• Title/Summary/Keyword: 다중창호

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Design and Implementation of 10Gigabit Ethernet Frame Multiplexer/Demultiplexer (10기가비트 이더넷 프레임 다중화/역다중화기 설계 및 구현)

  • 최창호;주범순;김도연;정해원
    • Proceedings of the IEEK Conference
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    • 2003.07a
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    • pp.378-381
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    • 2003
  • This paper presents a design and implementation of 10gigabit ethernet frame multiplexer/demultiplexer. In this paper, we discuss gigabit and 10 gigabit ethernet standard interfaces(GMII/XGMII) and we propose multiple gigabit ethernet frame multiplexing/demultiplexing scheme to handle 10gigabit ethernet frame instead of using 10gigabit network processor. And then 10gigabit ethernet frame MUX/DMUX is designed, verified and implemented using FPGA.

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Short-term Reactive Load Forecasting using Multiple Time-Series Model (다중 시계열 모델을 이용한 단기 부하 무효전력 예측)

  • Park, Woo-Hyun;Lee, Yun-Ho;Jung, Chang-Ho;Kim, Jin-O
    • Proceedings of the KIEE Conference
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    • 2002.11b
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    • pp.199-201
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    • 2002
  • This paper showed that there exists a non-linear relationship between MVAR and MW, and the rage of the threshold value of MVAR is 56 to 67. Also, we tried the one-hour ahead forecasting model of MVAR using the MW as the explanary variable.

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A Multiple signature algorithm interoperability on Public Key Infrastructure (PKI 다중 서명 알고리즘의 연동 방법)

  • 고혜원;임복희;서창호
    • Proceedings of the Korean Information Science Society Conference
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    • 2002.10e
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    • pp.445-447
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    • 2002
  • 인터넷 사용자의 증가와 더불어 보안의 중요성이 확산됨에 따라 공개키 기반구조(Public Key Infrastru cture)하에서의 상호 인증 기술이 정보보호 기반기술의 중요요소로 논의되고 있다. 전자상거래 환경의 각종 응용분야에 대한 정보보호 서비스를 위하여 PKI 환경구축이 선진국들을 중심으로 광범위하게 추진되고 있다. 그러나, 개별적으로 추진되고 있는 다양한 형태의 PKI 환경은 상호 연동성이 보장되어야 한다. 따라서, 본 논문에서는 상호연동을 위하여 고려해야 하는 서명 알고리즘의 상호 연동성 방안을 제안하였다.

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Multiple Peak Detection Using the Extended Fuzzy Clustering (확장된 퍼지 클러스터링 알고리즘을 이용한 다중 첨두 검출)

  • 김수환;조창호;강경진;이태원
    • Journal of the Korean Institute of Telematics and Electronics B
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    • v.29B no.1
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    • pp.102-112
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    • 1992
  • We have already proposed an extended fuzzy clustering algorithm which considers the importance of the data to be classified in a previous paper. In this paper, we suggest the extended fuzzy clustering algorithm based new method to slove a multiple peak detection problem, and prove experimently that this algorithm can detect the multiple peak adaptively to the noise and the shape of peaks.

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Diversity-Multiplexing Tradeoff Analysis for Half-Duplex Dynamic Decode-and-Forward Relay Protocol Using Multiple Antennas at a Single Node (단일 노드에서 다중 안테나를 사용하는 HD DDF Relay 프로토콜에 대한 DMT 분석)

  • Yim, Changho;Kim, Taeyoung;Yoon, Eunchul
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.38A no.5
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    • pp.426-435
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    • 2013
  • The diversity-multiplexing tradeoff (DMT) functions of three special half-duplex (HD) dynamic decode-and-forward (DDF) protocols with multiple antennas only at the source node, only at the destination node, and only at the relay node are analytically derived. The DMT functions of these three relay protocols are compared with one another and with those of the nonorthogonal amplify and forward (NAF) protocols.

An Efficient Submesh Allocation Scheme for Mesh-Connected Multicomputer Systems (메쉬 구조 다중컴퓨터 시스템을 위한 효율적인 서브메쉬 할당방법)

  • 이원주;전창호
    • Proceedings of the IEEK Conference
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    • 2003.07d
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    • pp.1331-1334
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    • 2003
  • 본 논문에서는 메쉬 구조 다중컴퓨터 시스템의 성능을 향상시킬 수 있는 새로운 서브메쉬 할당방법을 제안한다. 이 할당방법의 특징은 가용 서브메쉬의 탐색시 간과 외적단편화로 인한 서브메쉬의 할당 지연을 최소화함으로써 태스크의 대기시간을 줄이는 것이다. 이 할당방법은 태스크의 유형과 동일한 유형별 가용 서브메쉬 리스트에서 최적의 서브메쉬를 찾아 할당함으로써 서브메쉬 탐색시간을 줄인다. 또한 외적단편화로 인해 서브메쉬의 할당지연이 발생하면 할당 서브메쉬에서 수행중인 태스크를 다른 가용 서브메쉬에 재배치하고, 프로세서 단편을 통합하여 할당함으로써 서브메쉬의 할당지연을 최소화한다. 시뮬레이션을 통하여 서브메쉬 탐색시간을 줄이는 방법보다 외적 단편화로 인한 서브메쉬의 할당지연을 줄이는 방법이 태스크의 대기시간을 단축하는데 더 효과적임을 보인다.

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A Dynamic Job Relocation Strategy Considering Application's Characteristics in Multiple Grid Sites (다중 그리드 사이트에서 어플리케이션 특성을 고려한 동적 작업 재배치 정책)

  • Ryu, Kyung-Hoo;Lee, Woo-Joo;Jeon, Chang-Ho
    • Journal of the Korea Society of Computer and Information
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    • v.13 no.4
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    • pp.31-37
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    • 2008
  • In this paper, we propose a dynamic job relocation strategy that considering application's characteristics in multiple grid sites. This scheme classifies application to execute in multiple grid sites by their characteristics : computing intensive application, network intensive application. Also, it eliminates the communication between sites by allocating the network intensive application in single site, thus reducing the total job execution time. But if a number of free nodes to execute the network intensive application aren't found in single site, the proposed scheme the first allocates the network intensive application in multiple sites to minimize network latency. Then if the network intensive application being executed in multiple sites suitable free nodes are found in single site. the proposed scheme relocates the application being executed in multiple sites to another single site. This results in reducing the total job execution time. Through simulation, we show that the proposed dynamic job reallocation strategy improves the performance of Data Grid environment compared with previous strategies.

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Throughput Analysis of ASO-TDMA in Multi-hop Maritime Communication Network (다중-홉 선박 통신 네트워크를 위한 애드혹 자율 구성 TDMA 방식의 수율 성능 분석)

  • Cho, Kumin;Yun, Changho;Kang, Chung G.
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.37B no.9
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    • pp.741-749
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    • 2012
  • Ad Hoc Self-Organizing TDMA (ASO-TDMA) has been proposed as a specification to support the multi-hop data communication service for ships over VHF band. It allows for organizing a multi-hop ad-hoc network in a distributed manner by sharing the radio resources among the ships navigating along the route. In this paper, Markov chain analysis is given to provide the average throughput performance for ASO-TDMA protocol Furthermore, the analytical results are verified with computer simulation, which shows that there exists the optimal transmission rate to maximize the average throughput as the subframe size and the number of ships are varying in each hop region.

Performance Analysis of A Distributed Shared Memory Multiprocessor System Using PASEC (PARSEC을 이용한 분산공유메모리 다중프로세서 시스템의 성능분석)

  • Park, Joon-Seok;Jeon, Chang-Ho
    • The Transactions of the Korea Information Processing Society
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    • v.7 no.10
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    • pp.3049-3054
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    • 2000
  • In this paper, the effects of the hardware components and runtime environments on the overall performance of a distributed shared memory system are analyzed through simulation. In simulation, the system is modeled using PARSE[1.2] closely to the real runtime environment and the 2D FFT is virtually executed on it. The results of simulation show that the minor hardware components such as bus interfaces and local bus of a processor, which are usuallyignored or neglected when analyzing performance. have significant impacts on the overall system performance. Performance variations caused from runtime environments such as loop overhead and code optimuzatio are also analyzed quantitatively.

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Study on Estimate of Thermal Resistance of PVC Frame Window Due to Material Composition (PVC 창호의 구성에 따른 단열성능 예측에 관한 연구)

  • Sung, Uk-Joo;Lee, Jin-Sung;Cho, Soo;Jang, Cheol-Yong;Paek, Sang-Hun;Song, Kyoo-Dong
    • Proceedings of the SAREK Conference
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    • 2006.06a
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    • pp.1075-1080
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    • 2006
  • Purpose of this study is proposal of estimating method about window thermal performance that based on KS F 2278 'Test method of thermal resistance for windows and doors' due to material composition of PVC frame window. First step of this study is research of present state about material composition of PVC frame window. Second is selection of main effective elements about window thermal resistance. For example, composition of Glazing, Frame area ratio of total window area, frame width, opening type, area of heat transfer and so on. Third is multiple regression analysis about thermal performance of PVC frame window due to main effective elements. It produces equations of multiple regression analysis due to opening type. Case of sliding window is $Y=0.149+0.034X_g+0.248X_{far}$, 4track sliding is $Y=0.584+0.175X_g+1.355X_{far}-0.008X_{fw}$, Tilt & Turn window is $Y=-0.161+0.076X_g+0.576X_{far}+0.0008X_{fw}$.

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