• 제목/요약/키워드: potential-induced degradation

검색결과 216건 처리시간 0.025초

Oxygen Potential Gradient Induced Degradation of Oxides

  • Martin, Manfred
    • 한국세라믹학회지
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    • 제49권1호
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    • pp.29-36
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    • 2012
  • In many applications of functional oxides originally homogeneous materials are exposed to gradients in the chemical potential of oxygen. Prominent examples are solid oxide fuel cells (SOFCs) or oxygen permeation membranes (OPMs). Other thermodynamic potential gradients are gradients of electrical potential, temperature or uni-axial pressure. The applied gradients act as generalized thermodynamic forces and induce directed fluxes of the mobile components. These fluxes may lead to three basic degradation phenomena of the materials, which are kinetic demixing, kinetic decomposition, and morphological instabilities.

결정질 실리콘 태양전지 모듈의 Potential Induced Degradation(PID) 현상 (Potential Induced Degradation(PID) of Crystalline Silicon Solar Modules)

  • 배수현;오원욱;김수민;김영도;박성은;강윤묵;이해석;김동환
    • 한국재료학회지
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    • 제24권6호
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    • pp.326-337
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    • 2014
  • The use of solar energy generation is steadily increasing, and photovoltaic modules are connected in series to generate higher voltage and power. However, solar panels are exposed to high-voltage stress (up to several hundreds of volts) between grounded module frames and the solar cells. Frequent high-voltage stress causes a power-drop in the modules, and this kind of degradation is called potential induced degradation (PID). Due to PID, a significant loss of power and performance has been reported in recent years. Many groups have suggested how to prevent or reduce PID, and have tried to determine the origin and mechanism of PID. Even so, the mechanism of PID is still unclear. This paper is focused on understanding the PID of crystalline-silicon solar cells and modules. A background for PID, as well as overviews of research on factors accelerating PID, mechanisms involving sodium ions, PID test methods, and possible solutions to the problem of PID, are covered in this paper.

결정질 실리콘 태양광 모듈의 Potential Induced Degradation 진단 분석

  • 오원욱;박노창;천성일
    • 한국태양광발전학회지
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    • 제4권2호
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    • pp.14-24
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    • 2018
  • The potential induced degradation (PID) phenomenon of crystalline silicon photovoltaic (PV) modules has been often found in outdoor PV systems until recently since firstly reported in 2010. Many studies have been conducted about the mechanism and the preventive methods, but systematic diagnosis of the PID has not been applied on-site. This paper focuses on analysis of 5 categories and 10 PID diagnosis methods using the monitoring data, light current-voltage, dark current-voltage, infrared and electroluminescence. We expect to contribute to improvement of power generation through PID diagnosis and troubleshooting in PV plants.

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반사방지막(ARC)의 SiO2 구조에 따른 PERC 태양전지 PID 열화 완화 상관관계 연구 (Mitigation of Potential-Induced Degradation (PID) for PERC Solar Cells Using SiO2 Structure of ARC Layer)

  • 오경석;박지원;천성일
    • Current Photovoltaic Research
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    • 제8권4호
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    • pp.114-119
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    • 2020
  • In this study, Mitigation of Potential-induced degradation (PID) for PERC solar cells using SiO2 Structure of ARC layer. The conventional PID test was conducted with a cell-level test based on the IEC-62804 test standard, but a copper PID test device was manufactured to increase the PID detection rate. The accelerated aging test was conducted by maintaining 96 hours with a potential difference of 1000 V at a temperature of 60℃. As a result, the PERC solar cell of SiO2-Free ARC structure decreased 22.11% compared to the initial efficiency, and the PERC solar cell of the Upper-SiO2 ARC structure decreased 30.78% of the initial efficiency and the PID reliability was not good. However, the PERC solar cell with the lower-SiO2 ARC structure reduced only 2.44%, effectively mitigating the degradation of PID. Na+ ions in the cover glass generate PID on the surface of the PERC solar cell. In order to prevent PID, the structure of SiNx and SiO2 thin films of the ARC layer is important. SiO2 thin film must be deposited on bottom of ARC layer and the surface of the PERC solar cell N-type emitter to prevent surface recombination and stacking fault defects of the PERC solar cell and mitigated PID degradation.

Electric-Field Induced Degradation of Ionic Solids

  • Chun, Ja-Kyu;Yoo, Han-Ill
    • 한국세라믹학회지
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    • 제49권1호
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    • pp.48-55
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    • 2012
  • Degradation of performance and life time of a functional material or device thereof is induced, to a great extent, by mass transfer in the material that is driven by various thermodynamic forces imposed intentionally or accidentally during its operation or service. The forces are any gradient of intensive thermodynamic variables, component chemical potentials, electrical potential, temperature, stresses, and the like. This paper reviews electric-field induced degradation phenomena in ionic solid compounds including insulation resistance degradation, crystal shift, microstructural alterations, compositional unmixing, and compound decomposition. Their inner workings are also discussed qualitatively.

PERC 태양전지에서 반사방지막과 p-n 접합 사이에 삽입된 SiOx 층의 두께가 Potential-Induced Degradation (PID) 저감에 미치는 영향 (Thickness Effect of SiOx Layer Inserted between Anti-Reflection Coating and p-n Junction on Potential-Induced Degradation (PID) of PERC Solar Cells)

  • 정동욱;오경석;장은진;천성일;유상우
    • 마이크로전자및패키징학회지
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    • 제26권3호
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    • pp.75-80
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    • 2019
  • 친환경 및 고효율의 장점 때문에 신재생 에너지원으로 널리 사용되고 있는 실리콘 태양 전지는 모듈을 직렬 연결하여 발전할 때 500-1,500 V의 전압이 걸리게 된다. 모듈 프레임과 태양 전지 사이에 걸린 이러한 고전압 차에 의해 장시간 가동시 효율 및 최대 출력이 감소하는 현상인 potential-induced degradation(PID)은 실리콘 태양 전지의 수명을 단축시키는 주요 원인 중 하나로 알려져 있다. 특별히 전면 유리의 $Na^+$ 이온이 고전압에 의해 반사방지막을 거쳐 실리콘 내부로 확산하여 실리콘 내부 적층 결함 등에 축적되는 것이 PID의 원인으로 보고되고 있다. 본 연구에서는 p-형 PERC(passivated emitter and rear contact) 구조 실리콘 태양전지를 대상으로 $Na^+$ 이온의 확산 장벽으로 작용할 수 있는 $SiO_x$층이 p-n 접합과 반사방지막 사이에 삽입되었을 때 그 두께가 PID 현상 완화에 미치는 영향을 연구하였다. 96 시간 동안 1,000 V의 전압을 연속적으로 가한 후 병렬 저항, 효율 및 최대 출력을 측정한 결과 삽입된 $SiO_x$ 장벽층의 두께가 7-8 nm 이상일 때 비로소 PID 현상이 효과적으로 완화되는 것으로 나타났다.

PV모듈 전.후면 재료별 PID에 의한 출력 변화

  • 김한별;정태희;강기환;장효식
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제45회 하계 정기학술대회 초록집
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    • pp.312.1-312.1
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    • 2013
  • PID (Potential Induced Degradation)는 높은 시스템 전압을 갖는 PV모듈에서 발생하는 현상으로 PV모듈의 출력을 급격하게 감소시키는 현상을 말한다. PV시스템의 높은 전압은 태양전지와 PV모듈의 프레임 사이에 전위차를 발생시키고 이로 인하여 누설전류가 흐르게 된다. 누설전류는 태양전지 표면에 전하를 축적 시켜 발전 효율을 감소시키게 된다. 이러한 누설전류는 온도와 습도가 높을수록 많이 발생하는 것으로 알려져 있다. 본 논문에서는 PV모듈을 구성하는 재료가 PID에 의한 출력변화에 어떠한 영향을 주는지에 관한 연구를 수행하였다. PID가 쉽게 발생하는 태양전지를 이용하여 일반적으로 PV모듈을 제작 할 때 사용되는 전 후면 재료를 이용하여 각각의 출력변화에 대한 연구를 수행하였다. PV모듈의 전 후면 재료를 각각 다르게 하여 이에 따른 PID 발생 정도를 출력 변화로 확인하였으며 PID의 원인이 되는 누설전류에 어떠한 변화를 주는지 분석하였다. PV모듈의 후면 재료는 PV모듈 내부로의 수분 침투와 관련하여 PID 발생에 영향을 주고 전면재료인 저철분 강화유리는 PV모듈 내부에 전하를 공급하여 누설전류가 발생하게 하는 역할을 하는 것으로 판단된다.

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Inhibitory Effect of Astragali Radix on Matrix Degradation in Human Articular Cartilage

  • CHOI SOOIM;PARK SO-RA;HEO TAE-RYEON
    • Journal of Microbiology and Biotechnology
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    • 제15권6호
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    • pp.1258-1266
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    • 2005
  • The present study was carried out in order to assess the protective effects of calycosin-7-O-$\beta$-D-glucopyranoside, isolated from Astragali radix (AR), on hyaluronidase (HAase) and the recombinant human interleukin-$1\beta$ (IL-$1\beta$)-induced matrix degradation in human articular cartilage and chondrocytes. We isolated the active component from the n-butanol soluble fraction of AR (ARBu) as the HAase inhibitor and structurally identified as calycosin-7-O-$\beta$-D-glucopyranoside by LC-MS, IR, ${1}^H$ NMR, and ${13}^C$ NMR analyses. The $IC_{50}$ of this component on HAase was found to be 3.7 mg/ml by in vitro agarose plate assay. The protective effect of ARBu on the matrix gene expression of immortalized chondrocyte cell line C28/I2 treated with HAase was investigated using a reverse transcription polymerase chain reaction (RT-PCR), and its effect on HAase and IL-$1\beta$-induced matrix degradation in human articular cartilage was determined by a staining method and calculating the amount of degraded glycosaminoglycan (GAG) from the cultured media. Pretreatment with calycosin-7-O-$\beta$-D-glucopyranoside effectively protected human chondrocytes and articular cartilage from matrix degradation. Therefore, calycosin-7-O-$\beta$-D-glucopyranoside from AR appears to be a potential natural ant-inflammatory or antii-osteoarthritis agent and can be effectively used to protect from proteoglycan (PG) degradation.

지백지황탕(知栢地黃湯)의 골관절염 Rat 모델에 대한 항산화, 항염증 효과 (Antioxidative, Anti-inflammatory Effects of Jibaekjihwang-tang (zhibaidihuang-tang) on Osteoarthritic Rat Model)

  • 우창윤;김영준;우창훈
    • 한방재활의학과학회지
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    • 제30권2호
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    • pp.1-18
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    • 2020
  • Objectives This study intended to evaluate antioxidative, anti-inflammatory effects of Jibaekjihwang-tang on monosodium iodoacetate (MIA)-induced osteoarthritic rat model and investigate the potential mechanism. Methods Jibaekjihwang-tang (100 or 200 mg/kg body weight) was orally administered once daily for 2 weeks days from day 7 after intra-articular MIA injection. And blood analysis, the histologic examinations were performed. Moreover, protein expressions related to anti-oxidant and cartilage degradation and anti-inflammatory cytokines were measured by western blot analysis in cartilaginous tissue. Results Jibaekjihwang-tang reduced serum inflammatory cytokines such as tumor necosis factors-α and interleukin-6. Furthermore, the increase of anti-oxidant enzymes reversed the oxidative stress caused by MIA. Meanwhile, Jibaekjihwang-tang suppressed MIA-induced inflammation and cartilage degradation in cartilaginous tissue. Conclusions Jibaekjihwang-tang alleviated MIA-induced inflammation. Jibaekjihwang-tang was associated with a protective effect on cartilage and by reducing inflammation and cartilage degradation. These findings provide new approaches for understanding osteoarthritis therapy.

PERC 태양전지 모듈의 출력저하 방지를 위한 모스아이(Moth-eye) 광학필름 연구 (A Study of Moth-eye Nano Structure Embedded Optical Film with Mitigated Output Power Loss in PERC Photovoltaic Modules)

  • 오경석;박지원;최진영;천성일
    • 마이크로전자및패키징학회지
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    • 제27권4호
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    • pp.55-60
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    • 2020
  • 태양광 발전소에 설치된PERC 태양광 모듈 스트링-어레이는 고전압의 전위차로 인해 여전히 potential-induced degradation(PID) 열화 현상이 여전히 보고되고 있다. 이는 태양전지 모듈 커버글라스의 Na+ 이온이 태양전지 봉지재(EVA)를 투과하여 셀 표면으로 전이되고 결함이 많이 분포되어 있는 ARC(SiOx/SiNx) 계면에 양전하가 축적됨으로써 shunt-Resistance(Rsh)가 감소되고 누설전류량이 증가되어 태양전지 출력이 저하되는 현상이다. 본 연구에서는 이를 방지하기 위해 나노임프린트 리소그래피(nano-imprint lithography, NIL) 방식을 이용하여 모스아이(Moth-eye) 나노 구조를 광학 필름 후면에 증착 하였고, 이를 커버글라스와 EVA 사이에 삽입하여 태양광 미니 모듈을 구성하였다. PID 열화 현상을 확인하기 위해 IEC 62804-1 규격에 기반한 셀 단위 PID 열화가속시험을 진행하였고, Light I-V, Dark I-V 분석을 통해 출력(Pmax), 효율(Efficiency), 병렬 저항(shunt resistance)을 확인하였다. 그 결과 기존의 태양전지는 초기 효율 19.76%에서 6.3% 감소하였으나 모스아이 나노 구조 광학 필름(Moth-eye film)이 적용된 태양전지는 0.6% 만 감소하여 PID 열화 현상이 방지되는 것을 확인하였고, 모스아이 나노구조를 통해 투과도가 4% 향상되어 미니 모듈 출력이 2.5% 향상되었다.