• 제목/요약/키워드: Multi photon process

검색결과 13건 처리시간 0.04초

Multi-Frame Face Classification with Decision-Level Fusion based on Photon-Counting Linear Discriminant Analysis

  • Yeom, Seokwon
    • International Journal of Fuzzy Logic and Intelligent Systems
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    • 제14권4호
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    • pp.332-339
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    • 2014
  • Face classification has wide applications in security and surveillance. However, this technique presents various challenges caused by pose, illumination, and expression changes. Face recognition with long-distance images involves additional challenges, owing to focusing problems and motion blurring. Multiple frames under varying spatial or temporal settings can acquire additional information, which can be used to achieve improved classification performance. This study investigates the effectiveness of multi-frame decision-level fusion with photon-counting linear discriminant analysis. Multiple frames generate multiple scores for each class. The fusion process comprises three stages: score normalization, score validation, and score combination. Candidate scores are selected during the score validation process, after the scores are normalized. The score validation process removes bad scores that can degrade the final output. The selected candidate scores are combined using one of the following fusion rules: maximum, averaging, and majority voting. Degraded facial images are employed to demonstrate the robustness of multi-frame decision-level fusion in harsh environments. Out-of-focus and motion blurring point-spread functions are applied to the test images, to simulate long-distance acquisition. Experimental results with three facial data sets indicate the efficiency of the proposed decision-level fusion scheme.

다중조사 복셀 매트릭스 스캐닝법을 이용한 이광자 중합에 의한 마이크로 3차원 곡면형상 제작 (Fabrication of Three-Dimensional Curved Microstructures by Two-Photon Polymerization Employing Multi-Exposure Voxel Matrix Scanning Method)

  • 임태우;박상후;양동열;공홍진;이광섭
    • 폴리머
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    • 제29권4호
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    • pp.418-421
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    • 2005
  • 본 연구에서는 나노/마이크로 소자 및 MEMS 제작에 활용가능하고 또한 수십 마이크로미터 크기의 3차원 곡면을 가진 형상을 제작하기 유리한 이광자 광중합을 이용한 다중조사 복셀 매트릭스 스캐닝법(multi-exposure voxel matrix scanning method)에 의한 나노 복화공정을 개발하였다. 이 공정을 통하여는 높이에 따라 14가지의 색을 가진 등고선으로 표현된 3차원 자유곡면 형상을 적층방식이 아닌 단일 층으로 3차원으로 제작할 수 있다. 여기서 수광각도가 1.25인 집광렌즈를 사용하여 레이저의 조사시간에 따라 1.2 um에서 6.4 um까지 변하는 복셀의 높이 차이를 이용하여 3차원 곡면 제작이 가능하다. 본 연구의 유용성을 검토하기 위하여 몇 가지 3차원 곡면형상을 초미세 입체 패터닝 공정에서 사용하는 일반적인 적층방식을 사용하지 않고 단층으로 제작하여 시간을 단축하였다.

극미세 3 차원 형상복제를 위한 금속몰드 제작에 관한 연구 (Fabrication of 3D Metallic Molds for Multi-replication of Microstructures)

  • 배공명;고종수;박상후;임태우;양동열
    • 한국정밀공학회지
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    • 제26권8호
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    • pp.119-125
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    • 2009
  • Fabrication of a three-dimensional (3D) metallic mold for multi-production of a microstructure was studied to settle the problem of long processing time in 3D microfabrication. To date, complicated 3D microstructures including 3D photonic crystals, 3D microlens array, 3D filter for microfludics, and something else were created successfully using the two-photon polymerization (TPP) which was considered as paving the way to fabricate a real 3D shape in nano/microscale. However, for those fabrications, much processing time and efforts were inevitably required. To solve this issue, a simple and effective way was proposed in this paper; 3D master patterns were prepared using TPP, and then counter-shaped Ni molds were fabricated by electroforming process. By using these molds, 3D microstructures can be reproduced with short-processing time and low-effort comparing to the conventional approach, TPP We report some parameters to fabricate a metallic mold precisely.

Transition of Femtosecond Laser Ablation Mechanism for Sodalime Glass Caused by Photoinduced Defects

  • Jeoung, Sae-Chae;Choi, Jun-Rye;Park, Myung-Il;Park, Mi-Ra;Choi, Dae-Sik
    • Journal of the Optical Society of Korea
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    • 제7권3호
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    • pp.150-155
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    • 2003
  • Femtosecond laser ablation mechanism was systematically investigated on sodalime glass in ambient conditions. The ablation crater diameter was measured for varying numbers of laser pulses as for varying well as the laser fluence. The analysis of the results with a one dimensional spatial Gaussian fluence distribution reveals that the inherent ablation mechanism has been altered from a multi-photon process to a single photon excitation due to defect sites that have been accumulated by successive laser pulses. Furthermore, the transition between the two regimes was found to be a function of both the laser fluence and the number of laser shots.

Improved Photovoltaic Performance of Inverted Polymer Solar Cells using Multi-functional Quantum-dots Monolayer

  • Moon, Byung Joon;Lee, Kyu Seung;Kim, Sang Jin;Shin, Dong Heon;Oh, Yelin;Lee, Sanghyun;Kim, Tae-Wook;Park, Min;Son, Dong Ick;Bae, Sukang
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
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    • pp.400.1-400.1
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    • 2016
  • Interfacial engineering approaches as an efficient strategy for improving the power conversion efficiencies (PCEs) of inverted polymer solar cells (iPSCs) has attracted considerable attention. Recently, polymer surface modifiers, such as poly(ethyleneimine) (PEI) and polyethylenimine ethoxylated (PEIE), were introduced to produce low WF electrodes and were reported to have good electron selectivity for inverted polymer solar cells (iPSCs) without an n-type metal oxide layer. To obtain more efficient solar cells, quantum dots (QDs) are used as effective sensitizers across a broad spectral range from visible to near IR. Additionally, they have the ability to efficiently generate multiple excitons from a single photon via a process called carrier multiplication (CM) or multiple exciton generation (MEG). However, in general, it is very difficult to prepare a bilayer structure with an organic layer and a QD interlayer through a solution process, because most solvents can dissolve and destroy the organic layer and QD interlayer. To present a more effective strategy for surpassing the limitations of traditional methods, we studied and fabricated the highly efficient iPSCs with mono-layered QDs as an effective multi-functional layer, to enhance the quantum yield caused by various effects of QDs monolayer. The mono-layered QDs play the multi-functional role as surface modifier, sub-photosensitizer and electron transport layer. Using this effective approach, we achieve the highest conversion efficiency of ~10.3% resulting from improved interfacial properties and efficient charge transfer, which is verified by various analysis tools.

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피나클치료계획시스템에서 자동모델화과정으로 얻은 Jaw와 다엽콜리메이터의 투과 계수 평가 (Estimation of Jaw and MLC Transmission Factor Obtained by the Auto-modeling Process in the Pinnacle3 Treatment Planning System)

  • 황태진;강세권;정광호;박소아;이미연;김경주;오도훈;배훈식;서태석
    • 한국의학물리학회지:의학물리
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    • 제20권4호
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    • pp.269-276
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    • 2009
  • 세기조절방사선치료(IMRT)뿐만 아니라 3차원 입체조형치료(3D-CRT)와 같이 광자선을 이용한 방사선 치료 기술은 방사선을 받아야 하는 표적의 면적을 충분히 증가시키면서, 동시에 정상 조직은 방사선으로부터 보호하기 위하여 정확한 선량 계산을 필요로 한다. Jaw 콜리메이터와 다엽 콜리메이터가 그러한 목적을 위해서 사용되어 왔다. 우리 기관에서 사용하는 피나클 치료계획시스템은 모델기반의 광자선량 알고리듬을 사용하기 때문에 Jaw 콜리메이터 투과계수(JTF)와 다엽 콜리메이터 투과계수(MLCTF)와 같은 모델변수들의 집합이 측정된 데이터로부터 결정된다. 그러나, 이러한 자동모델화과정에 의해서 얻어진 모델변수들이 직접 측정하여 얻은 것들과 다를 수 있는데, 이는 선량분포에 영향을 줄 수 있다. 그래서, 이 연구에서 우리는 피나클 치료계획시스템에서 자동모델화과정에 의해 얻은 JTF와 MLCTF를 평가하였다. 먼저 우리는 이 연구에서 Jaw 콜리메이터 투과계수(JTF)와 다엽 콜리메이터 투과계수(MLCTF)를 직접 측정하여 얻었는데, 이것은 물팬톰 내 기준깊이에서 조사면이 $0{\times}0\;cm^2$일 때의 선량과 $10{\times}10\;cm^2$일 때의 선량의 비로 얻었다. 또한, JTF와 MLCTF는 치료계획시스템내 자동모델화 과정에 의해서도 얻어서, 이 값들이 3차원 입체조형치료시에 선량에 어떠한 영향을 끼치는지 팬톰 연구와 환자 연구를 통해서 평가하였다. 직접 측정한 경우 JTF는 6 MV의 경우에 0.001966, 10 MV의 경우에는 0.002971이었고, MLCTF는 6 MV의 경우에 0.01657, 10 MV의 경우에 0.01925이었다. 한편, 자동모델화 과정에 의해 얻은 경우, JTF는 6 MV의 경우에 0.001983, 10 MV의 경우에는 0.010431이었고, MLCTF는 6 MV의 경우에 0.00188, 10 MV의 경우에 0.00453이었다. JTF와 MLCTF의 경우에 직접 측정한 것은 자동모델화 과정에 의해 얻은 값과 큰 차이를 보였으나, 6 MV와 10 MV의 선질을 고려하면, 보다 합리적이었고, 이러한 값의 차이는 낮은 선량의 영역에서 선량에 영향을 미쳤다. JTF와 MLCTF의 잘못된 값은 선량의 오차를 다소 발생시킬 수도 있기 때문에, JTF와 MLCTF를 자동모델화과정에 의해서 얻은 값과 직접 측정하여 얻은 값을 비교하는 것은 빔커미셔닝 단계에서 도움이 될 것이다.

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Efficiency of Gas-Phase Ion Formation in Matrix-Assisted Laser Desorption Ionization with 2,5-Dihydroxybenzoic Acid as Matrix

  • Park, Kyung Man;Ahn, Sung Hee;Bae, Yong Jin;Kim, Myung Soo
    • Bulletin of the Korean Chemical Society
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    • 제34권3호
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    • pp.907-911
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    • 2013
  • Numbers of matrix- and analyte-derived ions and their sum in matrix-assisted laser desorption ionization (MALDI) of a peptide were measured using 2,5-dihydroxybenzoic acid (DHB) as matrix. As for MALDI with ${\alpha}$-cyano-4-hydroxy cinnamic acid as matrix, the sum was independent of the peptide concentration in the solid sample, or was the same as that of pure DHB. This suggested that the matrix ion was the primary ion and that the peptide ion was generated by matrix-to-peptide proton transfer. Experimental ionization efficiencies of $10^{-5}-10^{-4}$ for peptides and $10^{-8}-10^{-7}$ for matrices are far smaller than $10^{-3}-10^{-1}$ for peptides and $10^{-5}-10^{-3}$ for matrices speculated by Hillenkamp and Karas. Number of gas-phase ions generated by MALDI was unaffected by laser wavelength or pulse energy. This suggests that the main role of photo-absorption in MALDI is not in generating ions via a multi-photon process but in ablating materials in a solid sample to the gas phase.

High-Efficiency Dye-Sensitized Solar Cells by Extended Spectral Response Utilizing Dye Selective Positioning Method

  • 이도권;박세웅
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2010년도 춘계학술발표대회
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    • pp.12.1-12.1
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    • 2010
  • We have developed a facile method to position different dyes (N719 and N749) sequentially in a mesoporous TiO2 layer through selective desorption and adsorption processes. Only upper part of the first adsorbed N719 dye was selectively removed by the desorption solution formulated with polypropylene glycol and tetrabutylammonium hydroxide without any damages of the dye. The desorption depth was controlled by the number of desorption process. Multi-dyed dye-sensitized solar cells (MDSSC) were fabricated by utilizing the method and their photovoltaic properties were investigated. From the incident photon-to-current conversion efficiency (IPCE) measurement, it was found that the MDSSC exhibited the extended spectral response for the solar spectrum while without decrease of maximum IPCE value compare to the DSSCs using one kind of dye (N719 or N749). The highest photocurrent density of 19.3 mA/cm2 was obtained from the MDSSC utilizing $15\;{\mu}m$ N719 / $14\;{\mu}m$ N749 bi-layered mesoporous TiO2 film. The photocurrent density was 25% and 8% higher than that of the DSSC using only N719 and N749 dye as a sensitizer, respectively. The power conversion efficiency of 9.8% was achieved from the MDSSC under the AM 1.5G one sun illumination.

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