• Title/Summary/Keyword: 레이저 전달

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Motion Detection-based Intuitive Mediate Interface (동작 감지 기반으로 작동하는 직관적 명령 전달 매개 인터페이스)

  • Lim, Jong-Gwan;Sohn, Young-Il;Yang, Jeong-Yeon;Kim, Young-Geun;Kwon, Dong-Soo
    • 한국HCI학회:학술대회논문집
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    • 2007.02a
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    • pp.920-926
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    • 2007
  • 새로운 매체와 접촉 시 발생하는 거부감을 최소화 하고 별도의 학습 없이 사용 가능한 직관적 명령 전달 방식의 매개 인터페이스를 제안한다. 제안하는 매개 인터페이스는 3차원 공간에서 사용가능한 가상 마우스와 TV 리모트 컨트롤러의 기능적 결합을 목표로 하고 실버세대들에게 익숙한 매체인 펜을 형태로 삼아 개념적으로 설계되었다. 구체적인 구현은 가속도계의 신호를 분석하거나 펜촉에 레이저 포인터를 추가하여 레이저 포인터의 좌표 변화를 웹캠으로 추적, 인식하는 방법으로 구분하였고 본 논문에서는 가속도계의 경우를 소개한다. 가속도계 신호분석을 통해 마우스의 기능을 모사하고 동작을 감지하는데 발생하는 문제점과 이를 해결하기 위한 기존 연구를 분석하고 동작 중에 중력방향의 수직축이 바뀌면서 발생하는 가속도계 신호의 오류를 보상하기 위해 제안된 Zero Velocity Compensation 방법을 소개한다. ZVC의 결과에 필수적인 저주파의 시계열 신호 실시간 끝점 추출과 동시에 패턴인식을 위한 특징추출 기능을 수행하는 새로운 알고리즘을 제안하며 기존의 방법과 실험적으로 성능을 비교한다. 또한 입력된 가속도계 신호를 학습된 인식기를 통해 인식하는 기존의 연구에서 더 나아가, 마우스의 좌표변화를 짧은 시간동안 가속도 신호의 실시간 분석을 통해 모사하기 위해 변형시킨 알고리즘을 소개한다.

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Numerical Investigation on Nonequilibrium Energy Transfer in Thin Metal Film Structures during the Irradiation of Femtosecond Pulse Laser (펨토초 레이저가 조사되는 동안의 금속 박막내의 비평형 에너지 전달 현상에 대한 수치해석 연구)

  • Sim, Hyung-Sub;Lee, Seong-Hyuk
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.56 no.2
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    • pp.367-373
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    • 2007
  • The present study investigates numerically nonequilibrium energy transfer between electrons and phonons in metal thin films irradiated by ultrashort pulse lasers and it also provides the temporal and spatial variations of electron and phonon temperatures using the well-established two-temperature model(TTM) on the basis of the Boltzmann transport equation(BTE). This article predicts the crater shapes in gold film structures, and compares the results by using two-dimensional energy transport equation. From the results, it is found that nonequilibrium energy transfer between electrons and phonons takes place, and the equilibrium time increases with the increase of laser fluence. On the other hand, above threshold fluence the ablation time doesn't change nearly with increasing fluences. Compared with one-dimensional TTM, it also reveals that the temporal distributions of electron and phonon temperatures at the top surface estimated by using two-dimensional TTM have a similar tendency. The results show that two-dimensional TTM can simulate the crater shape of metals during the irradiation of femtosecond pulse lasers and the absorbed energy is propagated to z-direction faster than to r-direction.

Measurement of Mass Transfer from Metal Friction Surfaces using Laser Plasma Spectroscopy (레이저 플라즈마 분광 기법을 이용한 금속 마찰 표면에서 물질전달 측정)

  • Yoon, Sangwoo;Kim, Jihoon;Kim, Joohan
    • Journal of the Korean Society of Manufacturing Process Engineers
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    • v.16 no.4
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    • pp.46-52
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    • 2017
  • We quantitatively measured the mass transfer from friction surfaces, specifically brake pads and rotors, using laser plasma spectroscopy. Specifically, we modelled the mass transfer from the pad to the rotor and measured the elemental diffusion intensity distribution in the rotor material using laser plasma spectroscopy. The main elements measured were Cu, Ni, Ti, and Cr, and the distribution of these after transfer was measured as the ratio of the atomic peak and the ion peak of the plasma in the rotor exposed to friction and the surface composition of the rotor and the roughness, respectively. We measured and quantified the diffusion coefficient for each element through the mass transfer model and found that Cr obtained the largest diffusion coefficient (D) of the elements measured based on this system with a value of $1.9484{\times}10^{-15}m^2/s$.

Effect of Nd:YAG Laser Irradiation to Mental Region for Sensory Nerve Conduction Change (하악 이공부에 조사된 Nd:YAG 레이저가 감각신경전도변화에 미치는 영향)

  • Jeon, Jae-Woo;Kim, Kyoung-Hee;Ko, Myong-Yun;Ahn, Yong-Woo;Park, Jun-Sang
    • Journal of Oral Medicine and Pain
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    • v.30 no.4
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    • pp.447-455
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    • 2005
  • The purpose of this study was to examine the effect of Nd:YAG laser irradiation for sensory nerve conduction change. Nd:YAG laser was irradiated to mental region for 5 minutes with the parameters that 10 Hz and 20 Hz of 100 mJ/pulse. Target size of irradiation was 30 mm diameter of circle and target-tip distance was about 10 mm. Therefore, the power density were 212 $mW/cm^2$ and 424 $mW/cm^2$. Sensory nerve conduction was evaluated with $Neurometer^{\circled}$ CPT/C before and after Nd:YAG laser irradiation. As an outcomes, the current perception threshold(CPT) and pain tolerance threshold(PTT) were obtained. We made a comparison of these two values and the results were as follows. 1. There was no significant difference in CPT at 1W, 10 Hz and 2 W, 20 Hz Nd:YAG laser irradiation. 2. There was no significant difference in PTT at 10 Hz, 20 Hz of 100 mJ/pulse Nd:YAG laser. 3. There were no significant differences in CPT and PTT between 1 W, 10 Hz group and 2 W, 20 Hz group. Therefore, We can make a conclusion that Nd:YAG laser irradiation to mental region have no effect on mental nerve conduction in our study model.

Feasibility study on the development of Liquid crystal-optical fiber temperature sensor for minimal invasive laserthermia (LC(Liquid crystal)-광섬유를 이용한 최소 침습적 레이저 온열 치료용 온도 측정 센서의 개발을 위한 기초 연구)

  • Lee, Bong-Soo;Hwang, Young-Muk;Chung, Soon-Cheol
    • Journal of Sensor Science and Technology
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    • v.12 no.5
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    • pp.225-230
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    • 2003
  • Nowadays, laserthermia is widely used to treat malignant tumors with generating heat as the one of minimal invasive surgeries. Generally, the laserthermia probe system consists of the fiber-optic laser and light guides, image guide and temperature sensor. It is very important to measure the temperature of treating tumor and make a stable temperature ($42{\sim}43^{\circ}C$) during the treating time. Therefore, laserthermia probe needs temperature sensor which can measure it exactly and fast. In this study, to develop a new type of temperature sensor with LC(liquid crystal) and optical fiber, the reflectivity of LC according to the temperature changes are measured. Also, the relationships are derived from the results.

A Study on HILS for Performance Analysis of Airborne EOTS for Aircraft (항공기용 EOTS 성능분석을 위한 HILS시스템 구축에 관한 연구)

  • Chun, Seungwoo;Baek, Woonhyuk;La, Jongpil
    • Journal of the Korea Society of Computer and Information
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    • v.18 no.12
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    • pp.55-64
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    • 2013
  • In this paper, the HILS (Hardware In-the-Loop Simulation) system to analyze and to verify the performance of the targeting pod is addressed. The main functions of the targeting pod is acquiring and tracking targets to guide a LGB (Laser Guided Bomb) to the targets. For the analysis of targeting pod, the real time simulate images generation of IR and daylight cameras, sever control technology, and the analysis of laser transfer characteristics are necessary. For the real time image generation and the laser transfer characteristics analysis, off-the-shelf SDK(Software Development Kit) OKTAL-SE is used. For the servo controller, well-proven mechanism in the previous program is applied to increase servo control accuracy. To analyze the performance of a targeting pod in a realistic environment, 1553B, ARINK818 interface and etc. which are actually implemented in real combat aircrafts are applied in the system. By using the developed HILS system, the performance of currently operating targeting pods in real combat aircrafts can be analyzed and predicted. Additionally, the relationship between overall system performance and each module performance can be analyzed, the currently developed HILS system is expected to be a very useful tool to generate system development requirements of targeting pods and to reduce any possible future development risks.

Characterization of Porcine Tissue Perforation Using High-Power Near-Infrared Laser at 808-nm Wavelength (808 nm 파장의 고출력 근적외선 레이저 조사 시 돼지 조직의 천공 특성 연구)

  • Kim, Seongjun;Cho, Jiyong;Choi, Jaesoon;Lee, Don Haeng;Kim, Jung Kyung
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.37 no.9
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    • pp.807-814
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    • 2013
  • A fundamental study on laser-tissue interaction was conducted with the aim of developing a therapeutic medical device that can remove lesions on the intestinal wall by irradiating a high-power 808-nm infrared laser light incorporated in an endoscopic system. The perforation depth was linearly increased in the range of 1~4 mm in proportional to laser output (3~12 W) and irradiation time (5~20 s). We demonstrated that the perforation depth during laser irradiation was varied according to the tissue property of each extracted porcine organ. The measurement of the temperature distribution suggests that the energy is localized in the irradiation spot and transferred to deep tissue, which protects the surrounding tissue from thermal injury. These results can be used to set the driving parameters for a laser incision technique as an alternative to conventional surgical interventions.

The optimization of output coupler reflectivity of high repetitive pulsed Nd:YAG laser system adopted 3-mesh parallel sequential charge and discharge method (3단 병렬 충.방전 방식을 적용한 고반복 펄스형 Nd:YAG 레이저 출력거울 반사율의 최적화)

  • 김휘영;홍수열;김동수
    • Journal of the Korea Computer Industry Society
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    • v.2 no.3
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    • pp.369-376
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    • 2001
  • The optimization of resonator and laser power supply has been considered to be significant for improving the efficiency of a pulsed Nd:YAG laser system. We have proposed a new method of 3-mesh parallel sequential charge and discharge circuit as a laser power supply; more compact than conventional power supply, competitive in price, easy to control the laser power density according to various material processing, and equipped with the optimum reflectivity of output coupler. In this study, we could find that the maximum laser output was obtained by using 85% of reflectivity in the case of 50[W]-class. In addition using the power supply of new method, it's possible to charge each capacitor bank with a higher energy within the given charging time adopted a new method mentioned above; namely, we can allow each capacitor to have much more charging time and storage energy. So, higher laser output was obtained than conventional power supply.

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Room-temperature 2-D PBG laser employing wafer fusion (기판 융용 접합을 이용한 상온동작 2차원 광밴드갭 레이저)

  • 황정기;류한열;송대성;한일영;이용희;장동훈
    • Proceedings of the Optical Society of Korea Conference
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    • 2000.02a
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    • pp.274-275
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    • 2000
  • 광결정(photonic crystal)으로 광원의 자발 방출을 조절하면 문턱전류 없는 레이저, 고효율 다이오드, 파장 크기에서 손실 없이 급격히 꺾을 수 있는 광도파로 등 기존의 광소자에서 얻을 수 없는 좋은 성능을 얻을 수 있을 것으로 예상된다. 이러한 광결정은 유전체를 파장정도 크기에서 주기적으로 배치시킨 인공적인 결정인데 고체에서 원자의 주기적인 배치로 전자가 전파할 수 없는 진동수 영역, 즉 밴드갭이 생기는 것과 유사하게 빛에 대해서 빛이 전파할 수 없는 진동수 영역인 광밴드갭(photonic bandgap)을 가진다. 그런데 관심있는 광영역에서 3차원 모든 방향으로 광밴드갭이 있는 구조물은 마이크로미터보다 작은 내부 구조를 가지는 복잡한 3차원 구조물로 제작이 어렵다. 이러한 어려움을 극복하기 위해 제작이 비교적 용이한 3차원 광밴드갭 구조물이 찾아지고 있다. 다른 접근 방법으로 평면(x-y)에서는 2차원 광밴드갭을 이용하고 제 3의 방향(z축)으로는 전반사를 이용하는 구조는 제작이 용이할 뿐만 아니라 처음부터 광원의 편광을 TE 또는 TM 모드로만 방출 되도록 준비해 줄 수 있으면 거의 3차원 광결정에서 얻을 수 있는 효과를 낼 수 있는 것으로 발표되었다.$^{(1)}$ 이 방법을 이용하여 최근에 미국의 캘리포니아 공과대학(Caltech)을 중심으로 레이저 동작을 보여 주었다.$^{(2.3)}$ 공기로 둘러싸인 얇은 유전체 평판에서 생기는 전반사와 평판 위에 2차원 삼각형살창(triangular lattice)에 구멍을 뚫어 얻는 2차원 광밴드갭을 이용해 3차원 공진모드를 형성하였다. 이러한 구조에서 1개만 구멍을 매워서 만든 공진기는 저온(143 K)에서 레이저 발진을 보였고 여러 개의 구멍을 매운 경우는 상온에서 펌프 펄스의 유지시간이 0.5% 인 경우 레이저가 동작하는 것을 보여주었다. 이는 구조내에서 열전도가 문제가 된다는 것을 의미하는데 위아래가 공기로 둘러 싸여 있어 발생한 열이 가는 유전체 네트웍을 통해서만 전달 될 수 있기 때문이다. (중략)

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Femto-second Laser Ablation Process for Si Wafer Through-hole (펨토초 레이저 어블레이션을 이용한 Si 웨이퍼의 미세 관통 홀 가공)

  • Kim, Joo-Seok;Sim, Hyung-Sub;Lee, Seong-Hyuk;Shin, Young-Eui
    • Journal of the Microelectronics and Packaging Society
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    • v.14 no.3
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    • pp.29-36
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    • 2007
  • The main objectives of this study are to investigate the micro-scale energy transfer mechanism for silicon wafer and to find an efficient way for fabrication of silicon wafer through-hole by using the femtosecond pulse laser ablation. In addition, the electron-phonon interactions during laser irradiation are discussed and the carrier number density and temperatures are estimated. In particular, the present study observes the shapes of silicon wafer through-hole with $100\;{\mu}m$ diameter and it also measures the heat-affected area and the ablation depths fur different laser fluences by using the optic microscope and the three-dimensional profile measurement technique. First, from numerical investigation, it is found that the nonequilibrium state exists between electrons and phonons during laser irradiation. From experimental results, it should be noted that the heat-affected area increases with laser fluence, and the optimal conditions for through-hole formation with minimum heat affected zone are finally obtained.

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