• Title/Summary/Keyword: 조각된 셀

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Mesh Geometry Compression for Mobile Graphics (모바일 그래픽스를 위한 메쉬 위치정보 압축)

  • Lee, Jong-Seok;Choe, Sung-Yul;Lee, Seung-Yong
    • 한국HCI학회:학술대회논문집
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    • 2008.02a
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    • pp.403-408
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    • 2008
  • 본 논문은 모바일 그래픽스 응용에 적합한 메쉬 위치정보의 압축 기법을 제시한다. 제시한 기법은 복원 에러를 최소화하기 위한 메쉬 분할 기법과 기존의 방법에서 방생하는 시각적 손상문제를 해결한 지역적 정량화 기법으로 구성된다. 기존 방법에서는 분할된 조각 메쉬들 간의 경계가 벌어지는 시각적 손상문제가 방생하는데, 모든 조각 메쉬의 지역적 양자화 셀이 같은 크기와 정렬된 지역 좌표축을 갖게 하여 이 문제를 해결했다. 제시한 기법은 메쉬를 렌더링할 때 압축된 위치정보를 메모리에서 그래픽스 하드웨어로 전송하여 실시간으로 복원함으로써 모바일 기기의 자원을 절약하는 특징을 갖는다. 압축된 위치정보의 복원을 표준화된 렌더링 파이프라인에 결합이 가능하도록 설계함으로써 조각 메쉬당 한번의 행렬 곱셈으로 복원이 가능하다. 실험에서는 32 비트 부동소수점 수로 표현되는 위치정보를 8 비트 정수로 지역적 정량화하여 70%의 압축률에서 11 비트 전역적 정량화와 대등한 수준의 시각적 품질을 달성했다.

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An Empirical Study about the Segmented Cell in Anode Side of PEMFC

  • Kim, Jae-Ho;Sohn, Young-Jun;Kim, Min-Jin;Park, Gu-Gon;Yim, Sung-Dae
    • 한국신재생에너지학회:학술대회논문집
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    • 2009.06a
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    • pp.357-360
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    • 2009
  • The present study focused on the segmented cell which has the similar performance to unaltered (not segmented) cell in real operating condition. Many literatures have been made the segmented cell to observe the behavior of local current density distribution in the single cell. However, it has been lack of scheme to segment the cell in that the detailed interpretation of segmenting in analytic point of view was insufficient. Hence, the basic idea of segmenting was introduced to determine the component to be segmented in anode side of unit cell. The electrical contact/bulk resistance was measured by using four wire/probe method through each part of cell components including MEA, GDL, Bipolar Plate and Current Collector. Electron transport mechanism was predicted by comparing resistance values which were obtained from the experiment. As a result, this offered a great benefit to segment the cell efficiently. With this method further experiments would be conducted in research areas which require current density distribution at the same operating condition as unaltered cell.

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Surrealism in Labyrinth: Marcel Duchamp's Mile of String for "First Papers of Surrealism" (1942) (미로 속의 초현실주의: 1942년 ${\ll}$초현실주의의 1차서류${\gg}$ 전시와 마르셀 뒤샹의 <1마일의 끈>에 관한 연구)

  • Jung, Eun Young
    • The Journal of Art Theory & Practice
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    • no.15
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    • pp.167-198
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    • 2013
  • This paper explores rich and complex implications of Marcel Duchamp's Mile of String which he created for "First Papers of Surrealism," the Surrealist international exhibition in New York in 1942. Part of a larger project devoted to investigating Duchamp's role in Surrealist exhibitions and his relation to the avant-garde group, this paper focuses on Duchamp's exhibition installation in the 1942 show. Under the title of "g$\acute{e}$n$\acute{e}$rateur-arbitre" Duchamp played an important role as installation and exhibition designer in a series of major Surrealist exhibitions in the 1930's-1960's. The "First Papers of Surrealism" was held by Surrealists who exiled in New York during World War I, and Duchamp created a labyrinthine installation of string for the exhibition, which physically blocked the spectator and optically hindered his or her contemplative view. Unraveling the intricately related meanings of Mile of String as an independent work of art and an installation for a specific exhibition, I examine the work on two levels: first, how the work was situated in the context of Duchamp's oeuvre, particularly his earlier work employing string or thread; second, how and in what way the installation rendered a critique on Surrealism as a group and an avant-garde movement. More specifically, by exploring the concepts of 'pataphysics' and voluntary 'nomadism' implicated in Duchamp's work, I suggest that his Mile of String asserted a critical stance against nationalism and collective identity of Surrealism and manifested a radical individualism founded upon what he called the spirit of 'expatriation.'

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Transition Metal Dichalcogenide Nanocatalyst for Solar-Driven Photoelectrochemical Water Splitting (전이금속 디칼코제나이드 나노촉매를 이용한 태양광 흡수 광화학적 물분해 연구)

  • Yoo, Jisun;Cha, Eunhee;Park, Jeunghee;Lim, Soo A
    • Journal of the Korean Electrochemical Society
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    • v.23 no.2
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    • pp.25-38
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    • 2020
  • Photoelectrochemical water splitting has been considered as the most promising technology for generating hydrogen energy. Transition metal dichalcogenide (TMD) compounds have currently attracted tremendous attention due to their outstanding ability towards the catalytic water-splitting hydrogen evolution reaction (HER). Herein, we report the synthesis method of various transition metal dichalcogenide including MoS2, MoSe2, WS2, and WSe2 nanosheets as excellent catalysts for solar-driven photoelectrochemical (PEC) hydrogen evolution. Photocathodes were fabricated by growing the nanosheets directly onto Si nanowire (NW) arrays, with a thickness of 20 nm. The metal ion layers were formed by soaking the metal chloride ethanol solution and subsequent sulfurization or selenization produced the transition metal chalcogenide. They all exhibit excellent PEC performance in 0.5 M H2SO4; the photocurrent reaches to 20 mA cm-2 (at 0 V vs. RHE) and the onset potential is 0.2 V under AM1.5 condition. The quantum efficiency of hydrogen generation is avg. 90%. The stability of MoS2 and MoSe2 is 90% for 3h, which is higher than that (80%) of WS2 and WSe2. Detailed structure analysis using X-ray photoelectron spectroscopy for before/after HER reveals that the Si-WS2 and Si-WSe2 experience more oxidation of Si NWs than Si-MoS2 and Si-MoSe2. This can be explained by the less protection of Si NW surface by their flake shape morphology. The high catalytic activity of TMDs should be the main cause of this enhanced PEC performance, promising efficient water-splitting Si-based PEC cells.