• Title/Summary/Keyword: 태양광 추적장치

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A Study on non-linear trajectory shaped apparatus applied solar tracking device (비선형 궤적형상을 적용한 태양광 추적장치에 대한 연구)

  • Han, Jae-Hyeon;Moon, Chae-Joo;Chang, Young-Hak;Choi, Man-Soo;Kim, Young-Gon;Jeong, Moon-Seon
    • The Journal of the Korea institute of electronic communication sciences
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    • v.10 no.11
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    • pp.1277-1284
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    • 2015
  • In this paper, 1-axis tracking mechanism of solar-cell panel, which is able to rotate from -90 degree to +90 degree for maintaining always perpendicular between solar-cell panel and sun, was analyzed. This paper propose the non-linear shaped guidance and analyze mathematical formulation of non-linear shape. This analysis shows that it is able to identify the non-linear shaped guidance. Especially, even though the length of rotating link have changed, the non-linear shaped guidance could be confirm with proper size. As effectiveness of this result, 10% efficiency rising is estimated compared to the conventional 1-axis tracking mechanism and also optimal non-linear shaped guidance can be suggested for various size of solar-cell panel. Therefore the flexible mass-production is possible for various size of non-linear shaped guidance.

Design of movable Tracking System using CDS Type Sensor (CDS센서를 이용한 이동 가능형 태양추적시스템 설계)

  • Sim, Myung-Gyu;Ji, Un-Ho;Chun, Soon-Yong
    • Journal of the Institute of Electronics Engineers of Korea SC
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    • v.47 no.6
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    • pp.6-11
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    • 2010
  • Amount of power generated from solar photovoltaic can vary according to solar flux of sunlight due to nature of solar cell panel, and an angle that the sun and the surface of cell makes brings difference in amount of power generation. Solar flux is decided by location of surface of the Earth that is classified into longitude and latitude, but on the other hand, an angle that the sung and the surface of cell makes can be changed by changing the angle of a solar power generation device at the fixed location. A method of changing the angle of a solar power generation device as a measure for improving practical power generation efficiency. and studies about a solar tracking device for this are in active. This study conducted a research on a solar tracking system for improvement of solar power generation efficiency. A solar tracking system of this study is composed of a sensor part to confirm a location of the sun with a semiconductor photosensor using the photo conductive effect, and it analyzed output signal of a sensor by using microprocessor and it produced a control signal of driving part for tracking the sun. A solar power generator (25W) was produced to analyze performance of a solar tracking system and usefulness of a solar tracking device that was designed and produced in this study was confirmed through experiments.

A Development of Sun Tracking Control System for Parabolic Trough Concentrator (PTC용 태양 추적 장치의 개발)

  • Park, Y.C.;Kwak, H.Y.;Kang, Y.H.
    • Solar Energy
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    • v.18 no.3
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    • pp.25-30
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    • 1998
  • A sun tracking controller for PTC(parabolic trough concentrator) is a control system used to orient the concentrator toward the sun always, so that the maximum energy can be collected. The work presented here is a design and development of microprocessor based sun tracking control system for PTC. Sun tracking control system consists of a sun sensor and a single axis tracking control system. 80c196KC based control system consists of an analog input unit, 24V DC servomotor drive unit, I/O unit. Sun sensor has been constructed using photodiode and can detect the sun located within ${\pm}50^{\circ}$ measured from the sun sensor normal direction. The sun tracking system developed is being implemented and shows a good sun tracking performance.

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A Study on Concentrating Photovoltaic System by GPS Solar Tracker (GPS 태양추적장치를 이용한 집광형 태양광발전시스템에 관한 연구)

  • Jeong, Yong-Hwan;Lim, Jung-Yeol
    • Journal of IKEEE
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    • v.15 no.3
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    • pp.211-217
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    • 2011
  • The energy of CPV system is different as the altitude and azimuth of solar. In order to The maximum of solar energy density, the tracking system which does there to make be the module and the solar will be able to maintain a normal line is necessary. This paper proposed for GPS solar tracker of stand-alone 60[W] concentrating photovoltaic system. The position algorithm of solar tracker is through the coordinates transformation calculating the altitude and azimuth of the solar.

An Accurate Sun Tracking System (태양광 집적을 위한 태양위치 추적장치)

  • 백현규;곽만섭;현웅근
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2001.10a
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    • pp.737-741
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    • 2001
  • An illumination system by using sun light is optimally designed. The developing system consists of main controler for sun tracking, Cds sensor module, and light translation system based on optical fiber. A sun tracking algorithm is designed in such away that the illumination system stand with straight angle to the direction of sun within $\pm$2$^{\circ}$as permissible tolerance. To show the validity of the developed system, several experiments will be illustrated.

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An Experimental Study on the Optical Separation of Highly Concentrated Sunlight (Hot mirror를 이용한 고밀도 태양광의 광분리에 관한 기초실험 연구)

  • Kim, Yeongmin;Mo, Yonghyun;Shin, Sangwoong;Oh, Seungjin;Chun, Wongee
    • Journal of Energy Engineering
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    • v.23 no.4
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    • pp.56-60
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    • 2014
  • Highly concentrated sunlight obtained from a solar concentrator mounted on a solar tracker can be divided into the infrared and visible region before it is actually applied. That is, solar rays are directed toward a unit optically separating sunlight into the infrared and visible region by a hot mirror as they impinge on the surface of a secondary reflector. The Infrared rays can be utilized for thermoacoustic applications while visible rays can be utilized for indoor lighting. This work introduces the separation of two different kinds of light; sunlight and artificial light. As for the artificial light, its wavelength extended from 400m to 720m for the visible region and 620m to 940m for the infrared region. Comparatively, a series of tests performed on sunlight revealed its separation in the visible region from 460m to 680m whereas from 620m to 940m for the artificial light.

Chronological solar tracking system using polar axis rotation (극축 회전을 이용한 태양광 추적 장치에 관한 연구)

  • Park, Tae-Yang;Moon, Chang-Bum;Chae, Sang-Hoon;Kim, Woo-Young;Chae, Soo-Jho
    • 한국신재생에너지학회:학술대회논문집
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    • 2009.06a
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    • pp.61-64
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    • 2009
  • 본 논문에서는 단축과 2축 회전형추적시스템의 장점을 가진 시간 제어 극축회전형(Chronological Polar axis tracking) 태양광추적발전시스템에 대한 연구결과를 보여주고 있다. 천체 망원경의 별 추적 방식과 같은 시간 제어 극축 회전 방식으로 태양 추적방법의 정밀도를 높이면서 제어를 간소화하였고 계절 변화에 따른 태양 남중고도의 변화를 패널이 동시 추적 가능하도록 하였다. 향후 집광형태양광발전시스템에 적용가능성을 보였다.

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A Development of the Solar Position Tracker on the Program Method for the Small Typed Stand-alone PV System Commercialization (소형 태양광 발전시스템 상용화를 위한 프로그램 방식의 태양위치추적기 개발)

  • 이양규;강신영;김광헌
    • The Transactions of the Korean Institute of Power Electronics
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    • v.8 no.3
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    • pp.260-265
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    • 2003
  • The energy of PV system is different as the elevation and aximuth of the sun. This paper deals with the economical position tracking system development for the stand alone PV system. We have made more economical solar position tracking system which is used a tracking program than other similar systems. It is applied to the solar lighting lamp. We have made a comparative study of the energy amount between the fixed type and the tracking type during some period. The improved efficiency of the system is about 86 %.

The Concentrating Photovoltaic System using a Solar Tracker (태양위치 추적 장치를 이용한 집광형 태양광 발전시스템)

  • Yoo, Yeong-tae;Na, Seung-kwon
    • Journal of Advanced Navigation Technology
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    • v.21 no.4
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    • pp.377-385
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    • 2017
  • The solar cell need the characteristic interpreting because the solar cell changes greatly according to the isolation, temperature and load in the photovoltaic development. Moreover, to get many energy in photovoltaic development need the position tracking of the sun according to the environment change. Also, The solar cells should be operated at the maximum power point. In this paper, I used microprocessor and sensor and designed to improve the efficiency of the photovoltaic system the photovoltaic position tracker device, and compared the normal photovoltaic system of fixed form with the photovoltaic system of solar position tracked form. Moreover, compared the catalogue of solar cell module and the simulation through a mathematics modelling with the solar cell's characteristic interpreting and composed an power conversion system with boost converter and voltage source inverter. Used the constant voltage control method for maximum power point tracking in boost converter control and, used the SPWM(Sinusoidal Pulse Width Modulation) control method in inverter control. The result was less then 5% when compared the catalogue of solar cell module and the simulation through a mathematics modelling. The boost rate of boost converter was similar to 167 % with the simulation.