• Title/Summary/Keyword: rsh

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Development of a Low Cost VI-Tracer for PV System using LabVIEW and DSP (LabVIEW와 DSP를 이용한 초저가 범용 태양광 발전시스템 VI-Tracer 개발)

  • Kim, Sang-Yong;Park, Sang-Soo;Jang, Seong-Jae;Kim, Gyeong-Hun;Seo, Hyo-Ryong;Park, Min-Won;Yu, In-Keun
    • Proceedings of the KIEE Conference
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    • 2009.07a
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    • pp.1049_1050
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    • 2009
  • This paper deals with development of a low cost VI(Voltage-Currrent)-tracer for PV(Photovoltaic) system using LabVIEW and DSP(Digital Signal Processor). Although the conventional VI-tracer is a high cost equipment, it can‘t abstract the detailed parameters of solar cell. To overcome above mentioned disadvantages, in this paper, a converter type VI-tracer is developed. The DSP, which controls the buck-boost DC-DC converter, is used to implement the proposed VI-tracer algorithm. The proposed VI-tracer can abstract more detailed parameters of solar cell; A(temperature constant), Rs(series resistance), and Rsh(parallel resistance). The authors emphasize that the proposed VI-tracer can satisfy the users who need to get various parameters. A comparison between the proposed VI-tracer and the conventional VI-tracer is presented to show the effectiveness of the proposed system.

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A study on property of using $ALU^+$ for firing in crystalline silicon solar cell ($ALU^+$를 이용한 결정질 태양전지 소성에 따른 특성 연구)

  • Song, Kyuwan;Jang, Juyeon;Yi, Junsin
    • 한국신재생에너지학회:학술대회논문집
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    • 2011.05a
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    • pp.123.2-123.2
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    • 2011
  • $ALU^+$ 태양전지는 PN접합을 후면에서 즉, Al을 소성하여 형성시키기 때문에 얼마나 균일하고 두껍게 형성하는 것이 가장 중요하다. 소성(Firing)은 태양전지 제조 과정에서 후면의 접촉을 위한 중요한 공정이다. 본 연구에서는 상업화가 가능한 n-type $ALU^+$ Emitter 태양전지에서 소성 횟수에 따른 특성을 연구 하였다. $ALU^+$ emitter 형성의 최적화를 위해 소성온도를 가변하고, 최적화된 온도에서 소성 횟수에 따른 DIV 측정을 통해 셀을 분석 하였다. 소성 횟수는 1~3회로 하였고, 그 결과 단락전류 밀도(Jsc)가 33.57mA/$cm^2$로 처음보다 15.1%증가 하였고, 곡선인자(Fill Factor)는 3회에서 66.04%로 218%증가 하였다. Al을 짧은 시간 안에 소성을 시키므로 해서 후면의 $P^+$ Emitter가 균일하게 형성되었기 때문에 개방전압(Voc)의 증가를 확인하였다. 본 연구를 통해 $ALU^+$ 태양전지의 후면 Aluminium 소성 조건의 최적화를 통하여 $ALU^+$ emitter가 충분히 형성되지 못하면 누설전류가 발생되고 직렬저항(Rs)이 크게 증가하여 개방전압(Voc) 및 단락전류밀도(Jsc)의 감소가 발생하게 되고, 직렬저항(Rs)의 증가와 병렬저항(Rsh)의 감소는 Fill Factor의 급격한 감소를 초래하게 됨을 알 수 있다. 이를 개선하면 태양전지 효율을 상승시키는 결과를 얻을 수 있음을 확인하였다.

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The electrical effects of PV cell's short-circuit current difference for PV module application (태양전지의 단락전류 편차가 태양전지모듈에 미치는 전기적인 영향 분석)

  • Kim, Seung-Tae;Park, Chi-Hong;Kang, Gi-Hwan;Ahn, Hyung-Keun;Han, Deuk-Young;Yu, Gwon-Jong
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2008.06a
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    • pp.3-4
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    • 2008
  • Photovoltaic module consists of serially connected solar cell which has low voltage characteristics. But, the other way, the whole current flow of PV module is restricted by lowest current of one solar cell. For the experiment, we make PV module composing the solar cells that have short circuit current difference of 0%, 1%, 3% and 5%. Using Light I-V and Dark I-V measurements, electrical characteristic parameters like Isc(short-circuit current), Voc(open-circuit voltage), Rs(series resistance), Rsh(shunt resistance) are analyzed. PV module of low current characteristics has electrical stress from other modules. And, such a module has a tendency of hot-spot suffering which leads degradation.

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Extrusion-cooking Using Twin-screw Extruder on Cordyceps Pruinosa (이축 압출 성형기를 이용한 붉은자루 동충하초의 압출 성형)

  • Kim D. E.;Sung J. M.;Kang W. S.
    • Journal of Biosystems Engineering
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    • v.30 no.1 s.108
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    • pp.8-16
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    • 2005
  • The extrusion-cooking condition on Cordyceps pruinosa was designed using twin-screw extruder. Response surface methodology (RSM) was used to investigate extrusion-cooking using a central composition design with varying die temperature $(114-146^{\circ}C)$, feed moisture $(22-38\%)$, feed rate (4-14 ka/h) and screw speed (120-280 rpm). System parameters (die pressure and specific mechanical energy (SME)) and extrudate parameters (density and water solubility index (WSI)) were statically analyzed using RSH. Die pressure was significantly affected by temperature, moisture contents and feed rate. SM was affected by screw speed and feed rate. When die temperature is $130^{\circ}C$ and moisture content $25\%$, the optimum pressure is shown. SME is about 20 Wh/kg, when feed rate is $10\~12kg/min$ and screw speed $200\~250rpm$. WSI was affected by temperature and moisture contents. Density was not affected by any factor. WSI increases by $7\%$ from about $23\%$ to about $30\%$, as temperature is raised from $120^{\circ}C\;to\;140^{\circ}C$. The WSI of Cordyceps pruinosa pulverized after extruding (PE) is about $26.97\%$ higher than that of raw material and $10\%$ higher than that of pulverized after drying (PD). The content of unsaturated fatty acid were not significantly different in PD and PE. Anti-oxidative activity of PE was 1.67-2.2 times higher than that of PD in Cordyceps pruinosa using 1- dipheny1-2-picrylhydrazyl method (DPPH).

Organic photovoltaic cells using low sheet resistance of ITO for large-area applications

  • Kim, Do-Geun;Gang, Jae-Uk;Kim, Jong-Guk
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2009.11a
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    • pp.5.1-5.1
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    • 2009
  • Organic photovoltaic (OPV)cells have attracted considerable attention due to their potential for flexible, lightweight, and low-cost application of solar energy conversion. Since a 1% power conversion efficiency (PCE) OPV based on a single donor-acceptor heterojunction was reported by Tang, the PCE has steadily improved around 5%. It is well known that a high parallel (shunt)resistance and a low series resistance are required simultaneously to achieve ideal photovoltaic devices. The device should be free of leakage current through the device to maximize the parallel resistance. The series resistance is attributed to the ohmic loss in the whole device, which includes the bulk resistance and the contact resistance. The bulk resistance originated from the bulk resistance of the organic layer and the electrodes; the contact resistance comes from the interface between the electrodes and the active layer. Furthermore, it has been reported that the bulk resistance of the indium tin oxide (ITO) of the devices dominates the series resistance of OPVs for a large area more than $0.01\;cm^2$. Therefore, in practical application, the large area of ITO may significantly reduce the device performance. In this work, we investigated the effect of sheet resistance ($R_{sh}$) of deposited ITO on the performance of OPVs. It was found that the device performance of polythiophene-fullerene (P3HT:PCBM) bulk heterojunction OPVs was critically dependent on Rsh of the ITO electrode. With decreasing $R_{sh}$ of the ITO from 39 to $8.5\;{\Omega}/{\square}$, the fill factor (FF) of OPVs was dramatically improved from 0.407 to 0.580, resulting in improvement of PCE from $1.63{\pm}0.2$ to $2.5{\pm}0.1%$ underan AM1.5 simulated solar intensity of $100\;mW/cm^2$.

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Identification and Functional Analysis of RelA/SpoT Homolog (RSH) Genes in Deinococcus radiodurans

  • Wang, Jinhui;Tian, Ye;Zhou, Zhengfu;Zhang, Liwen;Zhang, Wei;Lin, Min;Chen, Ming
    • Journal of Microbiology and Biotechnology
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    • v.26 no.12
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    • pp.2106-2115
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    • 2016
  • To identify the global effects of (p)ppGpp in the gram-positive bacterium Deinococcus radiodurans, which exhibits remarkable resistance to radiation and other stresses, RelA/SpoT homolog (RSHs) mutants were constructed by direct deletion mutagenesis. The results showed that RelA has both synthesis and hydrolysis domains of (p)ppGpp, whereas RelQ only synthesizes (p)ppGpp in D. radiodurans. The growth assay for mutants and complementation analysis revealed that deletion of relA and relQ sensitized the cells to $H_2O_2$, heat shock, and amino acid limitation. Comparative proteomic analysis revealed that the bifunctional RelA is involved in DNA repair, molecular chaperone functions, transcription, the tricarboxylic acid cycle, and metabolism, suggesting that relA maintains the cellular (p)ppGpp levels and plays a crucial role in oxidative resistance in D. radiodurans. The D. radiodurans relA and relQ genes are responsible for (p)ppGpp synthesis/hydrolysis and (p)ppGpp hydrolysis, respectively. (p)ppGpp integrates a general stress response with a targeted re-programming of gene regulation to allow bacteria to respond appropriately towards heat shock, oxidative stress, and starvation. This is the first identification of RelA and RelQ involvement in response to oxidative, heat shock, and starvation stresses in D. radiodurans, which further elucidates the remarkable resistance of this bacterium to stresses.

Effect of Rhei Rhizoma and Scutellariae Radix Mixture in Chronic Acid Reflux Esophagitis Rats (만성 역류성 식도염에서 황련과 오수유 혼합물이 식도 점막에 미치는 영향)

  • Lee, Jin A;Oh, Min Hyuck;Shin, Mi-Rae;Roh, Seong-Soo;Park, Hae-Jin
    • Korean Journal of Pharmacognosy
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    • v.52 no.3
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    • pp.177-185
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    • 2021
  • Gastroesophageal reflux disease (GERD) is a gastrointestinal disorder in which stomach contents reflux into the esophagus, causing complications such as mucosal damage. The purpose of this study was to determine the effect of Rhei Rhizoma and Scutellariae Radix mixture (RS) in chronic acid reflux esophagitis (CARE), one of the GERD. After inducing reflux esophagitis through surgery, the group was separated and the drug was administered for 2 weeks; Normal rats (Normal, n=8), chronic acid reflux esophagitis rats (Control, n=8), tocopherol 30 mg/kg-treated chronic acid reflux esophagitis rats (Toco, n=8), Rhei Rhizoma and Scutellariae Radix mixture 100 mg/kg-treated chronic acid reflux esophagitis rats (RSL, n=8), Rhei Rhizoma and Scutellariae Radix mixture 200 mg/kg-treated chronic acid reflux esophagitis rats (RSH, n=8). Gross lesion of esophageal mucosa after RS treatment showed a superior enhancement compared with that of Control group. Additionally, RS significantly decreased the levels of MPO and MDA, effectively inhibited NADPH oxidase, and regulated the expression of the AMPK/LKB1/NF-κB pathway. Moreover, it significantly increased the expression of tight junction proteins. Taken together, RS not only alleviates inflammation of the esophageal mucosa via the AMPK/LKB1/NF-κB pathway by reducing oxidative stress, but also improves esophageal function by modulating tight junction proteins.