http://chineseinput.net/에서 pinyin(병음)방식으로 중국어를 변환할 수 있습니다.
변환된 중국어를 복사하여 사용하시면 됩니다.
非地形 寫眞測量에서 多重露出地點의 Network에 관한 硏究
이진덕 金烏工科大學校 1991 論文集 Vol.12 No.-
In the design of a multi-station close-range photogrammetric network, a number of important problems, such as multiple exposure-network geometries and complex imaging geometries must be involved. This paper illustrates three dimensional coordinate standard errors of object points resulted from bundle adjustments derived from multi-station convergent photographs, which were taken on the circular exposure-network. In convergent case, the characteristics of standard errors according to the angle of convergence and the number of photos were suggested and also, some ideas for improving accuracy in muti-station photogrammetry were suggested through standard error comparisons between convergent case and normal case.
그래브 준설선에 의한 해상준설측량 및 시공관리시스템의 개발
이진덕(Lee, Jin Duk),이재빈(Lee, Jae Bin),김현호(Kim, Hyun Ho) 대한공간정보학회 2013 대한공간정보학회지 Vol.21 No.4
준설성과의 과학적 평가를 위해서는 준설공정을 실시간으로 모니터링하면서 작업을 관리하고 평가할 수 있는 시스템의 구축이 필요하다. 비콘DGPS를 이용하여 그래브 해상준설선의 유도와 준설측량 및 시공을 위한 실시간 준설시공관리시스템을 구축하였다. GPS에 의한 선박위치 측정, GPS/자이로스코프 통합장비에 의한 선박방향 측정, 그래브 위치측정, 준설심도측정 및 보정 등의 기능을 구현하였으며, 또한 구축된 준설공정관리시스템을 제어·운용하기 위한 프로그램을 개발하였다. 본 연구에서 구축된 시스템은 준설선을 정확한 위치로 유도하여 계획대로 준설을 수행할 수 있었으며 항만준설공사에의 적용성과를 통하여 그 효용성을 평가할 수 있었다. In order to evaluate dredging results scientifically the system which can manage and estimate working process by monitoring dredging process in real-time needs to be constructed. We constructed real-time dredging management system for guidance of a dredging vessel and for survey of dredging construction. This system was designed to have functions of dredger location by GPS, ship direction measurement by GPS/Gyroscope combination, Grab position measurement, dredging depth measurement and correction. In addition, we developed the programs for controlling and operating the constructed system. The system could induce the vessel to accurate position and conduct dredging according to plan and the effectiveness of the system was evaluated through the results of application to actual dredging construction site.
항공 초분광 영상으로부터 연안지역의 SAM 토지피복분류
이진덕,방건준,김현호 한국지리정보학회 2018 한국지리정보학회지 Vol.21 No.1
Image data collected by an airborne hyperspectral camera system have a great usability in coastal line mapping, detection of facilities composed of specific materials, detailed land use analysis, change monitoring and so forh in a complex coastal area because the system provides almost complete spectral and spatial information for each image pixel of tens to hundreds of spectral bands. A few approaches after classifying by a few approaches based on SAM(Spectral Angle Mapper) supervised classification were applied for extracting optimal land cover information from hyperspectral images acquired by CASI-1500 airborne hyperspectral camera on the object of a coastal area which includes both land and sea water areas. We applied three different approaches, that is to say firstly the classification approach of combined land and sea areas, secondly the reclassification approach after decompostion of land and sea areas from classification result of combined land and sea areas, and thirdly the land area-only classification approach using atmospheric correction images and compared classification results and accuracies. Land cover classification was conducted respectively by selecting not only four band images with the same wavelength range as IKONOS, QuickBird, KOMPSAT and GeoEye satelllite images but also eight band images with the same wavelength range as WorldView-2 from 48 band hyperspectral images and then compared with the classification result conducted with all of 48 band images. As a result, the reclassification approach after decompostion of land and sea areas from classification result of combined land and sea areas is more effective than classification approach of combined land and sea areas. It is showed the bigger the number of bands, the higher accuracy and reliability in the reclassification approach referred above. The results of higher spectral resolution showed asphalt or concrete roads was able to be classified more accurately. 항공기 탑재용 초분광 카메라시스템에 의해 얻어진 영상데이터는 수십 내지 수백의 연속된 초분광 해상도로부터 동시에 각 화소별 완전한 분광 및 공간정보를 포함하고 있으므로 복잡한 연안지역에 대한 해안선 매핑, 특정재료로 이루어진 시설물 탐지, 연안지역의 토지이용 상세분석 및 변화 모니터링 등에 그 활용잠재성이 대단히 크다. 육역과 해역을 포함하는 연안지역을 대상으로 항공기 탑재 초분광센서인 CASI-1500으로부터 취득된 초분광 항공영상을 이용하여 분광각매퍼 (SAM;Spectral Angle Mapper) 감독분류방법으로 토지피복분류를 행하였다. 첫번째, 대기보정영상에 대하여 육역과 해역이 포함된 지역에 대한 통합분류, 두번째, 육·해역의 통합분류결과로부터 육역과 해역의 분리 후 재분류, 그리고 세번째로 육역만을 대상으로 한 분류를 각각 수행하여 결과 및 정확도를 비교하였다. 또한 초분광 항공영상 48개 밴드로부터 IKONOS, QuickBird, KOMPSAT, GeoEye 등 고해상도 위성영상과 동일한 파장대의 4개 밴드영상, 그리고 WorldView-2 위성영상과 동일한 파장대의 8개 밴드영상만을 선택하여 각각 토지피복분류를 수행하고 초분광 48개 밴드영상으로 분류한 결과와 비교하였다. 연구결과, 연안지역에 대한 육역과 해역 통합영상으로 분류하는 것에 비해 육역과 해역 통합영상으로 분류한 후 육역과 해역을 분리하여 재분류를 수행하는 것이 효과적인 것으로 나타났다. 육역의 분류 결과에서 분광해상도가 높은 영상의 결과일수록 아스팔트나 콘크리트 도로가 더 정확하게 분류되었다.
이진,하광태,조경덕,Lee Jin,Ha Kwang-Tae,Zoh Kyung-Duk 한국환경보건학회 2006 한국환경보건학회지 Vol.32 No.2
The objectives of this study were to investigate the formation of trihalomethanes(THMs) and to compare the concentration level of THMs of swimming pools water by different disinfection methods such as chlorine, ozone-chlorine, and salt brine electrolysis generator (SBEG). The concentration of chloroform was the highest in the chlorine system, and the SBEG was the highest in the production of bromodichloromethane (BDCM), dibromochloromethane (DBCM) and bromoform. The average concentration of total trihalomethanes (TTHMs) in three disinfection systems were $64.5{\pm}27.4mg/l(SBEG),\;43.8{\pm}22.3mg/l(chlorine)$, and $30.6{\pm}16.1mg/l(ozone-chlorine)$, respectively. In chlorine and ozone-chlorine disinfection system, chloroform concentration was highest, followed by BDCN, then DBCM. In the SBEG, TTHMs was composed of 42% of chloroform, 28.9% of bromoform, 15.1% of BDCM and 14% of DBCM, respectively. The strongest correlation was obtained in the levels of chloroform and TTHMs in chlorine, and ozone-chlorine disinfection systems from both indoor and outdoor swimming pools ($r=0.989{\sim}0.999$, p<0.01). In the SBEG, the levels of BDCM and TTHMs showed a good correlation (r=0.913, p<0.01). In chlorine and ozone-chlorine disinfection systems at indoor swimming pools, pH, TOC and $KMnO_4$ consumption showed strong correlation with chloroform and TTHMs concentrations (p<0.01). In the SBEG, pH and TOC were also strongly correlated with chloroform (p<0.01). pH and TTHMs were correlated as well (p<0.05).