• Title/Summary/Keyword: 출력곡선

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Study on Efficiency Optimization for Silicon Solar Cell (실리콘 태양전지의 효율 최적화를 위한 연구)

  • Han, Ji-Hyung;Jung, Hak-Kee;Jeong, Dong-Soo;Lee, Jong-In;Kwon, Oh-Shin
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2011.10a
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    • pp.899-902
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    • 2011
  • 본 연구에서는 MicroTec 시뮬레이터를 이용하여 태양전지의 최적화 효율을 얻기 위한 연구를 하고자 한다. 효율은 태양전지의 성능을 나타내는 가장 중요한 인자로서 태양으로부터 입사된 에너지에 대한 출력에너지의 비로 정의된다. 효율은 입사되는 태양광 스펙트럼이나 세기, 그리고 전지의 온도에 영향을 받기도 하므로 태양전지의 변화효율은 정밀하게 조절된 조건에서 측정되어야 한다. 본 연구에서는 온도(200K-300K)와 Trap(트랩) 에너지(0.1eV~1.0eV) 파라미터의 값을 변화하면서 특성을 분석하였다. 그리고 이동도 모델에 따른 전류-전압 특성을 분석하였다. 분석결과에 따른 곡선 인자(Fill factor를) 비교하여 태양전지의 효율을 최적화 할 수 있는 모델을 제시할 것이다.

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Parameter Extraction of a Lithium-ion Battery for EV/PHEV by the use of MATLABⓇ/SimulinkⓇ (MATLABⓇ/SimulinkⓇ 기반 EV/PHEV용 리튬 이온 배터리 모델 파라미터 추출)

  • Kim, Hong-Seok;Hong, Seung-Gun;Jeon, Joon-Young;Choe, Gyu-Yeong;Lee, Byoung-Kuk
    • Proceedings of the KIPE Conference
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    • 2010.11a
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    • pp.351-353
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    • 2010
  • 본 논문에서는 쉽고 빠르게 정확한 리튬 이온 배터리 모델을 구현할 수 있는 방법을 제시하고 있으며, 구현된 모델을 MATLAB(R)/Simulink(R)환경에서 검증한다. 모델을 구현함에 있어서 절차를 간소화하기 위해 비선형 개방 전압은 배터리 충전 및 방전 전압의 평균으로 근사하고, 배터리 내부 비선형 파라미터는 방전 초기에 발생하는 과도응답을 측정한 이산 데이터를 곡선 접합하여 구한다. 구현된 모델을 이용하여 시뮬레이션을 하고 이를 실험 데이터와 비교해본 결과, 평균 절대오차는 기존 연구보다 0.1% 낮은 0.091%로 측정되었다. 측정된 오차의 수준은 본 논문에서 제안한 방법이 파라미터 추출에 필요한 시간을 단축하고 시뮬레이션 모델을 쉽게 구현 가능하게 함에도 불구하고 여전히 리튬 이온 배터리의 출력 특성을 정확하게 예측함을 보여준다.

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The dosimetric Properties of Electron Beam Using Lyon Intraoperative Device for Intraoperative Radiation Therapy (LID (Lyon Intraoperative Device) 이용한 수술중 방사선치료시 전자선의 선량분포 특성)

  • Kim Kye Jun;Park Kyung Ran;Lee Jong Young;Kim Hie Yeon;Sung Ki Jocn;Chu Sung Sil
    • Radiation Oncology Journal
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    • v.10 no.1
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    • pp.85-93
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    • 1992
  • We have studied the dosimetric properties of electron beam using Lyon intraoperative device for intraoperative radiation therapy. The dosimetry data had compiled in such a way that a quick and correct decision regarding the cone shape, energy, and accurate calculations could be made. Using 3 dimensional water phantom, we have got the following data: cone output ratios, surface dose, $d_{max}$, $d_{90}$, flatness, symmetry, beam profiles, isodose curve, and SSD correction factors. The cone output ratios were measured with straight and bevelled cone, respectively. As the cone size and the energy were reduced, the cone output ratios decreased rapidly. With the flattening filter, the surface dose increased by electron beam to $85.3\%$, $89.2\%$, and $93.4\%$, for 6 MeV, 9 MeV, and 12 MeV, respectively. It is important to increase the surface dose to $90\%$ or more. Inspite of diminishing dose rate and beam penetration, this flattening filter increases the treatment volume significantly. With the combination of the three levels collimation and the flattening filter, we achieved good homogeneity of the beam and better flatness and the diameter of the 90$\%$ isodose curve was increased. It is important to increase the area that is included in the $90\%$ isodose level. The value of measured and calculated SSD correction factors did not agree over the clinically important range from 100 cm to 110 cm.

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Feasibility Study on a Defrost Control Method by Using a Photoelectric Sensors (광센서를 이용한 제상제어 방법에 대한 타당성 검토)

  • Jeon, Chang-Duk;Kim, Dong-Seon;Lee, Seung-Jun
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.15 no.6
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    • pp.3389-3395
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    • 2014
  • Conventional methods, such as the clock time control method and temperature difference control method, for defrost control often encounter mal-defrost and a waste of energy. Therefore, a more efficient method is needed to control defrosting precisely. A photoelectric sensor unit consisting of an emitter and a collector was installed in the front of outdoor heat exchanger. Accurate defrost control was performed by monitoring and using the change in output voltage according to the presence of frost. In this study, experiments were performed to determine if the performance and characteristic curves obtained using the clock time control method can be reproduced using a photoelectric sensor under the heating and defrosting capacity test condition described at KS C 9306. The output voltage of the phototransistor (receiver) and heating capacity, power consumption, and surface temperature of the outdoor heat exchanger, were compared. The results showed that photoelectric sensors can be used as a defrost control method. On-off control timing of the clock time defrosting method was in good agreement with those predicted by the output voltage of the photoelectric sensor.

Evaluating Properties for Bi-layer PZT thin film Fabricated by RF-Magnetron Sputtering System (RF-마그네트론 스퍼터링법으로 제작한 이층형 PZT의 특성평가)

  • Lim, Sil-Mook
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.21 no.8
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    • pp.222-227
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    • 2020
  • Pb(Zr,Ti)O3(denoted as PZT) in the perovskite phase is used as a dielectric, piezoelectric, and super appetizer material owing to its ferroelectric properties. A PZT film was formed by an RF magnetron sputtering process by preparing a target composed of Pb1.3(Zr0.52Ti0.48)O3. The PZT film was formed by dividing the material into a mono-layer PZT produced continuously with the same sputtering power and a bi-layer PZT produced with two-stage sputtering power. The bi-layer PZT consisted of a lower layer produced under low-power sputtering conditions and an upper layer produced under the same conditions as the mono-layer PZT. XRD revealed small amounts of pyrochlore phase in the mono-layer PZT, but only the perovskite phase was detected in the bi-layer PZT. SEM and AFM revealed the upper part of the bi-layer PZT to be more compact and smooth. Moreover, the bi-layered PZT showed superior symmetry polarization and a significantly reduced leakage current of less than 1×10-5 A/cm2. This phenomenon observed in bi-layer PZT was attributed to the induction of growth into a pure perovskite phase by suppressing the formation of a pyrochlore phase in the upper PZT layer where the densely formed lower PZT layer was produced sequentially.

Development of Model Linking Pilot System (WaterRing) for IWRM (통합수자원 모델 연계 파일럿 시스템 (WaterRing) 개발)

  • Lee, Sung-Hack;Kim, Sung;Kang, Jae-Won;Lee, Mi-Yeon
    • Proceedings of the Korea Water Resources Association Conference
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    • 2007.05a
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    • pp.2024-2028
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    • 2007
  • 우리나라의 물관련 이슈는 수자원뿐만 아니라 사회, 경제 환경 등의 범위까지 확대되어 복합적이며, 기존 방법론과 기술만으로는 해결에 어려움이 있다. 따라서 새로운 기술적/방법론적 도구 개발의 필요성에 따라 통합수자원관리가 하나의 방법으로 받아들여지고 있다. 통합수자원관리는 지속가능한 수자원관리를 목표로하며, 물과 이와 관련 다양한 요소를 고려하는 통합적인 방법론이다. 그러므로 의사결정에 있어 전체론적인 접근이 필요하며, 세부적인 요소와 요소간의 연관관계를 파악하는 것이 중요하다. 이를 위하여 본 연구에서는 통합수자원관리의 기반 도구 중의 하나인 통합수자원관리 모델링 환경인 WaterRing 시범시스템을 개발하였다. WaterRing은 모델연계에 있어 필수적인 표준성, 사용편의성 및 모델공유를 제공하며, 모델코드 자체보다 모델의 개발에 많은 노력을 기울일 수 있도록 설계되었다. 따라서 수자원분야 및 다양한 분야의 모델을 연계할 수 있다. 모델의 연계를 위하여 기본모델단위를 설정하고 각각의 기본모델단위의 결합을 통하여 보다 큰 시스템으로 구성할 수 있도록 하였다. 기본모델단위는 입력/상태/출력의 세 가지 기본요소와 내부수행 루틴으로 구성되어 있다. 기본모델단위 사이의 결합을 정의하기 위하여 BPM(Business Process Management)(Arkin, 2002)와 STELLA의 모델 결합방식을 활용하였다. 기본모델단위는 독립적인 수행단위로 표준적인 입력과 출력을 수행한다. 따라서 입력과 출력의 속성이 같은 기본모델단위는 결합할 수 있다. 본 연구에서 시범적으로 개발된 수자원통합모델링환경 WaterRing은 통합수자원관리의 실현에 있어 평가, 계획에 이용될 수 있다. 그러므로 향후 시스템의 개발이 완료되면 우리나라의 통합수자원관리의 실현을 위한 기반도구로서 많은 역할이 기대된다. 홍수기에 측정된 성과를 바탕으로 고수위대의 수위-유량관계 곡선식을 개발하여야 할 것으로 판단된다. 본 연구를 통해 일부 확인된 바와 같이, 일반적인 자연하천이 아닌 감조하천의 경우는, 각각의 수위대별 유량 값의 변화가 발생하는 바 기간별 혹은 간조와 만조부를 포함하여 유량측정을 하여야 할 것으로 판단된다. 청폐화담탕(淸肺化痰湯)은 LPS로 유도된 macrophage에서 NO와 염증Cytokine 생성량을 억제하였고 murine macrophage에서 NF-${\kappa}$B 활성을 억제함으로써 iNOS와 염증Cytokine 유전자 발현을 하향조절 하였다. 이러한 청폐화담탕(淸肺化痰湯)의 항염작용으로 천식, 기관지염, 폐렴, 결핵, 산후감모 등의 호흡기 질환에 응용할 수 있으리라 사료된다.im}$5개월), 9.44${\pm}$1.05 6${\sim}$ll개월)으로 개월에 관계없이 전반적으로 유사한 비율을 나타내었다. 분획물(첨가농도 15.6 ${\mu}$g/ml)은 60%의 저해효과를 나타내면서 농도 의존적으로 그 저해효과가 컸으며 250 ${\mu}$g/ml 농도에서는 80%의 저해효과를 관찰 할 수가 있었다. 에틸아세테이트분회물의 경우 디글로로메탄 분회물에 비해 다소 낮은 저해효과를 나타내었지만 250 ${\mu}$g/ml 농도에서 약 60%의 세포독성 효과를 나타내었다. 디클로로메탄 분획물과 에틸아세테이트 분획물에 의한 면역 활성 증진 효과를 검토한 결과, 디글로로메탄 분획물은 첨가농도 1 ${\mu}$g/ml에서 94%로 Yac-1표적세포를 사멸시켰으며 에틸아세테이트 분획물도 동일 농도에서 96%의 억제효과를 나타내었다. CTLL세포를 이용

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Implementation on the Urine Analysis System using Color Correction and Chromaticity Coordinates Transform Methods (색 보정 및 색 좌표 변환 기법을 이용한 요분석 시스템의 구현)

  • 김기련;예수영;손정만;김철한;정도운;이승진;장용훈;전계록
    • Journal of Biomedical Engineering Research
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    • v.24 no.3
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    • pp.183-192
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    • 2003
  • A transformation methode of the chromaticity coordinates was proposed to calibrate the measured data obtained by a urine analysis system which implemented in our previous study. Generally. the reacted color of a reagent strip by urine analysis system often exhibit the color distortions due to nonlinear characteristics of the various devices that is the optic module mechanism. hardware, and surround circumstance. A color correction method for minimizing the color distortion play a few role in maintaining high accuracy and reproduction of the urine analysis system. In this work, we used the compensation method such as the shading correction, the characteristic curve extraction of RGB color by means of third order spline interpolation, and linear transformation using a reference color. In addition, 1931 CIE XYZ color space was used to compensate the color of the measured data by a standard reference system as colorimeter. A compensation matrix was obtained so that the output values of the urine analysis system is nearly equal to that of a standard reference system for identical color sample. Color correction obtained by a urine analysis system which implemented in our previous study exhibited a good color accuracy when it was compared with the reference data. Observed result from an experiments on ten items or a urinalysis strip that color difference or between two urine analysis system was 1.28.

A Study on Electron Dose Distribution of Cones for Intraoperative Radiation Therapy (수술중 전자선치료에 있어서 선량분포에 관한 연구)

  • Kang, Wee-Saing;Ha, Sung-Whan;Yun, Hyong-Geun
    • Progress in Medical Physics
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    • v.3 no.2
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    • pp.1-12
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    • 1992
  • For intraoperative radiation therapy using electron beams, a cone system to deliver a large dose to the tumor during surgical operation and to save the surrounding normal tissue should be developed and dosimetry for the cone system is necessary to find proper X-ray collimator setting as well as to get useful data for clinical use. We developed a docking type of a cone system consisting of two parts made of aluminum: holder and cone. The cones which range from 4cm to 9cm with 1cm step at 100cm SSD of photon beam are 28cm long circular tubular cylinders. The system has two 26cm long holders: one for the cones larger than or equal to 7cm diamter and another for the smaller ones than 7cm. On the side of the holder is an aperture for insertion of a lamp and mirror to observe treatment field. Depth dose curve. dose profile and output factor at dept of dose maximum. and dose distribution in water for each cone size were measured with a p-type silicone detector controlled by a linear scanner for several extra opening of X-ray collimators. For a combination of electron energy and cone size, the opening of the X-ray collimator was caused to the surface dose, depths of dose maximum and 80%, dose profile and output factor. The variation of the output factor was the most remarkable. The output factors of 9MeV electron, as an example, range from 0.637 to 1.549. The opening of X-ray collimators would cause the quantity of scattered electrons coming to the IORT cone system. which in turn would change the dose distribution as well as the output factor. Dosimetry for an IORT cone system is inevitable to minimize uncertainty in the clinical use.

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Design of a Bit-Serial Divider in GF(2$^{m}$ ) for Elliptic Curve Cryptosystem (타원곡선 암호시스템을 위한 GF(2$^{m}$ )상의 비트-시리얼 나눗셈기 설계)

  • 김창훈;홍춘표;김남식;권순학
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.27 no.12C
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    • pp.1288-1298
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    • 2002
  • To implement elliptic curve cryptosystem in GF(2$\^$m/) at high speed, a fast divider is required. Although bit-parallel architecture is well suited for high speed division operations, elliptic curve cryptosystem requires large m(at least 163) to support a sufficient security. In other words, since the bit-parallel architecture has an area complexity of 0(m$\^$m/), it is not suited for this application. In this paper, we propose a new serial-in serial-out systolic array for computing division operations in GF(2$\^$m/) using the standard basis representation. Based on a modified version of tile binary extended greatest common divisor algorithm, we obtain a new data dependence graph and design an efficient bit-serial systolic divider. The proposed divider has 0(m) time complexity and 0(m) area complexity. If input data come in continuously, the proposed divider can produce division results at a rate of one per m clock cycles, after an initial delay of 5m-2 cycles. Analysis shows that the proposed divider provides a significant reduction in both chip area and computational delay time compared to previously proposed systolic dividers with the same I/O format. Since the proposed divider can perform division operations at high speed with the reduced chip area, it is well suited for division circuit of elliptic curve cryptosystem. Furthermore, since the proposed architecture does not restrict the choice of irreducible polynomial, and has a unidirectional data flow and regularity, it provides a high flexibility and scalability with respect to the field size m.

Determining the Size of a Hankel Matrix in Subspace System Identification for Estimating the Stiffness Matrix and Flexural Rigidities of a Shear Building (전단빌딩의 강성행렬 및 부재의 강성추정을 위한 부분공간 시스템 확인기법에서의 행켈행렬의 크기 결정)

  • Park, Seung-Keun;Park, Hyun Woo
    • Journal of the Computational Structural Engineering Institute of Korea
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    • v.26 no.2
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    • pp.99-112
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    • 2013
  • This paper presents a subspace system identification for estimating the stiffness matrix and flexural rigidities of a shear building. System matrices are estimated by LQ decomposition and singular value decomposition from an input-output Hankel matrix. The estimated system matrices are converted into a real coordinate through similarity transformation, and the stiffness matrix is estimated from the system matrices. The accuracy and the stability of an estimated stiffness matrix depend on the size of the associated Hankel matrix. The estimation error curve of the stiffness matrix is obtained with respect to the size of a Hankel matrix using a prior finite element model of a shear building. The sizes of the Hankel matrix, which are consistent with a target accuracy level, are chosen through this curve. Among these candidate sizes of the Hankel matrix, more proper one can be determined considering the computational cost of subspace identification. The stiffness matrix and flexural rigidities are estimated using the Hankel matrix with the candidate sizes. The validity of the proposed method is demonstrated through the numerical example of a five-story shear building model with and without damage.