• Title/Summary/Keyword: parabolic mirror

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A Feasibility Study of Using a Mini-dish Cluster for Solar Power Generation (소형 태양 반사경 클러스터를 이용한 태양열 발전에 대한 타당성 연구)

  • Oh, Seung-Jin;Lee, Jung-Sung;Hyun, Joon-Ho;Kim, Nam-Jin;Chun, Won-Gee
    • 한국신재생에너지학회:학술대회논문집
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    • 2006.11a
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    • pp.161-164
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    • 2006
  • This paper introduces a preliminary work for the design of a mini-dish cluster system for power general ion. Each mini-dish (typically has a 20 to 30cm in diameter) is designed with a simple parabolic profile, concentrating sun light (after the glass glazing cover to avoid dust deposition on the reflector and facilitate cleaning) onto a centrally located small plane(or concave) mirror which is placed on the bottom side of the transparent glass cover. The mirror with a mini-dish concentrator is designed to focus beam radiation onto a focal point before it enters a bundle of optical fibers connected to a remote receiver for power generation different options are considered In designing a mini-dish concentrator to maximize its effectiveness for the collection and use of solar energy.

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Polymer Deformable Mirror for Optical Auto Focusing

  • Wang, Jen-Liang;Chen, Tyng-Yow;Liu, Chingwei;Chiu, Chen-Wei Edward;Su, Guo-Dung John
    • ETRI Journal
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    • v.29 no.6
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    • pp.817-819
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    • 2007
  • A low-stress organic polymer membrane is proposed as a deformable mirror that can be incorporated into a cellular phone camera to achieve auto focusing without motor-type moving parts. It is demonstrated that our fabricated device has an optical power of 20 diopters and can switch focus in 14 ms. The surface roughness of the organic membrane is measured around 15 nm, less than ${\lambda}$/20 of the visible light. With curve fitting, we found that the actuated membrane is almost parabolic in shape, which leads to less aberration than spherical surfaces. It is suitable for reflective-optics systems.

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A Feasibility Study of using Mini-dish Systems for Solar Power Generation (소형 태양 반사경 Cluster를 이용한 태양열 발전에 대한 타당성 연구)

  • Oh, Seung-Jin;Hyun, Joon-Ho;Chun, Won-Gee;Han, Hyun-Joo;Kim, Jeong-Tai
    • New & Renewable Energy
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    • v.2 no.4 s.8
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    • pp.39-45
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    • 2006
  • This paper introduces a preliminary work for the design of a mini-dish cluster system for power generation. Each mini-dish [typically has a 20 to 30 cm in diameter] is designed with a simple parabolic profile concentrating sun light [after the glass glazing cover to avoid dust deposition on the reflector and facilitate cleaning] onto a centrally located small plane[or concave] mirror which is placed on the bottom side of a transparent glass cover. The mirror with a mini-dish concentrator is designed to focus beam radiation onto a focal point before it enters a bundle of optical fibers connected to a remote receiver for power generation. Different options are considered in designing a mini-dish concentrator to maximize its effectiveness for the collection and use of solar energy.

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Enhancement of a parabolic face working accuracy using volumetric error compensation of NC milling machine (NC 밀링머신의 Volumetric 오차보상을 통한 포물면 가공의 정밀도 향상)

  • 이찬호;정을섭;이응석;김성청
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2000.05a
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    • pp.917-921
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    • 2000
  • One of the major limitations of productivity and quality in machining is machining accuracy of the machine tools. The machining accuracy is affected by geometric, volumetric errors of the machine tools. This paper suggests the enhancement method of machining accuracy for precision machining of high quality metal reflection mirror or optics lens, etc. In this paper, we study 1) the compensation of linear pitch error with NC controller compensation function using laser interferometer measurement, 2) the method for enhancing the accuracy of NC milling machining by modeling and compensation of volumetric error, 3) the generation of the parabolic face profile. And the method is verified by the parabolic face machining experiment with a vertical three axes NC milling machine. After this study, we will inspect using On-machine measurement and study the repetitive machining by a compensated path

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300-W-class Side-pumped Solar Laser

  • Qi, Hongfei;Lan, Lanling;Liu, Yan;Xiang, Pengfei;Tang, Yulong
    • Current Optics and Photonics
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    • v.6 no.6
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    • pp.627-633
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    • 2022
  • To realize uniform side pumping of solar lasers and improve their output power, a solar concentrating system based on off-axis parabolic mirrors is proposed. Four identical off-axis parabolic mirrors with focal length of 1,000 mm are toroidally arranged as the primary concentrator. Four two-dimensional compound parabolic concentrators (2D-CPCs) are designed as a secondary concentrator to further compress the focused spot induced by the parabolic mirrors, and the focused light is then homogenized by four rectangular diffusers and provides uniform pumping for a laser-crystal rod to achieve solar laser emission. Simulation results show that the solar power received by the laser rod, uniformity of the light spot, and output power of the solar laser are 7,872.7 W, 98%, and 351.8 W respectively. This uniform pumping configuration and concentrator design thus provide a new means for developing high-power side-pumped solid-state solar lasers.

MANUFACTURING AND TEST RESULTS OF OFF-AXIS PARABOLIC CYLINDER MIRROR FOR FIMS (FIMS에 사용되는 비축 포물 원통형 반사경의 제작과 성능 시험 결과)

  • Ryu, K.-S.;Yuk, I. S.;Seon, K.-I.;Lee, Y.-W.;Nam, U.-W.;Shin, J.-H.;Hong, S.-J.;Lee, D.-H.;Jin, H.;Oh, S.-H;Rhee, J.-G.;Min, K.-W.;Han, W.;Park, J.-H.;Edelstein, J.;Korpela, E. J.
    • Journal of Astronomy and Space Sciences
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    • v.18 no.3
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    • pp.239-248
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    • 2001
  • Far-ultraviolet IMaging Spectrograph (FIMS) is the main payload of the first Korean scientific satellite, KAISTSAT-4, which will be launched in 2002. Among the optical parts, parabolic cylinder mirror does not have any heritage from previous astronomical missions, so the manufacturing and testing process itself is a challenging issue. We describe the method of manufacturing and measuring of the off-axis parabolic cylinder mirror and our initial experiments to establish the entire manufacturing process. Using the method, the profile error can meet the specification of $lambda$ per cm which is closely related with the astronomical performances. In case of the surface roughness, temperature controlled pitch polishing reduces $R_{q}$ under 1 nm implying that scattering in the entire spectral range of FIMS is less than 2% of the incident UV light.

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Historical Review on the Parabolic Reflector Moxa and Clinical Applications of Light Moxibustion in Korean Medicine (양수구(陽燧灸)(오목거울뜸)에 대한 역사적 고찰 및 한의임상(韓醫臨床)에서 광선구(光線灸)의 활용 전망)

  • Jang, In-Soo;Sun, Seung-Ho;Seo, Hyung-Sik
    • Korean Journal of Acupuncture
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    • v.27 no.4
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    • pp.1-4
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    • 2010
  • Objectives : The purpose of this study is to summarize the historical aspects of parabolic reflector moxa and to suggest the applications of light moxibustion in Korean medicine. Results : Getting a fire by parabolic reflector(concave mirror) is well known because of the Olympic torch lighted with a solar reflector in Greece. From anecdotes or myths for Diocles and Archimedes(third century B.C.) a long history has been chronicled in books and films in western culture. However, it has another history in Asian countries since 2,000 years ago. Some reflectors had a tiny size with 6.5 to 10 cm in diameter, 4 mm to 1 cm thickness, and these mobile handheld devices could make us guess that they have been used for multiple purposes. Bronze reflectors were described in Dongeui-bogam, and excavated from the ancient remains of the Shilla and Koryo dynasties. This common firing device was used as a moxibustion device, one of the acupuncture and moxibustion modalities in traditional Korean medicine. Conclusions : Reflector moxa has been used as a light moxibustion to deliver heat energy to acupuncture points, muscles, and skin along meridians. We present a plausible proposal to improve other phototherapy modalities including reflector moxa in Korean medicine practice.

Machining Accuracy for Large Optical Mirror using On-Machine Spherical Surface ]Referenced Shack-Hartmann System (On-Machine 구면기준 Shack-Hartmann 장치를 이용한 대형 반사경의 가공 정밀도 연구)

  • Hong Jong Hui;Oh Chang Jin;Lee Eung Suk;Kim Ock Hyn
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.29 no.5 s.236
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    • pp.726-733
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    • 2005
  • A spherical surface referenced Shack-Hartmann method is studied for inspecting machining accuracy of large concave mirror This method is so strong to the vibration environment for using as an on-machine inspection system during polishing process of large optics comparing with the interferometry. The measuring uncertainty of the system is shown as less than p-v 150 m. On-machine measured surface profile data with this method is used for feed back control of the polishing time or depth to improve the surface profile accuracy of large concave mirror. Also, the spherical surface referenced Shack-Hartmann method is useful for measuring aspheric such as parabolic or hyperbolic surface profile, comparing that the interferomehy needs a special null lens, which is to be a reference and difficult to fabricate.

The Indoor Position Detection Method using a Single Camera and a Parabolic Mirror (볼록 거울 및 단일 카메라를 이용한 실내에서의 전 방향 위치 검출 방법)

  • Kim, Jee-Hong;Kim, Hee-Sun;Lee, Chang-Goo
    • Journal of Institute of Control, Robotics and Systems
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    • v.14 no.2
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    • pp.161-167
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    • 2008
  • This article describes the methods of a decision of the location which user points to move by an optical device like a laser pointer and a moving to that location. Using a conic mirror and CCD camera sensor, a robot observes a spot of user wanted point among an initiative, computes the location and azimuth and moves to that position. This system offers the brief data to a processor with simple devices. In these reason, we can reduce the time of a calculation to process of images and find the target by user point for carrying a robot. User points a laser spot on a point to be moved so that this sensor system in the robot, detecting the laser spot point with a conic mirror, laid on the robot, showing a camera. The camera is attached on the robot upper body and fixed parallel to the ground and the conic mirror.