• 제목/요약/키워드: Component Resolution

검색결과 403건 처리시간 0.027초

SPH SIMULATIONS OF BARRED GALAXIES: DYNAMICAL EVOLUTION OF GASEOUS DISK

  • ANN HONG BAE;LEE HVUNG MOK
    • 천문학회지
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    • 제33권1호
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    • pp.1-17
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    • 2000
  • We have performed extensive simulations of response of gaseous disk in barred galaxies using SPH method. The gravitational potential is assumed to be generated by disk, bulge, halo, and bar. The mass of gaseous disk in SPH simulation is assumed to be negligible compared to the stellar and dark mass component, and the gravitational potential generated by other components is fixed in time. The self-gravity of the gas is not considered in most simulations, but we have made a small set of simulations including the self-gravity of the gas. Non-circular component of velocity generated by the rotating, non-axisymmetric potential causes many interesting features. In most cases, there is a strong tendency of concentration of gas toward the central parts of the galaxy. The morphology of the gas becomes quite complex, but the general behavior can be understood in terms of simple linear approximations: the locations and number of Lindblad resonances play critical role in determining the general distribution of the gas. We present our results in the form of 'atlas' of artificial galaxies. We also make a brief comment on the observational implications of our calculations. Since the gaseous component show interesting features while the stellar component behaves more smoothly, high resolution mapping using molecular emission line for barred galaxies would be desirable.

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천리안위성 2A호 위성영상을 위한 영상융합기법의 비교평가 (A Comparison of Pan-sharpening Algorithms for GK-2A Satellite Imagery)

  • 이수봉;최재완
    • 한국측량학회지
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    • 제40권4호
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    • pp.275-292
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    • 2022
  • 기후변화 감시에 위성 자료 활용을 위해 GCOS (Global Climate Observing System)는 시공간 해상도, 시간 변화에 따른 안정성, 불확실도 등의 요구사항을 제시하고 있다. 천리안위성 2A호의 경우, 센서의 한계로 인해 산출물들이 공간해상도 조건에 충족하지 못하는 경우가 많다. 따라서 본 연구에서는 영상융합 기법들을 천리안위성 2A호 영상에 적용하여 산출물 생성 시 활용될 수 있는 최적의 기법을 찾고자 한다. 이를 위해 CS (Component Substitution), MRA (Multiresolution Analysis), VO (Variational Optimization), DL (Deep Learning)에 포함되는 총 6가지 영상융합 기법을 활용하였다. DL의 경우 합성적(Synthesis) 특성 기반 방법을 훈련자료 구축에 사용하였다. 합성적 특성 기반 방법의 과정은 PAN (Panchromatic)과 MS (Multispectral) 영상의 공간해상도 차이만큼 두 영상의 해상도를 낮춰 융합 영상을 생성한 후 원본 MS 영상과 비교한다. 합성적 특성 기반 방법은 공간해상도를 저하시킨 PAN 영상과 MS 영상 간 기하 특성이 같아야 사용자가 원하는 수준의 융합 영상을 제작할 수 있다. 하지만, 훈련자료 구축 시 비유사성이 존재하기에 이를 최소화하는 방법으로 무작위 비율을 활용한 PSGAN 모델(PSGAN_RD)을 추가로 활용하였다. 융합 영상의 검증은 일관성(consistency) 및 합성적 특성 기반 정성적, 정량적 분석을 수행하였다. 분석 결과, 영상융합 알고리즘 중 GSA가 공간 유사도를 나타내는 평가지수에서 가장 높은 수치를 보였으며, 분광 유사도를 나타내는 지수들은 PSGAN_RD 모델의 정확도가 가장 높았다. 융합 영상의 공간 및 분광 특성을 모두 고려한다면 PSGAN_RD 모델이 천리안위성 2A호 산출물 제작에 가장 최적일 것으로 판단하였다.

금속유기분해법으로 제조한 니켈 망가나이트 박막의 구조적 특성 (Structural Properties of Nickel Manganite Thin Films Fabricated by Metal Organic Decomposition)

  • 이귀웅;전창준;정영훈;윤지선;남중희;조정호;백종후;윤종원
    • 한국전기전자재료학회논문지
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    • 제27권4호
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    • pp.226-231
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    • 2014
  • Thin thermistor films of solutions with nickel and manganese oxides were prepared by metal-organic decomposition (MOD). The structural properties of the thin films were investigated as a function of annealing temperature. Field emission scanning electron microscope (FE-SEM) results indicated that the thin films had a thin thickness, smooth and dense surface. The crystallization temperature of $414.9^{\circ}C$ was confirmed from thermogavimetric-differential thermal analysis (TG-DTA) curve. A single phase of cubic spinel structure was obtained for the thin film annealed from $700^{\circ}C$ to $800^{\circ}C$, which was confirmed from the X-ray diffraction (XRD). From the selected area electron diffraction (SAED) in high resolution transmission electron microscope (HRTEM), the nano grains (2~3 nm) of spinel phase with (311) and (222) planes were detected for the thin film annealed at $500^{\circ}C$, which could be applicable to read-out integrated circuit (ROIC) substrate of the uncooled microbolometer with low processing temperature.

후집속 방법을 이용한 에어로졸 TOF 질량분석기의 질량분해능 향상 연구 (Study on increasing the mass resolution in aerosol TOF mass spectrometer by using post focusing method)

  • 김덕현;양기호;차형기;김도훈;이상천
    • 분석과학
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    • 제18권6호
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    • pp.483-490
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    • 2005
  • TOF 비행시간을 이용한 에어로졸 질량분석기에서 질량분석기의 분해능은 발생하는 이온의 초기에너지와 이온이 움직이는 진행방향에 따라 달라진다. 고출력 펄스형 레이저에 의하여 에어로졸로부터 용발되어 이온화된 원소들은 다른 속도로 사방으로 퍼져 나가게 되어 분해능 저하를 초래하는데 이를 방지하기 위해서 1차 가속된 이온들을 서로 다른 에너지로 후집속하여 같은 시간에 이온센서에 도달하도록 하는 장치에 대하여 연구를 수행하였다. 후집속 전위를 $90^{\circ}$ 방향으로 진행하는 이온을 중심으로 서로 다른 방향으로 걸어 줌으로써 TOF 영역을 지나 센서로 도입되는 이온의 도착 시간이 크게 개선되었음을 알 수 있었으며, 이를 실증하기 위하여 레이저 유도 이온을 만들고 후집속 장치를 구성하여 최적의 시간지연시간 및 전압 조건을 도출하여 그 성능을 증가시켰다.

하이퍼볼릭 메타물질: 깊은 서브파장 나노포토닉스를 위한 신개념 플랫폼

  • 노준석
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2015년도 제49회 하계 정기학술대회 초록집
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    • pp.78-78
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    • 2015
  • Metamaterials, artificially structured nanomaterials, have enabled unprecedented phenomena such as invisibility cloaking and negative refraction. Especially, hyperbolic metamaterials also known as indefinite metamaterials have unique dispersion relation where the principal components of its permittivity tensors are not all with the same signs and magnitudes. Such extraordinary dispersion relation results in hyperbolic dispersion relations which lead to a number of interesting phenomena, such as super-resolution effect which transfers evanescent waves to propagating waves at its interface with normal materials and, the propagation of electromagnetic waves with very large wavevectors comparing they are evanescent waves and thus decay quickly in natural materials. In this abstract, I will focus discussing our efforts in achieving the unique optical property overcoming diffraction limit to achieve several extraordinary metamaterials and metadevices demonstration. First, I will present super-resolution imaging device called "hyperlens", which is the first experimental demonstration of near- to far-field imaging at visible light with resolution beyond the diffraction limit in two lateral dimensions. Second, I will show another unique application of metamaterials for miniaturizing optical cavity, a key component to make lasers, into the nanoscale for the first time. It shows the cavity array which successfully captured light in 20nm dimension and show very high figure of merit experimentally. Last, I will discuss the future direction of the hyperbolic metamaterial and outlook for the practical applications. I believe our efforts in sub-wavelength metamaterials having such extraordinary optical properties will lead to further advanced nanophotonics and nanooptics research.

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Image Fusion Methods for Multispectral and Panchromatic Images of Pleiades and KOMPSAT 3 Satellites

  • Kim, Yeji;Choi, Jaewan;Kim, Yongil
    • 한국측량학회지
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    • 제36권5호
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    • pp.413-422
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    • 2018
  • Many applications using satellite data from high-resolution multispectral sensors require an image fusion step, known as pansharpening, before processing and analyzing the multispectral images when spatial fidelity is crucial. Image fusion methods are to improve images with higher spatial and spectral resolutions by reducing spectral distortion, which occurs on image fusion processing. The image fusion methods can be classified into MRA (Multi-Resolution Analysis) and CSA (Component Substitution Analysis) approaches. To suggest the efficient image fusion method for Pleiades and KOMPSAT (Korea Multi-Purpose Satellite) 3 satellites, this study will evaluate image fusion methods for multispectral and panchromatic images. HPF (High-Pass Filtering), SFIM (Smoothing Filter-based Intensity Modulation), GS (Gram Schmidt), and GSA (Adoptive GS) were selected for MRA and CSA based image fusion methods and applied on multispectral and panchromatic images. Their performances were evaluated using visual and quality index analysis. HPF and SFIM fusion results presented low performance of spatial details. GS and GSA fusion results had enhanced spatial information closer to panchromatic images, but GS produced more spectral distortions on urban structures. This study presented that GSA was effective to improve spatial resolution of multispectral images from Pleiades 1A and KOMPSAT 3.

풍력 발전 예보 정확도 향상을 위한 국지 기상장 수치모의 개선 방안 연구 (A Study on Effect of Improvement Plan for Wind Energy Forecasting)

  • 정지아;이화운;전원배;김동혁;김현구;강용혁
    • 한국대기환경학회지
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    • 제31권1호
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    • pp.1-14
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    • 2015
  • This study investigates the impact of enhanced regional meteorological fields on improvement of wind energy forecasting accuracy in the southwestern coast of the Korean Peninsula. To clarify the effect of detailed surface boundary data and application of analysis nudging technique on simulated meteorological fields, several WRF simulations were carried out. Case_LT, which is a simulation with high resolution terrain height and land use data, shows the most remarkable accuracy improvement along the shoreline mainly due to modified surface characteristics such as albedo, roughness length and thermal inertia. Case_RS with high resolution SST data shows accurate SST distributions compared to observation data, and they led to change in land and sea breeze circulation. Case_GN, grid nudging applied simulation, also shows changed temperature and wind fields. Especially, the application of grid nudging dominantly influences on the change of horizontal wind components in comparison with vertical wind component.

Merging of KOMPSAT-1 EOC Image and MODIS Images to Survey Reclaimed Land

  • Ahn, Ki-Won;Shin, Seok-Hyo;Kim, Sang-Cheol;Seo, Doo-Chun
    • Korean Journal of Geomatics
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    • 제3권1호
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    • pp.59-65
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    • 2003
  • The merging of different scales or multi-sensor image data is becoming a widely used procedure of the complementary nature of various data sets. Ideally, the merging method should not distort the characteristics of the high-spatial and high-spectral resolution data used. To present an effective merging method for survey of reclaimed land using the high-resolution (6.6 m) Electro-Optical Camera (EOC) panchromatic image of the first Korea Multi-Purpose Satellite 1 (KOMPSA T-l) and the multispectral Moderate Resolution Imaging Spectroradiometer (MODIS) image data, this paper compares the results of Intensity Hue Saturation (IHS) and Principal Component Analysis (PCA) methods. The comparison is made by statistical and visual evaluation of three-color combination images of IHS and PCA results based on spatial and spectral characteristics. The use of MODIS bands 1, 2, and 3 with a contrast stretched EOC panchromatic image as a substitute for intensity was found to be particularly effective in this study.

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APPLICATION OF HIGH RESOLUTION SATELLITE IMAGERY ON X3D-BASED SEMANTIC WEB USING SMART GRAPHICS

  • Kim, Hak-Hoon;Lee, Kiwon
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2006년도 Proceedings of ISRS 2006 PORSEC Volume II
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    • pp.586-589
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    • 2006
  • High resolution satellite imagery is regarded as one of the important data sets to engineering application, as well as conventional scientific application. However, despite this general view, there are a few target applications using this information. In this study, the possibility for the future wide uses in associated with smart graphics of this information is investigated. The concept of smart graphics can be termed intelligent graphics with XML-based structure and knowledge related to semantic web, which is a useful component for the data dissemination framework model in a multi-layered web-based application. In the first step in this study, high resolution imagery is transformed to GML (Geographic Markup Language)-based structure with attribute schema and geo-references. In the second, this information is linked with GIS data sets, and this fused data set is represented in the X3D (eXtensible 3D), ISO-based web 3D graphic standard, with styling attributes, in the next stop. The main advantages of this approach using GML and X3D are the flourished representations of a source data according to user/clients’ needs and structured 3D visualization linked with other XML-based application. As for the demonstration of this scheme, 3D urban modelling case with actual data sets is presented.

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Earthquake time-frequency analysis using a new compatible wavelet function family

  • Moghaddam, Amir Bazrafshan;Bagheripour, Mohammad H.
    • Earthquakes and Structures
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    • 제3권6호
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    • pp.839-852
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    • 2012
  • Earthquake records are often analyzed in various earthquake engineering problems, making time-frequency analysis for such records of primary concern. The best tool for such analysis appears to be based on wavelet functions; selection of which is not an easy task and is commonly carried through trial and error process. Furthermore, often a particular wavelet is adopted for analysis of various earthquakes irrespective of record's prime characteristics, e.g. wave's magnitude. A wavelet constructed based on records' characteristics may yield a more accurate solution and more efficient solution procedure in time-frequency analysis. In this study, a low-pass reconstruction filter is obtained for each earthquake record based on multi-resolution decomposition technique; the filter is then assigned to be the normalized version of the last approximation component with respect to its magnitude. The scaling and wavelet functions are computed using two-scale relations. The calculated wavelets are highly efficient in decomposing the original records as compared to other commonly used wavelets such as Daubechies2 wavelet. The method is further advantageous since it enables one to decompose the original record in such a way that a clear time-frequency resolution is obtained.