• 제목/요약/키워드: High Resolution Sensor

검색결과 620건 처리시간 0.027초

Atmospheric Correction Problems with Multi-Temporal High Spatial Resolution Images from Different Satellite Sensors

  • Lee, Hwa-Seon;Lee, Kyu-Sung
    • 대한원격탐사학회지
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    • 제31권4호
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    • pp.321-330
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    • 2015
  • Atmospheric correction is an essential part in time-series analysis on biophysical parameters of surface features. In this study, we tried to examine possible problems in atmospheric correction of multitemporal High Spatial Resolution (HSR) images obtained from two different sensor systems. Three KOMPSAT-2 and two IKONOS-2 multispectral images were used. Three atmospheric correction methods were applied to derive surface reflectance: (1) Radiative Transfer (RT) - based absolute atmospheric correction method, (2) the Dark Object Subtraction (DOS) method, and (3) the Cosine Of the Uun zeniTh angle (COST) method. Atmospheric correction results were evaluated by comparing spectral reflectance values extracted from invariant targets and vegetation cover types. In overall, multi-temporal reflectance from five images obtained from January to December did not show consistent pattern in invariant targets and did not follow a typical profile of vegetation growth in forests and rice field. The multi-temporal reflectance values were different by sensor type and atmospheric correction methods. The inconsistent atmospheric correction results from these multi-temporal HSR images may be explained by several factors including unstable radiometric calibration coefficients for each sensor and wide range of sun and sensor geometry with the off-nadir viewing HSR images.

압전소자에 의한 미세이송시스템의 개발에 관한 연구 (Development of Piezo-Eloectric Micro-Depth Control System)

  • 김동식
    • 한국공작기계학회:학술대회논문집
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    • 한국공작기계학회 1995년도 춘계학술대회 논문집
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    • pp.40-62
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    • 1995
  • A micro positioning system using piezoelectric actuators have very wide application region such as ultra-precision machine tool optical device measurement system. In order to keep a high precision displacement resolution it to useful to take a position sensor and feedback of the error. From the practical point of view high-resolution displacement sensor systems are very expensive and it is difficult to make such a sensitive sensor work properly in a poor operational environment of industry. In this study a piezo-electric micro-depth control system which does not require position sensor but piezoelectric voltage feedback has been developed. It is driven by hysteresis-considering reference input voltage calculated in advance and actuator/sensor characteristics of piezoelectric materials. From the result of experiments a fast and stable response of micro-depth control system has been achieved and an efficient technique to control the piezoelectric actuator suggested.

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고해상도 위성영상의 센서모형과 방법 비교 (Comparison Among Sensor Modeling Methods in High-Resolution Satellite Imagery)

  • 김의명;이석군
    • 대한토목학회논문집
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    • 제26권6D호
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    • pp.1025-1032
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    • 2006
  • 고해상도 위성의 센서모형화는 도면화와 지형공간정보(Geo-spatial Information System)의 응용을 위해서는 필수적인 단계이다. 영상과 대상물과의 기하학적인 관계를 규정하는 센서모형은 크게 엄밀(rigorous)센서모형화와 간략(approximate)센서모형화의 두 가지로 나눌 수 있다. 엄밀센서모형화는 위성의 실제적인 촬영기하를 고려한 것으로 센서의 내외부적인 특성을 알고 있어야 하는 반면에 간략센서모형화 방법은 영상취득기하의 종합적인 이해나 센서의 내외부적인 특성정보를 필요로 하지 않기 때문에 사진측량 커뮤니티에서 많은 관심이 증대되고 있다. 본 연구에서는 고해상도 위성영상의 3차원 위치결정에 이용되고 있는 엄밀센서모형과 다양한 간략센서모형에 대해 비교연구를 수행하였으며 위성영상의 이용목적에 따른 적합한 모형화 방법을 제안하였다. IKONOS 위성영상을 이용한 사례연구를 통하여 엄밀센서모형과 간략센서모형에 대한 비교연구를 수행하였으며, 수집 가능한 지상기준점에 따른 위치정확도를 평가하였다. 간략센서모형화 방법 중에서 편의보정된 다항식비례모형(bias compensated RFM)이 가장 우수하였으며 개량평행투영모형(modified parallel projection)과 평행-중심투영모형(parallel-perspective model)은 적은 수의 기준점을 이용하여 센서모형화가 가능하였다. 또한 간략센서모형화 방법 중 부등각사상변환(affine transformation)은 고해상도 위성의 수평위치결정과 영상간의 등록에 활용가능하다.

초정밀 광학식 변위 측정을 위한 센서 구호 밀 신호 처리 시스템 (Sensor Structure and Signal Processing System for Precision Optical Displacement Measurement)

  • 오세백;김경찬;김수현;곽윤근
    • 한국정밀공학회지
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    • 제18권8호
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    • pp.40-47
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    • 2001
  • Optical measurement methods make it possible to detect object displacements with high resolution and noncontact measurements. Also, they are very robust against EMI noises and have long operation range. An optical triangulation sensor is one of widely used displacement measurement sensors for its sub-micron resolution, fast response, simple structure, and low cost. However. there are several errors caused by inclinations of a surface. speckle effects, power fluctuations of light sources, and noises of detectors. In this paper, in order to minimize error effects, we performed error analysis and proposed a new structure. Then, we setup a new modeling method and verify it through simulations and experiments. Based on the new model. we propose a new sensor structure and establish design criteria. Finally, we design a signal processing system to overcome a resolution-limited problem of light detectors. The resolution of the proposed system is 0.2${\mu}{\textrm}{m}$ in 5mm operating range.

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마이크로 머시닝으로 제작한 기계적 가이드를 갖는 정전용량 선형 인코더 (Micro-Machined Capacitive Linear Encoder with a Mechanical Guide)

  • 강대실;문원규
    • 센서학회지
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    • 제21권6호
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    • pp.440-445
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    • 2012
  • Contact-type Linear Encoder-like Capacitive Displacement Sensor (CLECDiS) is a novel displacement sensor which has wide measurable range with high resolution. The sensor, however, is very sensitive to relative rotational alignment between stator and mover of the sensor as well as its displacement. In addition to, there can be some disturbances in the relative rotational alignment, so some noises occur in the sensor's output signal by the disturbances. This negative effect of the high sensitivity may become larger as increasing sensitivity. Therefore, this negative effect of the high sensitivity has to be compensated and reduced to achieve nanometer resolution of the sensor. In this study, a new type capacitive linear encoder with a mechanical guide is presented to reduce the relative rotational alignment problem. The presented method is not only to reduce the alignment problem, but also to assemble the sensor to the stage conveniently. The method is based on a new type CLECDiS that has mechanical guide autonomously. In the presented sensor, when the device is fabricated by micro-machining, the guide-rail is also fabricated on the surface of the sensor. By the direct fabrication of the guide-rail with high precision micro-machining, errors of the guide-rail can be reduced significantly. In addition, a manual yaw alignment is not required to obtain large magnitude of the output signal after the assembly of the sensor and the stage. The sensor movement is going to follow the guide-rail automatically. The prototype sensor was fabricated using the presented method, and we verify the feasibility experimentally.

Conceptual design and preliminary characterization of serial array system of high-resolution MEMS accelerometers with embedded optical detection

  • Perez, Maximilian;Shkel, Andrei
    • Smart Structures and Systems
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    • 제1권1호
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    • pp.63-82
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    • 2005
  • This paper introduces a technology for robust and low maintenance cost sensor network capable to detect accelerations below a micro-g in a wide frequency bandwidth (above 1,000 Hz). Sensor networks with such performance are critical for navigation, seismology, acoustic sensing, and for the health monitoring of civil structures. The approach is based on the fabrication of an array of high sensitivity accelerometers, each utilizing Fabry-Perot cavity with wavelength-dependent reflectivity to allow embedded optical detection and serialization. The unique feature of the approach is that no local power source is required for each individual sensor. Instead one global light source is used, providing an input optical signal which propagates through an optical fiber network from sensor-to-sensor. The information from each sensor is embedded onto the transmitted light as an intrinsic wavelength division multiplexed signal. This optical "rainbow" of data is then assessed providing real-time sensing information from each sensor node in the network. This paper introduces the Fabry-Perot based accelerometer and examines its critical features, including the effects of imperfections and resolution estimates. It then presents serialization techniques for the creation of systems of arrayed sensors and examines the effects of serialization on sensor response. Finally, a fabrication process is proposed to create test structures for the critical components of the device, which are dynamically characterized.

간략모형식의 에피폴라 기하 생성 및 분석 (Epipolar Geometry of Alternative Sensor Models for High-Resolution Satellite Imagery)

  • 정원조;김의명;유복모;유환희
    • 한국측량학회:학술대회논문집
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    • 한국측량학회 2004년도 추계학술발표회 논문집
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    • pp.179-184
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    • 2004
  • High-resolution satellite imagery are used in various application field such as generation of DEM, orthophto, and three dimensional city model. To define the relation between image and object space, sensor modelling and generation of the epipolar image is essential processes. As the header information or physical sensor model becomes unavailable for the end users due to the national security or commercial purpose, generation of epipolar images without these information becomes one of important processes. In this study, epipolar geometry is generated and analysed by applying two generalized sensor models; parallel and parallel-perspective model Epipolar equation of the parallel model has linear property which is relatively simple; Epipolar geometry of the parallel-perspective model is non-linear. This linear property enable us to generate epipolar image efficiently.

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스마트 NUX용 고해상도 광각렌즈모듈 및 영상왜곡보정 설계 (Design of High-resolution Wide-angle Lenz Module, and Image Distortion Compensation for Smart NUX)

  • 이재곤;강민구;김원규;이경택
    • 한국전자통신학회논문지
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    • 제7권5호
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    • pp.999-1004
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    • 2012
  • 본 논문에서는 광각렌즈기반의 WDR(Wide Dynamic Range)인 2M(Mega)급 CMOS 이미지 센서를 통해 왜곡영상을 보정하는 카메라 모듈의 설계와 렌즈영상의 성능을 분석한다. 또한, 설계한 광각렌즈모듈의 광각렌즈($176^{\circ}$) 특성으로 인한 왜곡영상의 보정된 결과를 분석하였으며, 카메라 모듈의 스마트 NUX(Natural User eXprience) 활용방안을 제안하였다.

Generalized IHS-Based Satellite Imagery Fusion Using Spectral Response Functions

  • Kim, Yong-Hyun;Eo, Yang-Dam;Kim, Youn-Soo;Kim, Yong-Il
    • ETRI Journal
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    • 제33권4호
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    • pp.497-505
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    • 2011
  • Image fusion is a technical method to integrate the spatial details of the high-resolution panchromatic (HRP) image and the spectral information of low-resolution multispectral (LRM) images to produce high-resolution multispectral images. The most important point in image fusion is enhancing the spatial details of the HRP image and simultaneously maintaining the spectral information of the LRM images. This implies that the physical characteristics of a satellite sensor should be considered in the fusion process. Also, to fuse massive satellite images, the fusion method should have low computation costs. In this paper, we propose a fast and efficient satellite image fusion method. The proposed method uses the spectral response functions of a satellite sensor; thus, it rationally reflects the physical characteristics of the satellite sensor to the fused image. As a result, the proposed method provides high-quality fused images in terms of spectral and spatial evaluations. The experimental results of IKONOS images indicate that the proposed method outperforms the intensity-hue-saturation and wavelet-based methods.

콜리메이터와 파면측정기를 이용한 고해상도 전자광학 탑재체의 제2 반사경 정렬법 (Alignment method of the secondary mirror of high resolution electro-optical payload using collimator and wave front sensor)

  • 장홍술;정대준;육영춘;김성희;고대호;이승훈
    • 항공우주기술
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    • 제10권2호
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    • pp.101-104
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    • 2011
  • 고해상도 전자광학 탑재체의 주 반사경과 제2 반사경 간 조립 정렬은 전체 카메라 시스템의 조립 단계 중 가장 중요한 단계이다. 제 2 반사경의 정렬에는 파면센서와 콜리메이터를 사용하였는데 간섭계 보다는 크기가 작고 다루기가 편하기 때문이다. 본 논문에서는 고해상도 전자광학 탑재체의 제 2 반사경에 대한 정렬 방법과 절차에 대해 소개 하고자 한다.