• Title/Summary/Keyword: 영상 안정화

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A Study on the Promotion Method of Domestic Video Security Industry (국내 영상보안산업 활성화 방안 연구)

  • Yoo, Soonduck;Ryu, Daehyun
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.17 no.3
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    • pp.9-21
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    • 2017
  • The purpose of this study is to identify the current situation and actual condition of the video security industry, The research method was based on interviews with twelve specialists, and examined the market trends, the problems of the video security industry, the improvement plan and the government promotion strategy. The problem with the domestic video security industry is that there are the decline in overseas exports and the slowdown in exports to China, insufficient measures to overcome certification barriers due to the strengthening of national certification system, domestic demand growth slowed, expansion of domestic market share of Chinese products, lack of high-tech development of domestic products, lack of expertise in technology development and operation and inadequate legislation for revitalizing the video security industry. The improvement plan is as follows. Need to implement export expansion support policy, need to build tailored response system for each country, need improvement of security related demand creation system, take measures such as domestic industrial protection policy, certification barriers and tariff barriers, induce future core technology to create high added value. The government also needs to actively support human resources development, and induce stabilization of relevant laws and institutions. This study will contribute to the development of related industries by suggesting the development direction of the video security industry.

Optical Design for Satellite Camera with Online Optical Compensation Movements (온라인 광학보정장치를 적용한 위성카메라의 광학설계)

  • Jo, Jeong-Bin;Hwang, Jai-Hyuk;Bae, Jae-Sung
    • Journal of the Korean Society for Aeronautical & Space Sciences
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    • v.43 no.3
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    • pp.265-271
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    • 2015
  • In this study, optical design for small satellite camera equipped with online optical compensation movements has been conducted. Satellite camera equipped with compensation movements at M2 mirror and focal plane can guarantee the MTF performance through the focal plane image stabilization and the on-orbit optical alignment. The designed optical system is schmidt-cassegrain type that has M1 mirror of a diameter 200mm, GSD 3.8m at an altitude of 700km, and 50 % MTF performance. The performance of the designed optical system has been analyzed through the method of ray aberration curve, spot diagram, and MTF. It has been found by the optical performance analysis that the designed optical system satisfies the optical requirements of satellite camera equipped with online optical compensation movements.

A Comparative Analysis between Duplication Stage Gage Data (이중화 수위계 자료 비교분석연구)

  • Kim, Hwi-Rin;Yoo, Chul-Sang;Cho, Hyo-Seob;Kim, Yang-Su
    • Proceedings of the Korea Water Resources Association Conference
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    • 2009.05a
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    • pp.1177-1180
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    • 2009
  • 현재 국토해양부 4대강 홍수통제소에서는 369개의(2007년 한국수문조사연보 기준) 수위관측소를 설치 운영하고 있으며 현장에서 수집되는 수위자료의 측정방법은 부자식, 레이더식, 초음파식, 영상수위계 등 다양하다. 한강홍수통제소에서 자체 시험연구과제로 수행한 "TM 및 일반수위관측자료 비교분석연구" (국토 해양부, 2007)에 의하면 홍수예보를 위한 주요지점을 위주로 부자식과 레이더식, 부자식과 초음파식 등으로 수위계가 이중화 설치된 것으로 조사된 바 있다. 최근 홍수예보시 수위계 장비 자체의 결함이나 통신이상 등으로 발생되는 결측치나 이상치 자료를 최소화하기 위하여 주 관측방식이 부자식인 수위관측소에서 부자식 수위계의 기기 고장이나 부자 걸림 등이 발생되어 정상적인 자료 취득이 어려운 경우, 보조로 설치된 레이더식 또는 초음파식 수위계의 자료를 수신 받아 자료 손실을 최소화하고 주요지점의 자료 생산 제공 활용의 안정화를 도모하기 위함이다. 따라서 이러한 활용성을 극대화하기 위해 평상시 주 수위계와 보조 수위계에서 생산되는 자료를 동시에 저장하여 두 자료를 비교 분석하여 향후 홍수통제소에서 적용 가능한 자료관리 및 운영에 대한 개선방안을 제안하고자 한다.

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Control of Focal Plane Compensation Device for Image Stabilization of Small Satellite Camera (소형 위성 카메라의 영상안정화를 위한 초점면부 보정장치의 제어)

  • Kang, Myoungsoo;Hwang, Jaihyuk;Bae, Jaesung
    • Journal of Aerospace System Engineering
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    • v.10 no.1
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    • pp.86-94
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    • 2016
  • In this paper, position control of focal plane compensation device using piezoelectric actuator is conducted. The forcal plane compensation device installed on earth observation satellite camera compensates micro-vibration from reaction wheels. In this study, four experimental models of the open-loop compensation device are derived using MATLAB system identification toolbox in the input range of 0~50Hz. Subsequently, the PID controller for each model is designed and the performance test of each controller is conducted through MATLAB/Simulink. According to frequency response analysis of the closed-loop compensation device system, the PID controller designed for 38~50Hz input range has enough tracking performance for the whole 0~50Hz input range. The maximum output error is about $1{\mu}m$ for the input range. The simulation results has been verified by the experimental method.

Dual Stage Servo Controller for Image Tracking System (듀얼 스테이지 서보 시스템을 이용한 영상 추적장치의 안정화 제어)

  • Choi Y.J.;Kang M.S.;Ryu K.H.;Lee S.H.
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2006.05a
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    • pp.45-46
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    • 2006
  • In this paper, a dual stage servo mechanism has been developed for image tracking system to improve transient control performances such as small rise time, small overshoot, small settling time, etc. A secondary stage, a platform, actuated by a pair of electro-magnets is mounted on a conventional elevation gimbal. In this mechanism, the gimbal provides large range but slow motion and the platform provides small range but fast positioning. A sliding mode control is applied to the platform positioning to attain robust performances and stability in the presence of the disturbance related to dynamic coupling of the gimbal and the platform. Results from experiments illustrate that the suggested dual stage mechanism controlled by the sliding mode control is effective in improving transient responses and attenuating the disturbance related with dynamic coupling.

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진공패키지에 의해 조립된 볼로미터 적외선 센서의 특성

  • Han, Myeong-Su;Kim, Jin-Hyeok;Sin, Gwang-Su;Kim, Hyo-Jin;Kim, Seon-Hun;Go, Hang-Ju
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.08a
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    • pp.241-241
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    • 2010
  • 적외선 센서는 빛의 유무에 관계없이 물체 또는 인체에서 발산하는 적외선을 감지한다. 이러한 센서를 전자 및 디스플레이 시스템과 연동하면 열영상 시스템이 되는데, 이는 전방 감시, 플랜트 감시, 보안, 방범용으로 많이 사용되며, 특히 자동차 야간 운전자 보조용으로 사용되어 최첨단, 고부가가치를 지니고 있는 핵심부품이다. 비냉각형 적외선 센서인 마이크로볼로미터는 상온에서 작동하므로 극저온 Cooler가 불필요하며, 무게와 부피가 작아 각종 시스템에 부착가능하다. 특히 볼로미터형 적외선 센서는 용량이 적은 TE cooler로 상온으로 안정화를 시키며, 진공으로 유지되는 금속 또는 세라믹 패키지를 사용하게 된다. 본 연구에서는 마이크로 볼로미터용 진공패키지를 제작하여 패키지 조립 및 측정기술에 대해 조사하였다. 패키지는 금속재질인 kovar를 사용하여 제작되었고, 내부에 TE Cooler와 장수명 진공유지를 위한 getter, 그리고 온도센서 및 볼로미터 센서 칩을 장착하여 조립하였다. 패키지 Cap ass'y와 base envelop의 솔더링 공정은 약 $200^{\circ}C$에서 수행하였으며, evacuation system을 이용하여 5일 동안 패키지 bake-out 공정을 수행하였다. 이 후 getter를 활성화시키고, seal-off 공정으로 진공 기밀을 유지하였다. 진공 패키지의 기밀성은 $6{\times}10^{-9}\;std.cm^3/sec$로 기밀성을 유지하였다. 볼로미터 센서의 반응도는 $10^2\;V/W$ 이상을 나타내었으며, 탐지도는 $2{\times}10^8\;cm-Hz^{1/2}/W$를 나타내었다.

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Image Reconstruction of Dielectric Pipes by using Levenberg-Marquardt and Genetic Algorithm (Levenberg-Marquardt 알고리즘과 유전 알고리즘을 이용한 유전체 파이프의 영상재구성)

  • 김정석;나정웅
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.14 no.8
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    • pp.803-808
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    • 2003
  • Several dielectric pipes buried in the lossy half space are reconstructed from the scattered fields measured along the interface between the air and the lossy ground. Iterative inversion method by using the hybrid optimization algorithm combining the genetic and the Levenberg-Marquardt algorithm enables us to find the positions, the sizes, and the medium parameters such as the permittivities and the conductivities of the buried pipes as well as those of the background lossy half space even when the dielectric pipes are close together. Illposedness of the inversion caused by the errors in the measured scattered fields are regularized by filtering the evanescent modes of the scattered fields out.

Real-time Stabilization Method for Video acquired by Unmanned Aerial Vehicle (무인 항공기 촬영 동영상을 위한 실시간 안정화 기법)

  • Cho, Hyun-Tae;Bae, Hyo-Chul;Kim, Min-Uk;Yoon, Kyoungro
    • Journal of the Semiconductor & Display Technology
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    • v.13 no.1
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    • pp.27-33
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    • 2014
  • Video from unmanned aerial vehicle (UAV) is influenced by natural environments due to the light-weight UAV, specifically by winds. Thus UAV's shaking movements make the video shaking. Objective of this paper is making a stabilized video by removing shakiness of video acquired by UAV. Stabilizer estimates camera's motion from calculation of optical flow between two successive frames. Estimated camera's movements have intended movements as well as unintended movements of shaking. Unintended movements are eliminated by smoothing process. Experimental results showed that our proposed method performs almost as good as the other off-line based stabilizer. However estimation of camera's movements, i.e., calculation of optical flow, becomes a bottleneck to the real-time stabilization. To solve this problem, we make parallel stabilizer making average 30 frames per second of stabilized video. Our proposed method can be used for the video acquired by UAV and also for the shaking video from non-professional users. The proposed method can also be used in any other fields which require object tracking, or accurate image analysis/representation.

Consideration of the Effect according to Variation of Material and Respiration in Cone-Beam CT (Cone-Beam CT에서 물질 및 호흡 변화가 영상에 미치는 영향에 대한 고찰)

  • Na, Jun-Young;Kim, Jung-Mi;Kim, Dae-Sup;Kang, Tae-Young;Baek, Geum-Mun;Kwon, Gyeong-Tae
    • The Journal of Korean Society for Radiation Therapy
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    • v.24 no.1
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    • pp.15-21
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    • 2012
  • Purpose: Image Guided Radiation Therapy (IGRT) has been carried out using On-Board Imager system (OBI) in Asan Medical Center. For this reason, This study was to analyze and evaluate the impact on Cone-Beam CT according to variation of material and respiration. Materials and Methods: This study was to acquire and analyze Cone-Beam CT three times for two material: Cylider acryl (lung equvalent material, diameter 3 cm), Fiducial Marker (using clinic) under Motion Phantom able to adjust respiration pattern randomly was varying period, amplitude and baseline vis-a-vis reference respiration pattern. Results: First, According to a kind of material, when being showed 100% in the acryl and 120% in the Fiducial Marker under the condition of same movement of the motion phantom. Second, According to the respiratory alteration, when being showed 1.13 in the baseline shift 1.8 mm and 1.27 in the baseline shift 3.3 mm for acryl. when being showed 1.01 in 1 sec of period and 1.045 in 2.5 sec of period for acryl. When being showed 0.86 in 0.7 times the standard of amplitude and 1.43 in 1.7 times the standard of amplitude for acryl. when being showed 1.18 in the baseline shift 1.8 mm and 1.34 in the baseline shift 3.3 mm for Fiducial Marker. when being showed 1.0 in 1 sec of period and 1.0 in 2.5 sec of period for Fiducial Marker. When being showed 0.99 in 0.7 times the standard of amplitude and 1.66 in 1.7 times the standard of amplitude for Fiducial Marker. Conclusion: The effect of image size of CBCT was 20% in the case of Fiducial marker. The impact of changes in breathing pattern was minimum 13% - maximum 43% for Arcyl, min. 18% - max. 66% for Fiducial marker. This difference makes serious uncertainty. So, Must be stabilized breathing of patient before acquiring CBCT. also must be monitored breathing of patient in the middle of acquire. If you observe considerable change of breathing when acquiring CBCT. After Image Guided, must be need to check treatment site using fluoroscopy. If a change is too big, re-acquiring CBCT.

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Clinical Usefulness of Contrast Echocardiography: The Dose Effect for Left Ventricle Visualization in Dogs (심초음파의 조영제의 임상적 유용성: 개에서 좌심영상화에 대한 조영제 용량의 영향)

  • Shin, Chang-ho;Hwang, Tae-sung;Yoon, Young-min;Jung, Dong-in;Yeon, Seong-chan;Lee, Hee-chun
    • Journal of Veterinary Clinics
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    • v.32 no.6
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    • pp.486-490
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    • 2015
  • Two-demensional echocardiography is routinely used for evaluation of cardiac function. Visualization of the endocardial border is essential for the assessment of global and regional left ventricular with cardiac disease. SonoVue$^{TM}$ is a microbubble contrast agent that consists of sulfur hexafluoride-filled microbubbles in a phospholipid shell. There were many studies about contrast echocardiographic examination using SonoVue$^{TM}$ contrast agent, and various doses of SonoVue$^{TM}$ were used. To our knowledge, in published veterinary medicine, there was not reported for diagnostic efficient dose of SonoVue$^{TM}$ to evaluate contrast enhanced left ventricular endocardial border delineation (LVEBD). The purpose of this study is to compare the visualization time of LVEBD and find efficient dose of SonoVue$^{TM}$ for using various doses in dogs. Ten healthy Beagles were recruited to the study. Three different doses (0.03 ml/kg, 0.05 ml/kg and 0.1 ml/kg) of SonoVue$^{TM}$ were injected. Endocardial segments were assigned based on previously established methodology, where by the four-chamber views of the LV were divided into 6 segments. In this study, Contrast enhancement of the LVEBD after each injection was evaluated visually at the time point of overall contrast enhancement (Segmental scoring 5+) in the LV by three investigators in a blind manner. Statistical analysis was performed with SPSS version 14.0. All data were analyzed using one-way ANOVA, the multiple comparison Scheffe test. When data for the three offsite readers were combined, mean durations of useful contrast were $3.54({\pm}2.14)$, $6.15({\pm}2.61)$, and $24.39({\pm}11.10)$ seconds for the 0.03 ml/kg, 0.05 ml/kg, and 0.1 ml/kg SonoVue$^{TM}$ doses, respectively. After injection of contrast agent, there were no significant change in side effects such as urticaria, angioedema, hypersensitivity reactions, and digestive system disorders. This study suggests that efficient dose of SonoVue$^{TM}$ contrast agent for improvement of the left ventricle visualization is 0.1 ml/kg. The duration of useful enhancement of LVEBD and the reproducibility were also the highest at the 0.1 ml/kg dosage.