• 제목/요약/키워드: Artificial solar

검색결과 198건 처리시간 0.034초

자연광 다층 작물재배를 위한 광선반 시스템에 관한 연구 (Exploration of a Light Shelf System for Multi-Layered Vegetable Cultivation)

  • 장성택;장성주
    • KIEAE Journal
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    • 제13권2호
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    • pp.61-66
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    • 2013
  • This study is to eliminate the need for conventional high density plant factory's artificial light source such as LED to reduce the initial investment of the light source installation as well as the operation cost. Use of solar light could enhance the quality of the vegetables similar to those grown in the natural environment. Provision of solar light into the multilayer vegetable cultivation facilities and collecting maximum and sustainable sunlight without too much loss by tracing solar path and properly distributing it through careful control during daytime are crucial for realizing the investigated rooftop light shelf system for multi-layered vegetable cultivation. In this study, we developed an innovative way of effectively allocating sunlight inside even to otherwise shaded zone of a multi-layer vegetable cultivation facility. To prove the effectiveness of the system's sunlight collection and distribution capability, both simulation and experiment in Daejeon are performed and the outcome is analyzed.

태양광 에너지 예측을 위한 SVM 및 ANN 모델의 성능 비교 (Performance comparison of SVM and ANN models for solar energy prediction)

  • 정원석;정영화;박문규;이창교;서정욱
    • 한국정보통신학회:학술대회논문집
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    • 한국정보통신학회 2018년도 추계학술대회
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    • pp.626-628
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    • 2018
  • 본 논문에서 기상 데이터를 사용하여 태양광 에너지를 예측하기 위해 기계학습 모델인 SVM(Support Vector Machine)과 ANN(Artificial Neural Network)의 성능을 비교한다. 장 단파 복사선 평균, 강수량, 온도 등 15가지 종류의 기상 데이터를 사용하여 두 모델을 생성하고, 실험을 통해 최적의 SVM의 RBF(Radial Basis Function) 파라미터와 ANN의 은닉층과 노드 개수, 정규화 파라미터를 도출하였다. SVM과 ANN 모델의 성능을 비교하기 위한 지표로서 MAPE(Mean Absolute Percentage Error)와 MAE(Mean Absolute Error)를 사용하였다. 실험 결과 SVM 모델은 MAPE=21.11, MAE=2281417.65의 성능을 달성하였고 ANN은 MAPE=19.54, MAE=2155345.10776의 성능을 달성하였다.

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이산화탄소 변환 과정이 포함된 인공 광합성 시스템 (Artificial Photosynthesis System Containing CO2 Conversion Process)

  • 김기범
    • 한국산학기술학회논문지
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    • 제19권1호
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    • pp.63-68
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    • 2018
  • 본 논문은 이산화탄소 고정 과정이 포함된 인공 광합성 과정을 모사하기 위하여 지구상에 흔히 존재하는 촉매 재료를 이용해 개발한 광화학 반응 시스템(인공나뭇잎)과 시스템 에너지 포집 및 변환 능력에 대한 성능을 조사하기 위한 기초 연구 결과를 제시한다. 본 연구에서 개발한 시스템은 태양광 전지의 전면부에 산화코발트를 도핑 하여 물의 전기분해로 인한 산소 발생이 태양전지 표면에서 직접 발생하도록 하였고, 후면 기판 표면에는 이산화탄소 변환 반응을 위한 효율적인 촉매로 $MoS_2$를 도핑 하여, 전선이 없는 구조로 구성하였다. 직접 태양광 연료 변환 시스템은 약4.5%로 이산화탄소를 일산화탄소와 수소로 변환하여 지속 가능한 연료(합성가스)의 형태로 생산하며, 이는 음극에서 촉매 변환 효율이 75%이상이 될 수 있음을 의미한다. 본 연구는 물의 광분해뿐만 아니라 태양광에 의해 유도된 이산화탄소 전환 과정을 하나의 시스템에서 동시에 실현하여 자연적 광합성 과정을 좀 더 성공적으로 모사할 수 있는 시스템 개발에 기여하였다.

공동주택 단지 내 지반 특성 및 지반 구성에 따른 열적 특성에 관한 연구 (The Effect of the Ground Composition on Thermal Environment in Multi -residential Building Block)

  • 황효근;송두삼
    • 한국태양에너지학회 논문집
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    • 제29권5호
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    • pp.88-97
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    • 2009
  • In these days, it attracts our attention to create a green outdoor environment around the building block in urban area. Green space and permeable ground covering are increased by laws and regulations. According to these trends, variety researches for improving outdoor environment are accomplished at this moment. However, the problems for outdoor environment such as heat island effect and air contaminant in urban area are still reported. The purpose of this study is to examine the variables to affect the formation of outdoor thermal environment by quantitative analysis. As a initial study, in this paper, the effect of ground composition on changes of surface temperature and heat flux in multi-residential building were analyzed by field measurement and numerical simulation. Through field measurement, the surface temperature and heat flux of artificial ground in multi-residential building in Suwon city were measured. The result showed that the surface temperature was decreased by about $20^{\circ}C$ with afforestation of artificial ground compared with those of concrete covering. Moreover, the inner temperature of artificial ground was changed as same behaviors of outdoor temperature changes to depths of 20cm. In simulation, the effect of soil types and depth of artificial ground on the changes of the surface temperature and heat flux were analyzed. As results, the natural soil ground was more effective against lowering the surface temperature than any other cases in the analyzed cases.

폐쇄형 식물생산 시스템에서 태양광 채광시스템 연구 (Evaluating Solar Light Collectors for Use in Closed Plant Production Systems)

  • 이상규;이재수;이현동;백정현;노시영;홍영신;박종원
    • 한국환경과학회지
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    • 제28권5호
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    • pp.521-526
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    • 2019
  • In this study, a solar light collector that collects and transmits solar light required for crop production in a closed plant production system was developed. The solar light collector consisted of a Fresnel lens for collecting solar light, and a tracking actuator for tracking solar light from sunrise to sunset to increase the light collection efficiency. The optical fiber that transmitted solar light was made of Glass Optical Fiber (GOF), and it had an excellent optical transmission rate. After collecting the solar light, the amount of light was measured at 5, 10, 15, 20, 25, and 30 cm distances from the GOF through the darkroom by using a light sensor logger connected to a quantum and pyranometer sensor. Compared with solar light, the light intensity of pyranometer sensor measured at 5 cm was 114% higher than solar light, and 61% at 10 cm. In addition, it was observed that it is possible to transmit the necessary amount of light for growing crops up to about 15 cm (as over 22%) through GOF. Therefore, adding diffusers to the solar light collector should be expected to replace artificial light in plant factories or plug seedlings nurseries for leafy vegetables. More studies on the solar light collection devices and the light transmission devices that have high light collection efficiency should be conducted.

Determination of 2D solar wind speed maps from LASCO C3 observations using Fourier motion filter

  • Cho, Il-Hyun;Moon, Yong-Jae;Lee, Jin-Yi;Nakariakov, Valery;Cho, Kyung-Suk
    • 천문학회보
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    • 제42권2호
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    • pp.68-68
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    • 2017
  • Measurements of solar wind speed near the Sun (< 0.1 AU) are important for understanding acceleration mechanism of solar wind as well as space weather predictions, but hard to directly measure them. For the first time, we provide 2D solar wind speed maps in the LASCO field of view using three consecutive days data. By applying the Fourier convolution and inverse Fourier transform, we decompose the 3D intensity data (r, PA, t) into the 4D one (r, PA, t, v). Then, we take the weighted mean along speed to determine the solar wind speeds that gives V(r, PA, t) in every 30 min. The estimated radial speeds are consistent with those given by an artificial flow and plasma blobs. We find that the estimated speeds are moderately correlated with those from slow CMEs and those from IPS observations. A comparison of yearly solar wind speed maps in 2000 and 2009 shows that they have very remarkable differences: azimuthally uniform distribution in 2000 and bi-modal distribution (high speed near the poles and low speed near the equator) in 2009.

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태양복사열에 따른 지표면 온도와 열, 기류 환경 시뮬레이션 연구 (CFD Simulations of the Ground Surface Temperature and Air Temperature, Air flow Coupled with Solar Radiation)

  • 이주희;김재권;윤재옥
    • KIEAE Journal
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    • 제14권3호
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    • pp.65-70
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    • 2014
  • The thermal environment in a small city rapidly deteriorates due to the urbanization and overpopulation. It is important to understand and predict the thermal environment in a city area. The thermal environment is highly affected by the solar radiation and temperature distributions changing over time periodically. To predict the thermal environment precisely, the solar radiation calculation including radiation strength, incidence angle, and thermal radiation between building surface and ground should be considered. In this study, the computational domain includes various artificial structures such as building, ground, asphalt, brick and grass. To consider the solar radiation, the unsteady state numerical calculation is performed from sun rise to mid-day (2:00pm). The numerical methods consist of solar load and one dimensional heat conduction through the boundaries to reduce the computational load and improve the flexibility of the calculation.

RNN을 이용한 태양광 에너지 생산 예측 (Solar Energy Prediction using Environmental Data via Recurrent Neural Network)

  • 리아크 무사다르;변영철;이상준
    • 한국정보처리학회:학술대회논문집
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    • 한국정보처리학회 2019년도 추계학술발표대회
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    • pp.1023-1025
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    • 2019
  • Coal and Natural gas are two biggest contributors to a generation of energy throughout the world. Most of these resources create environmental pollution while making energy affecting the natural habitat. Many approaches have been proposed as alternatives to these sources. One of the leading alternatives is Solar Energy which is usually harnessed using solar farms. In artificial intelligence, the most researched area in recent times is machine learning. With machine learning, many tasks which were previously thought to be only humanly doable are done by machine. Neural networks have two major subtypes i.e. Convolutional neural networks (CNN) which are used primarily for classification and Recurrent neural networks which are utilized for time-series predictions. In this paper, we predict energy generated by solar fields and optimal angles for solar panels in these farms for the upcoming seven days using environmental and historical data. We experiment with multiple configurations of RNN using Vanilla and LSTM (Long Short-Term Memory) RNN. We are able to achieve RSME of 0.20739 using LSTMs.

A Comprehensive Study of Interaction of Magnetic Flux Ropes Leading to Solar Eruption

  • 이시백;최광선;전홍달;김갑성
    • 천문학회보
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    • 제44권1호
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    • pp.54.1-54.1
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    • 2019
  • Solar observations often show that interaction of more than one flux rope is involved in solar eruptions. In this regard, Lau and Finn (1996) intensively studied the interaction of two flux ropes, which reside in between two parallel planes each mimicking one polarity region of the solar photosphere. However, this geometry is quite far from the real solar situation, in which all feet of flux tubes are rooted in one surface only. In this paper, we study the interaction of two flux ropes in a semi-infinite region above a plane representing the solar photosphere. Four cases of the flux rope interaction are investigated in our MHD simulation study: (1) parallel axial fields and parallel axial currents (co-helicity), (2) antiparallel axial fields and parallel axial currents (counter-helicity), (3) parallel axial fields and antiparallel axial currents (counter-helicity), and (4) antiparallel axial fields and antiparallel axial currents (co-helicity). Each case consists of four or six subcases according to the background field direction relative to the flux ropes and the relative positions of the flux rope footpoints. In our simulations, all the cases eventually show eruptive behaviors, but their degree of explosiveness and field topological evolutions are quite different. We construct artificial emission measure maps based on the simulations and compare them with images of CME observations, which provides us with information on what field configurations may generate certain eruption features.

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폐쇄형 식물공장내 태양광 파이버를 이용한 상추 재배효과 (Effects of Lettuce Cultivation Using Optical Fiber in Closed Plant Factory)

  • 이상규;이재수;원진호
    • 생물환경조절학회지
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    • 제29권2호
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    • pp.105-109
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    • 2020
  • 본 연구는 태양광 기반으로 인공광 병렬 광공급 시스템을 개발하고 상추 재배효과를 구명하기 위하여 수행하였다. 태양광 기반으로 인공광원을 공급하는 장치는 광원 공급부, 전원공급부, 시스템 계측 및 제어부로 구성하였다. 광원공급부는 태양광 전송장치(광파이버)와 LED 램프(인공광)로 구성하였고, 태양광 전송장치는 광 전송률이 우수한 석영재질의 광섬유(Optical fiber)로 제작되었으며, 인공광은 LED 중 White 램프를 사용하였다. 전원 공급부는 누전 차단기, SMPS, LED 제어기 및 릴레이로 구성하였다. 시스템계측 및 제어부는 터치스크린과 지그비(ZigBee) 통신모듈, 광량센서로 구성하였다. 구성한 장치의 성능시험 결과 광량센서로 측정된 강도가 200μmol·m-2·s-1 이하가 되면 자동적으로 LED 램프가 작동되어 보광하는 것을 확인하였다. 또한 본 장치를 활용하여 상추를 재배한 결과, 엽장, 뿌리길이, 엽록소 함량 및 지하부 생체중이 LED 처리보다 큰 것으로 나타났다. 따라서본 장치는 화석연료 고갈 등으로 전기 사용에 제한이 올때 폐쇄형 식물공장 같은 시설에서 작물을 재배할 수 있을 것으로 판단된다.