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The Analysis of Spectral characteristics of Water Quality Factors Uisng Airborne MSS Data

Airborne MSS 자료를 이용한 수질인자의 분광특성 분석

  • Published : 1998.11.01

Abstract

Airborne MSS data is regarded as a potentially effective data source for the measurement of water quality and for the environmental change of water bodies. In this study, we measured the radiance reflectance by using multi-spectral image of low resolution camera(LRC) which will be reached in the multi-purpose satellite(KOMPSAT) to use the data in analyzing water pollution. We also investigated the possibility of extraction of water quality factors in water bodies by using high resolution remote sensing data such as Airborne MSS. Especially, we tried to extract environmental factors related with eutrophication such as chlorophyll-a, suspended sediments and turbidity, and also tried to develop the process technique and the radiance feature of reflectance related with eutrophication. Although it was difficult to explicitly correlate Airborne MSS data with water quality factors due to the insufficient number of ground truth data. The results were summarized as follows: First, the spectrum of sun′s rays which reaches the surface of the earth was consistent with visible bands of 0.4㎛∼0.7㎛ and about 50% of total quantity of radiation could be found. The spectrum was reached highest at around 0.5㎛ of green spectral band in visible bands. Second, as a result of the radiance reflectance Chlorophyll-a represented high mainly around 0.52㎛ of green spectral band, and suspended sediments and turbidity represented high at 0.8㎛ and at 0.57㎛, respectively. Finally, as a result of the water quality analysis by using Airborne MSS, Chlorophyll-a could have a distribution image after carrying out ratio of B3 and B5 to B7. Band 7 was useful for making the distribution image of suspended sediments. When we carried out PCA, suspended sediments and turbidity had distributions at PC 1 and PC 4 which are similar to the ground data. Above results can be changed according to the change of season and time. Therefore, in order to analyze the environmental factors of water quality by using LRC data more exactly, we need to investigate the ground data and the radiance feature of reflectance of water bodies constantly. For further studies, we will constantly analyze the radiance feature of the surface of water in wafter bodies by measuring the on-the-spot radiance reflectance and using low resolution satellite image(SeaWiFS). We will also gather the data of water quality analysis in water bodies and analyze the pattern of water pollution.

Airborne MSS 자료는 수질오염을 효과적으로 감시하고 분석할 수 있는 자료이다. 본 연구에서는 다목적 실용위성(KOMPSAT)에 탑재될 저해상도카메라(LRC)의 다중분광 영상자료를 수질오염 분석에 활용할 목적으로 수질인자의 분광반사도를 측정하였으며, 고해상도 원격탐사 자료인 Airborne MSS 자료를 이용하여 수역에서의 수질인자 추출 가능성을 조사하였다. 특히 부영양화와 관련된 환경인자 추출을 시도하였다. 수질인자는 클로로필-a, 부유물질, 탁도 등을 선정하여 분광반사 특성 및 처리기법을 개발하였다. 그 결과는 다음과 같다. 첫째, 수면에 도달하는 태양광 스펙트럼은 가시광 영역인 0.4∼0.7㎛에서 전체 복사량의 50% 정도가 반사되며, 0.50㎛ 부근에서 가장 높다. 둘째, 클로로필-a는 녹색 파장대인 0.52㎛, 부유물질의 반사도는 0.8㎛, 탁도는 0.57㎛에서 높은 반사율을 보였다. 셋째, Airborne MSS자료를 이용하여 수질인자 분석결과, 클로로필-a는 Band 3과 Band 7을 비연산처리를 하여 분포도를 작성하였다. 부유물질은 Band 7에서 분포도를 작성할 수 있었으며, PCA를 수행하였을 때 PC 1에서 유용함을 알 수 있었다. 탁도는 PCA 분석시 PC 4에서 현장자료와 유사한 분포패턴을 나타내었다. 이상의 결과들은 계절적, 시간적 변화에 따라 파장대역이 달라질 수 있으므로, LRC 자료를 이용하여 보다 정확한 수질환경 인자를 분석하기 위해서는 현장실측 자료 및 수역의 분광반사 특성 등을 지속적으로 조사할 필요가 있다. 추후 본 연구에서는 저해상도 위성영상 및 현장 분광반사도 측정을 통한 수역의 분광반사 특성을 지속적으로 분석하고, 수역의 수질분석자료 확보 및 수질오염 유형을 분석 할 것이다.

Keywords

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