• 제목/요약/키워드: A Photovoltaic System

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BLDC 모터용 인버터를 이용한 PV 양수펌프의 MPPT 제어 (MPPT Control of PV Water Pumping Using BLDC Motor-Inverter)

  • 김성남;백승길;조정민;이승환;오봉환;이훈구;한경희
    • 전력전자학회논문지
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    • 제6권6호
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    • pp.498-505
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    • 2001
  • 본 논문은 PV어레이를 이용한 양수펌프 시스템의 전체적인 제어를 구상하는 제시하였으며, DC/DC 컨버터를 생략하기 위하여 BLDC 모터의 벡터제어를 이용하고 DC량과 AC량과 관계를 찾아내어 인버터만으로 PV 어레이의 최대출력점을 추적하였다. 기존의 최대출력점 제어기는 3상 인버터의 DC 링크단에 나타나는 전류리플로 인하여 제어기가 불안정하게 된다. 따라서 본 연구에서는 제어기의 불안정성을 보완하기 위해 BLDC 모터의 $i_qs$ 전류를 이용한 MPPT(Maximum Power Point Tacker) 제어 알고리즘을 구성하였다. 이러한 제어기의 우수함을 입증하기 위하여 J. A Domfnguez가 비동기모터에 적용한 제어방식을 BLDC 모터에 적용한 결과와 본 논문에서 제시한 제어방식을 시뮬레이션 및 실험을 통하여 비교 검토하고 하였다.

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결정질 실리콘 태양전지의 저가 고 효율화를 위한 Ni/Cu/Ag 전극 태양전지 (The Research of Ni/Cu/Ag Contact Solar Cells for Low Cost & High Efficiency in Crystalline Solar Cells)

  • 조경연;이지훈;이수홍
    • 한국태양에너지학회:학술대회논문집
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    • 한국태양에너지학회 2009년도 춘계학술발표대회 논문집
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    • pp.214-219
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    • 2009
  • In high-efficiency crystalline silicon solar cells, If high-efficiency solar cells are to be commercialized. It is need to develop superior contact formation method and material that can be inexpensive and simple without degradation of the solar cells ability. For reason of plated metallic contact is not only high metallic purity but also inexpensive manufacture. It is available to apply mass production. Especially, Nickel, Copper and Silver are applied widely in various electronic manufactures as easily formation is available by plating. The metallic contact system of silicon solar cell must have several properties, such as low contact resistance, easy application and good adhesion. Ni is shown to be a suitable barrier to Cu diffusion as well as desirable contact metal to silicon. Nickel monosilicide(NiSi) has been suggested as a suitable silicide due to its lower resistivity, lower sintering temperature and lower layer stress than $TiSi_2$. Copper and Silver can be plated by electro & light-induced plating method. Light-induced plating makes use the photovoltaic effect of solar cell to deposite the metal on the front contact. The cell is immersed into the electrolytic plating bath and irradiated at the front side by light source, which leads to a current density in the front side grid. Electroless plated Ni/ Electro&light-induced plated Cu/ Light-induced plated Ag contact solar cells result in an energy conversion efficiency of 14.68 % on $0.2{\sim}0.6{\Omega}{\cdot}cm,\;20{\times}20mm^2$, CZ(Czochralski) wafer.

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3상 계통연계형 태양광 PCS의 단독운전검출을 위한 개선된 무효전력변동기법 (Improved RPV(reactive-power-variation) anti-islanding method for grid-connected three-phase PVPCS)

  • 이기옥;정영석;소정훈;유병규;유권종;최주엽;최익
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2006년도 제37회 하계학술대회 논문집 B
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    • pp.1159-1160
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    • 2006
  • As the grid-connected photovoltaic power conditioning systems (PVPCS) are installed in many residential areas, this has raised potential problems of network protection on electrical power system. One of the numerous problems is an Island phenomenon. There has been an argument that because the probability of islanding is extremely low it may be a non-issue in practice. However, there are three counter-arguments: First, the low probability of islanding is based on the assumption of 100% power matching between the PVPCS and the islanded local loads. In fact, an island can be easily formed even without 100% power matching (the power mismatch could be up to 30% if only traditional protections are used, e.g. under/over voltage/frequency). The 30% power-mismatch condition will drastically increase the islanding probability. Second, even with a larger power mismatch, the time for voltage or frequency to deviate sufficient to cause a trip, plus the time required to execute the trip (particularly if conventional switchgear is required to operate), can easily be greater than the typical re-close time on the distribution circuit. And, third, the low-probability argument is based on the study of PVPCS. Especially, if the output power of PVPCS equals to power consumption of local loads, it is very difficult for the PVPCS to sustain the voltage and frequency in an island. Unintentional islanding of PVPCS may result in power-quality issues, interference to grid-protection devices, equipment damage, and even personnel safety hazards. So the verification of anti-islanding performance is strongly needed. In this paper, the authors propose the improved RPV method through considering power quality and anti-islanding capacity of grid-connected three-phase PVPCS in IEEE Std 1547 ("Standard for Interconnecting Distributed Resources to Electric Power Systems"). And the simulation and experimental results are verified.

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인터리브드 부스트 컨버터에 대한 일반화된 출력 커패시터 리플전류 수식에 관한 연구 (A Study on Generalized Output Capacitor Ripple Current Equation of Interleaved Boost Converter)

  • 정용채
    • 한국전자통신학회논문지
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    • 제7권6호
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    • pp.1429-1435
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    • 2012
  • 태양광 시스템이나 연료전지 시스템 그리고 전기자동차에 많이 사용되는 DC-DC 컨버터는 부스트 컨버터이다. 이러한 부스트 컨버터를 병렬로 연결하고 위상차를 두고 동작하여 입출력 전류리플을 줄이는 인터리브드 부스트 컨버터가 최근에 많이 사용되고 있다. 이 회로는 입출력 전류 리플이 작기 때문에 입출력 커패시터의 크기를 줄일 수 있다. 따라서 기존의 전해 커패시터를 신뢰성이 우수한 필름 커패시터로 교체할 수 있고 이는 전체 시스템의 수명 및 신뢰성을 향상시킬 수 있다. 본 논문에서는 다단 인터리브드 부스트 컨버터에 사용되는 출력 커패시터의 전류리플 수식을 유도하고 듀티에 따른 특성을 알아본다. 이를 확인하기 위해서 PSIM 툴을 이용하여 계산된 값과 비교를 할 것이다.

다단 인터리브드 부스트 컨버터의 입력리플전류 수식 분석 (Input Ripple Current Formula Analysis of Multi-Stage Interleaved Boost Converter)

  • 정용채
    • 한국전자통신학회논문지
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    • 제6권6호
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    • pp.865-871
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    • 2011
  • 태양광 시스템이나 연료전지 시스템에 많이 사용되는 DC-DC 컨버터는 부스트 컨버터이다. 이 중 입출력 전류 리플이 작은 인터리브드 부스트 컨버터가 최근에 많이 사용되고 있다. 이 회로는 입출력 전류 리플이 작기 때문에 입출력 커패시터의 크기를 줄일 수 있다. 따라서 기존의 전해 커패시터에서 신뢰성이 우수한 필름 커패시터를 사용할 수 있고 이는 전체 시스템의 수명 및 신뢰성을 향상시킬 수 있다. 본 논문에서는 다단 인터리브드 부스트 컨버터의 입출력 전류리플의 수식을 유도하고 듀티에 따른 특성을 알아본다. 위에서 언급한 내용을 확인하기 위해서 PSIM 툴을 이용하여 계산된 값과 비교를 할 것이다.

실리콘 용탕으로부터 직접 제조된 태양광용 다결정 실리콘의 SiC 오염 연구 (SiC Contaminations in Polycrystalline-Silicon Wafer Directly Grown from Si Melt for Photovoltaic Applications)

  • 이예능;장보윤;이진석;김준수;안영수;윤우영
    • 한국주조공학회지
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    • 제33권2호
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    • pp.69-74
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    • 2013
  • Silicon (Si) wafer was grown by using direct growth from Si melt and contaminations of wafer during the process were investigated. In our process, BN was coated inside of all graphite parts including crucible in system to prevent carbon contamination. In addition, coated BN layer enhance the wettability, which ensures the favorable shape of grown wafer by proper flow of Si melt in casting mold. As a result, polycrystalline silicon wafer with dimension of $156{\times}156$ mm and thickness of $300{\pm}20$ um was successively obtained. There were, however, severe contaminations such as BN and SiC on surface of the as-grown wafer. While BN powders were easily removed by brushing surface, SiC could not be eliminated. As a result of BN analysis, C source for SiC was from binder contained in BN slurry. Therefore, to eliminate those C sources, additional flushing process was carried out before Si was melted. By adding 3-times flushing processes, SiC was not detected on the surface of as-grown Si wafer. Polycrystalline Si wafer directly grown from Si melt in this study can be applied for the cost-effective Si solar cells.

염료감응형 태양전지의 광전극 적용을 위한 $TiO_2$ nanoparticle 특성 분석 (Study on $TiO_2$ nanoparticle for Photoelectrode in Dye-sensitized Solar Cell)

  • 조슬기;이경주;송상우;박재호;문병무
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2011년도 추계학술대회 초록집
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    • pp.57.2-57.2
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    • 2011
  • Dye-sensitized solar cells (DSSC) have recently been developed as a cost-effective photovoltaic system due to their low-cost materials and facile processing. The production of DSSC involves chemical and thermal processes but no vacuum is involved. Therefore, DSSC can be fabricated without using expensive equipment. The use of dyes and nanocrystalline $TiO_2$ is one of the most promising approaches to realize both high performance and low cost. The efficiency of the DSSC changes consequently in the particle size, morphology, crystallization and surface state of the $TiO_2$. Nanocrystalline $TiO_2$ materials have been widely used as a photo catalyst and an electron collector in DSSC. Front electrode in DSSC are required to have an extremely high porosity and surface area such that the dyes can be sufficiently adsorbed and be electronically interconnected, resulting in the efficient generation of photocurrent within cells. In this study, DSSC were fabricated by an screen printing for the $TiO_2$ thin film. $TiO_2$ nanoparticles characterized by X-ray diffractometer (XRD) and scanning electron microscope (SEM) and scanning auger microscopy (SAM) and zeta potential and electrochemical impedance spectroscopy(EIS).In addition, DSSC module was modeled and simulated using the SILVACO TCAD software program. Improve the efficiency of DSSC, the effect of $TiO_2$ thin film thickness and $TiO_2$ nanoparticle size was investigated by SILVACO TCAD software program.

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CPV모듈의 2차 광학계 특성에 따른 성능분석 (Performance Analysis of CPV Modules for Optimizing Secondary Optical Elements)

  • 박점주;정병호;박주훈;이강연;김효진
    • 한국태양에너지학회 논문집
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    • 제40권5호
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    • pp.23-34
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    • 2020
  • Concentrator photovoltaic (CPV) system consists of high-quality complex optical elements, mechanical devices, and electronics components and can have the advantages of high integration and high-efficiency energy sources. III-V compound semiconductor cells have proven performance based on high reliability in the aerospace field, but have characteristics that require absolute support of the balance of systems (BOS) such as solar position trackers, receivers with heat sinks, and housing instruments. To determine the optimum parameters of secondary optical elements (SOEs) design for CPV systems, we designed three types of CPV modules, classified as non-SOEs type, reflective mirror type, and CPC lens type. We measured the I-V and P-V characteristics of the prototype CPV modules with the angle of inclination varying from 0° to 12° and with a 500-magnification Fresnel lens. The experimental results assumed misalignment of the solar position tracker or module design of pinpoint accuracy. As a result, at the 0° tilt angle, the CPC lens produced lower power due to the quartz transmittance ratio compared to that by other SOEs. However, for tilt angles greater than 3°, the CPC lens type module achieved high efficiency and stability. This study is expected to help design high-performance CPV systems.

부분공정 태양전지를 이용한 결정질 태양전지의 강도 특성에 관한 연구 (Determination of the Strength Characteristics of c-Si Solar Cells using Partially Processed Solar Cells)

  • 최수열;임종록
    • 한국태양에너지학회 논문집
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    • 제40권5호
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    • pp.35-45
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    • 2020
  • Photovoltaic (PV) power system prices have been steadily dropping in recent years due to their mass production and advances in relevant technology. Crystalline silicon (c-Si wafers) account for the largest share of the price of solar cells; reducing the thickness of these wafers is an essential part of increasing the price competitiveness of PV power systems. However, reducing the thickness of c-Si wafers is challenging; typically, phenomena such as bowing and cracking are encountered. While several approaches to address the bowing phenomenon of the c-Si solar cells exist, the only method to study the crack phenomenon (related to the strength of the c-Si solar cells) is the bending test method. Moreover, studies on determining the strength properties of the solar cells have focused largely on c-Si wafers, while those on the strength properties of front and rear-side electrodes and SiNx, the other components of c-Si solar cells, are scarce. In this study, we analyzed the strength characteristics of each layer of c-Si solar cells. The strength characteristics of the sawing mark direction produced during the production of c-Si wafers were also tested. Experiments were conducted using a 4bending tester for a specially manufactured c-Si solar cell. The results indicate that the back side electrode is the main component that experienced bowing, while the front electrode was the primary component regulating the strength of the c-Si solar cell.

태양전지 모듈의 설치방향에 따른 오염특성 분석 (Analysis of Soiling for the Installation Direction of PV Module)

  • 이충근;신우균;임종록;주영철;황혜미;고석환;장효식;강기환
    • 신재생에너지
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    • 제16권4호
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    • pp.76-82
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    • 2020
  • Soiling on the surface of a PV module reduces the amount of light reaching the solar cells, decreasing power performance. The performance of the PV module is generally restored after contaminants on the module surface are washed away by rain, but it accumulates at the bottom of the module owing to the thickness of the module frame, causing an output mismatch on the PV module. Since PV modules are usually installed horizontally or vertically outdoors, soiling can occur at the bottom of the PV module, depending on the installation direction due to external environmental factors. This paper is analyzed the output characteristics of a PV module considering its installation direction and the soiling area. The soiling was simulated to use transparent films with 5% transmittance, and the transmission film was attached to the bottom part of the PV module horizontally and vertically. When the soiling area was 33% of the string at the bottom of the PV module, the power output decreased similarly regardless of installation direction. However, when the soiling area was 66% of the string at the bottom of the PV module, it was confirmed that the output performance decreased sharply when installed vertically rather than horizontally.