• Title/Summary/Keyword: 도메인 네임

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A Comparative Study of Block Chain : Bitcoin·Namecoin·MediBloc (블록체인 비교연구: 비트코인·네임코인·메디블록)

  • Kim, Ji Yeon
    • Journal of Science and Technology Studies
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    • v.18 no.3
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    • pp.217-255
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    • 2018
  • Bitcoin, which appeared in 2008, was merely a conceptual virtual currency, but it now enjoys the status as actual money. Bitcoin is an electronic money system that can be traded directly without a central trust institution. Thanks to the popularization of Bitcoin, blockchain technology has become a widespread concern. That technology is expanding not only the currency mechanism, but also a variety of other services. The possibility of a blockchain in relation to actual currency is ongoing. This paper investigates the technological characteristics and social construction of the blockchain by comparing the cases of Bitcoin, Namecoin, and MediBloc among blockchain applications. Namecoin emerged in 2013 is an attempt to replace the centralized Internet Domain Name System(DNS). There has been controversy over that current system for a long time, but replacing the already established system is not easy. Nevertheless, Namecoin has potential as an alternative. Meanwhile, MediBloc is an application that involves distributed management of medical data in South Korea. MediBloc claims that the key producers of medical data are patients themselves. This is to challenge to the question who is a knowledge producer of medical data. Through these three cases, it has discussed that blockchain technology does supports to form more democratic decision-making or simply provide a technical solution as automation. As a citizen, we can intervene in the realization of blockchains by presenting social agenda. This will be a method of the social construction of technology.

Fail-over Mechanisms based on Anycast for Stable IPv6 Recursive DNS Services (안정적인 IPv6 리커시브 DNS 서비스를 위한 애니캐스트 기반의 실패 복구 방안 연구)

  • Suh, Yu-Hwa;Kim, Kyung-Min;Shin, Yong-Tae;Song, Kwang-Ho;Kim, Weon;Park, Chan-Ki
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.32 no.2B
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    • pp.108-117
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    • 2007
  • Recursive DNS is configured as primary or secondary DNS on user PC and performs domain name resolution corresponding user's DNS query. At present, the amount of DNS traffic is occupied high rate in the total internet traffic and the internet traffic would be increased by failure of IPv6 DNS queries and responses as IPv6 transition environment. Also, existing Recursive DNS service mechanisms is unstable on malicious user's attack same as DoS/DDoS Attack and isn't provide to user trust DNS service fail-over. In this paper, we propose IPv6 Recursive DNS service mechanisms for based on anycast for improving stability. It is that fail-over Recursive DNS is configured IPv6 Anycast address for primary Recursive DNS's foil-over. this mechanisms increases reliability and resiliency to DoS/DDoS attacks and reduces query latency and helps minimize DNS traffic as inducing IPv6 address.

A Dynamic Internet Address Model for Providing Customized Information (사용자 맞춤형 정보 제공을 위한 동적 인터넷 주소 모델)

  • Lee, Young Ho;Koo, Yong Wan
    • Journal of Internet Computing and Services
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    • v.17 no.4
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    • pp.27-34
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    • 2016
  • The referents of internet addresses are no longer limited to web sites. A new address service by the international organization for the internet address (ICANN) introduces an open space for the TLD (Top Level Domain) strings so that each service, content, product, and other linguistic expressions may be allowed. The open TLD addresses are more suitable for representing the address of service units, contents, or products. In this paper, as an alternative to static Internet address service to return a consistent mapping result regardless of a user-specific different requirements, we design a dynamic internet address mapping model that returns mapping result to suit user particular requirements. In addition, we propose a method for implementing a internet address service without any changes in the existing domain protocols. It may implement a dynamic internet address by attaching to a encoded user's metadata and environment data within a internet address representation, and adding the module for dynamic mapping to the name servers. Through this proposal, trying to expand the functions of internet address, it is expected to be able to provide customized informaiton retrieval services for each user by using just internet address.

Foundation Techniques and Cooperation Test of Fault-tolerant Domain Name Servers for Internet Name Resolution (결함내성을 가진 도메인네임 서버의 구축 및 연동시험)

  • Choi, Jae-Won
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.15 no.1
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    • pp.41-50
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    • 2011
  • DNS(Domain Name System) is the Name Resolution Mechanism that makes conversion from a Domain Name of a computer on the Internet to an IP Address or the reverse conversion. In this paper we researched on the Foundation techniques of Fault-tolerant DNS Servers that the secondary DNS can take over and provide continuous services even though primary DNS stops due to some critical errors.

Design and Implementation of a URL Forwarding Server for Providing Multiple Domain Names (다중 도메인명을 지원하는 URL 전달 서버의 설계 및 구현)

  • 노상호;장세현;김상연;양희재
    • Proceedings of the Korean Information Science Society Conference
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    • 2000.04a
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    • pp.418-420
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    • 2000
  • 본 연구에서는 인터넷상에 존재하는 웹 사이트를 새로운 도메인 네임으로 연결시켜주는 URL forwarding 서버를 설계 및 구현하였다. URL forwarding 서버는 수많은 인터넷 사용자들의 웹 사이트를 간단하고 다양한 형태의 URL로 매핑 시켜준다. URL forwarding 서버는 HTTP 프로토콜에서 redirection 응답코드를 기반으로 구현되었으며 Linux 시스템에서 실험을 하였다. 본 논문에서는 HTTP와 forwarding 서버를 서로 비교 분석하여 고찰해보고 구현된 forwarding 서버의 동작에 대해서 알아본다.

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P-HDNS : A New Scheme to Support Multilingual Domain Names (한글도메인이름을 지원하기 위한 Proxy HDNS 구현)

  • Kim, Weon;Chin, Yong-Ohk
    • Journal of the Korean Institute of Telematics and Electronics C
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    • v.36C no.12
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    • pp.1-10
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    • 1999
  • Given a domain, client applications over the Internet are in support of the DNS (Domain Name System) to get its corresponding IP address. Currently, only domain names expressed by ASCII code are recognized over the Internet. This enforces the usage of ASCII domain names even in countries which use languages based on multilingual code other than ASCII code. In this paper, we present a methodology to support multilingual domain names on top of the existing DNS. The methodology is based on code translation of domain names in multilingual code into ASCII code via UTF5. We implement a gateway, called Proxy Hangul DNS (P-HDNS) based on the proposed methodology. This paper presents the principles of the methodology and the implementation details of P-HDNS.

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ARP spoofing attack and its countermeasures (도메인 네임 스푸핑 공격과 그 대응책)

  • Hong, Sunghyuck
    • Journal of Convergence Society for SMB
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    • v.4 no.1
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    • pp.47-53
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    • 2014
  • DNS spoofing, the DNS server with the address of a specific web server intercepts them in the process of translating the attacker wants to forge a Web server that is a way to access. ARP spoofing ARP request and response messages for the protocol without authentication vorticity incorrect information as to the ARP Cache Table to store the MAC addresses of their vulnerability using the MAC address of the other computer as if it were a lie technique. These DNS / ARP spoofing attacks in detail to find out about how it looks at ways to prevent. Think about the future research directions.

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