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김보승,이현곤,선창래,오수기,김유권 한국물리학회 2015 Current Applied Physics Vol.15 No.12
We observe that Ar gas confined in a tube maintained at a pressure higher than 10 mtorr by a baffled duct is very effective in minimizing the deposition of incoming Ag particles onto the surface of quartz crystal microbalance (QCM) in the tube. Ar gas is introduced into the tube and the gas flow to the main chamber is minimized by a baffled duct. In this way, the tube pressure of 10 mTorr or higher is achieved. The pressure is found to be enough to suppress the deposition of nearly 97% Ag particles onto the QCM in the tube. The suppression of the Ag deposition is successfully explained by reduced mean-free path at the high pressure in the tube. We propose that the present approach can be very promising in the mitigation of impurity particles on first mirrors in thermonuclear reactors.
김보승,장준희,기민준,오수기,김유권 한국물리학회 2014 Current Applied Physics Vol.14 No.4
We find that the effusive atomic beam of Au atoms is deflected away by collision with noble gas atoms crossing in a perpendicular geometry with a beam flux of >1 1016/cm2s. The ratio of defected Au atoms is found to increase proportional to the flux of noble gases. In addition, the effective cross-section for the collision between Au and noble gases (Ne, Ar, Xe) is measured to increase in an order of Ne < Ar < Xe. As a result of the increased collision probability, the deflection ratio of Au beam in the noble gases is measured to be enhanced for the Au flux in the range of 1 1011e1013 Au/cm2s. Our results show that the gas-phase collision can be reliably determined by measuring the deflection ratio. The experimentally determined collision cross-section also explains the variation in the deflection ratio among various noble gases and the importance of a long-range van der Waals interaction between Au and noble gases in the deflection efficiency.
Anycast 기술을 통한 신뢰적 향상 기법의 DNS 서비스에 관한 연구
김보승,김정재,김경민,박찬길,신용태 (사)디지털산업정보학회 2010 디지털산업정보학회논문지 Vol.6 No.4
DNS(Domain Name System) is a huge distributed database that converts host name to IP address. We are expecting the importance of DNS is more increased because many Internet application services appear according to the continuous increase of Internet users and nearly all the Internet application services use DNS. To prevent the interruption of DNS service, DNS server is configured with primary DNS server and a secondary DNS server which takes the place of primary DNS server in case of the service interruption. But this scheme is difficult for providing DNS service constantly in case of DDoS attack, which brings about much network load or network problems in DNS server group. Therefore, This paper proposed the scheme to locally distribute load of DNS server, and the use of address system to group the distributed DNS servers. Also, it proposed the authentication scheme of the correspondent server in case the server is changed in DNS server group having grouping address. In this paper, it is shown that the prosed scheme guarantees the improved service reliability with maintaining the present service performance through the evaluation. Through this, we can expect the high improved DNS service can be provided in the Internet environment in the future.
멀티캐스트 전송을 위한 에이전트 기반의 안전한 그룹 키 관리방안 연구
김보승(Kim, Bo-Seung),김정재(Kim, Jeong-Jai),장봉덕(Zhang, Feng-De),신용태(Shin, Yong-Tae) 한국산학기술학회 2011 한국산학기술학회논문지 Vol.12 No.1
최근 멀티캐스팅의 활용도가 높아짐에 따라 그에 대한 보안이 중요한 문제로 인식되게 되었다. 멀티캐스트 환경에서 보안성을 제공하기 위해 지금까지 진행되어 오고 있는 연구는 주로 그룹 키 관리기법에 관한 것이다. 멀티 캐스트 보안에 있어서 가장 중요한 것은 허가된 멤버만이 데이터에 접근할 수 있어야 한다. 이는 적합한 그룹 멤버들 만이 공유하는 그룹 키를 통해 데이터를 암호화하여 전송함으로써 해결된다. 본 논문에서는 안전한 멀티캐스트 데이 터를 전달하기 위하여 그룹 가입/탈퇴가 빈번한 멀티캐스트 환경에 적합한 에이전트기반의 그룹 키 관리방안을 제안 하고자 한다. 에이전트기술을 도입하여 전체그룹을 여러 개의 서브그룹으로 분할하여 에이전트가 각 서브그룹의 멤버 들을 관리하도록 한다. 또한 에이전트 내부에서는 트리기반으로 키를 관리하고 키 갱신을 위하여 일방향 해쉬함수를 사용한다. 이러한 제안방식은 통신 중간단계에서의 그룹 키 교환을 배제하여 키 노출을 방지하고 키 재분배 과정에서 발생하는 지연을 감소시킬 수 있다. As practical use degree of multicasting increase, security for multicast is recognized as an important issue. Previous research in the area of secure multicast has mainly focused on group key management. The most important thing about the security of multicast is that only authorized members of this group will be able to access the data. The member of access to multicast communication is to use cryptography with a common shared session encryption key. We propose decentralized group key management based on agent for dynamic multicast with large groups and frequent joins or leaves in this paper. Whole group divide to several subgroup using agent technology and each agent manage members of each subgroup. Also, when rekeying updates that using one-way hash function can prevent the key exposure, and reduce the key distribution delay.
멀티캐스트 전송을 위한 키 체인 기반의 안전한 그룹 키 관리방안 연구
김보승(Kim, Bo-Seung),김정재(Kim, Jeong-Jai),이기영(Lee, Ki-Young),신용태(Shin, Yong-Tae) 한국산학기술학회 2010 한국산학기술학회논문지 Vol.11 No.9
최근 화상회의, 인터넷방송, 온라인 게임등 대규모의 데이터를 여러사용자에게 동시에 전송하는 애플리케 이션이 증가함으로 인해 그룹 통신의 중요성 및 활용도가 높아지게 됨에 따라 그에 대한 보안이 중요한 문제로 인 식되게 되었다. 멀티캐스트 환경에서 보안성을 제공하기 위해 기존의 하나의 그룹 관리 서버를 통해 키 트리 기반 의 프로토콜을 이용한 연구가 많지만, 제안하는 논문에서는 상대적으로 오버헤드가 적은 안전한 그룹키 관리 기법 을 제안하고자 한다. 따라서 제안하는 논문에서는 기존의 그룹키 관리기법과의 차별성 및 효율성을 비교하여 우수 성을 입증한다. Because the application simultaneously to transmit large amounts of data (Video conferencing, Internet broadcasting, Online games etc.) to multiple users increases, the importance and utilization of group communication was greater. So the security was recognized as a important issue. To provide security in multicast environment, A study of single group management server using protocol based on Key Tree Scheme was proposed. But the paper proposes secure group key management scheme to be a relatively low-overhead. Therefore proposed paper is demonstrated to be excellent by comparing the effectiveness of existing and proposed group key management scheme.