient installation, loading and execution of application by applying a new memory management of the smart card that has safe power system.

Study on a Basis of a Smart Card Model (스마트카드 모델의 기준에 관한 연구)

  • Hwang, Sun-Tae;Lee, Hyung
    • The Journal of Society for e-Business Studies
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    • v.4 no.3
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    • pp.197-212
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    • 1999
  • In general, the electronic commerce systems comprise the background system, terminal, network and smart cards. Among them, the smart card systems are expected to take a great portion of applications for the convenience of rapidly improving technology. The technology includes adopting RISC processors or co-processors for cryptography and developing new memory systems based on the standardization. In this paper, we investigate the overall trends of the technology and the standardization process of smart cards. We also propose the guidelines to enhance the capabilities of designing H/W and S/W related to COS(Chip Operating System).

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Current and Future Trends of Smart Card Technology (스마트카드형 교통 카드의 기술 및 미래 동향)

  • Lee, Jung-Joo;Shon, Jung-Chul;Yu, Sin-Cheol
    • Proceedings of the KSR Conference
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    • 2008.06a
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    • pp.535-544
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    • 2008
  • Unlike MS(Magnetic Stripe), SMART CARD is equipped with COS(Chip Operating System) consisting of the Microprocessor and Memory where information can be stored and processed, and there are two types of cards according to the contact mode; the contact type that passes through a gold plated area and the contactless one that goes through the radio-frequency using an antenna embedded in the plastic card. the contactless IC card used for the transportation card was first introduced into local area buses in Seoul, and expanded throughout the country so that it has removed the inconvenience such as possession of cash, fare payment and collection. Focusing on the Seoul metropolitan area in 2004, prepaid and pay later cards were adopted and have been used interchangeably between a bus and subway. The card terminal compatible between a bus and subway is Proximity Integrated Circuit Card(PICC) as international standards(1443 Type A,B), communicates in the 13.56MHz dynamic frequency modulation-demodulation system, and adopts the Multi Secure Application Module(SAM). In the second half of 2009, the system avaliable nationwide will be built when the payment SAM standard is implemented.

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Development of T-commerce Processing Payment Module Using IC Credit Card(EMV) (IC신용카드(EMV)를 이용한 T-커머스 결제처리 모듈 개발)

  • Choi, Byoung-Kyu;Lee, Dong-Bok;Kim, Byung-Kon;Heu, Shin
    • The KIPS Transactions:PartA
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    • v.19A no.1
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    • pp.51-60
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    • 2012
  • IC(Integrated circuits)card, generally be named smard card, embedded MPU(Micro Processor Unit) of small-size, memory, EEPROM, Card Operating System(COS) and security algorithm. The IC card is used in almost all industry such as a finance(credit, bank, stock etc.), a traffic, a communication, a medical, a electronic passport, a membership management and etc. Recently, a application field of IC card is on the increase by method for payments of T-commerce, as T-commerce is becoming a new growth engine of the broadcating industry by trend of broadcasting and telecommunication convergence, smart mechanization of TV. For example, we can pay in IC credit card(or IC cash card) on T-Commerce. or we can be provided TV banking service in IC cash card such as ATM. However, so far, T-commerce payment services have weakness in security such as storage and disclosure of card information as well as dropping sharply about custom ease because of taking advantage of card information input method using remote control. To solve this problem, This paper developed processing payment module for implementing TV electronic payment system using IC credit card payment standard, EMV.