• 제목/요약/키워드: normalized difference vegetation index

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위성영상을 이용한 산불피해 이후 자연복원과 인공복원 방법에 따른 식생회복 모니터링 (Monitoring of Vegetation Recovery According to Natural and Artificial Restoration Methods After Forest Fire Damage Using Satellite Imagery)

  • 황영인;강원석;박기형;이경철;한상균;권형근
    • 현장농수산연구지
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    • 제24권3호
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    • pp.33-43
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    • 2022
  • This study was conducted to monitor the vegetation recovery in the areas damaged by the forest fires on the east coast that occurred in April 2000. The study site was a forest fire-damaged area in Samcheok-si, Gangwon-do, and 21 monitoring areas (12 natural restoration sites, 9 artificial restoration sites) were selected to analyze the vegetation recovery trend since 1998. The vegetation recovery trend was compared by calculating the values according to the year using the difference Normalized Burn Ratio (dNBR) and Normalized Difference Vegetation Index (NDVI) based on satellite images (Landsat TM/ETM+ and Sentinel-2A). As the result of this study, all 21 sites, vegetation was recovered, and both groups showed the greatest recovery in summer. In the case of the dNBR, the artificial restored sites showed higher values than the natural restored sites, and in the case of the NDVI, the natural restored sites were higher than the artificially restored sites in summer and autumn. However, the difference between the two groups of natural and artificial restoration sites was not significant. Therefore, the direction of forest restoration after forest fire damage can be effectively restored if properly implemented for the purpose of restoration of the target site.

Surface Emissivity Derived From Satellite Observations: Drought Index

  • Yoo, Jung-Moon;Yoo, Hye-Lim
    • 한국지구과학회지
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    • 제27권7호
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    • pp.787-803
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    • 2006
  • The drought index has been developed, based on a $8.6{\mu}m$ surface emissivity in the $8-12{\mu}m$ MODIS channels over the African Sahel region (10-20 N, 13 W-35 W) and the Seoul Metropolitan Area (SMA: 37.2-37.7 N, 126.6-127.2 E). The emissivity indicates the $SiO_2$ strength and can vary interannually by vegetation, water vapor, and soil moisture, as a potential indicator of drought conditions. In a well-vegetated region close to 10 N of the Sahel, the Normalized Difference Vegetation Index (NDVI) showed high sensitivity, while the emissivity did not. On the other hand, the NDVI experienced negligible variability in a poorly vegetated region near 20 N, while the emissivity reflected sensitively the effects of atmospheric water vapor and soil moisture conditions. Seasonal variations of the emissivity (0.94-0.97) have been examined over the SMA during the 2003-2004 period compared to NDVI (or Enhanced Vegetation Index; EVI). Here, the dryness was more severe in urban area with less vegetation than in suburban area; the two areas corresponded to the north and south of the Han river, respectively. The emissivity exhibiting a significant spatial correlation of ${\sim}0.8$ with the two indices can supplement their information.

Performance Assessment of Three Turfgrass Species, in Three Different Soil Types, and their Responses to Water Deficit in Reinforced Cells, Growing in the Urban Environment

  • Ow, L.F;Ghosh, S.;Chin, S.W.
    • Weed & Turfgrass Science
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    • 제4권4호
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    • pp.338-347
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    • 2015
  • Reinforcement cells are used to aid grass growth and taken together, this serves to extend greenery beyond the conventional spaces of lawns, tree pits, gardens, and parks, and is advantageous to urban cities since space for greening is often limited. Drought has variable effects on plant life and the resilience of turf to drought resistance also varies with species. Changes in photosynthetic ability were more pronounced for media rather than grass species. The media of sand without organic matter was found to be least suited for drought resistance. Normalized difference vegetation index (NDVI) and digital image analysis (DIA) data were generally in favour of Zoysia species as oppose to A. compressus. In A. compressus, selective traits such as, a more extensive root system and lower specific leaf area (SLA) were not an underlying factor that assisted this grass with enhanced drought resistance. Generally, WUE was found to be strongly related to plant characterises such as overall biomass, photosynthetic features as well as the lushness indexes, and specific leaf area. This study found a strong relationship between WUE and a suite of plant characteristics. These traits should serve as useful selection criteria for species with the ability to resist water stress.

BRDF 앙상블 모델을 이용한 고해상도 Sentinel-2 영상 보정 (High-Resolution Sentinel-2 Imagery Correction Using BRDF Ensemble Model)

  • 문현동;김보경;김경민;최수빈;조은이;안호용;류재현;최성원;조재일
    • 대한원격탐사학회지
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    • 제39권6_1호
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    • pp.1427-1435
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    • 2023
  • 농업의 새로운 패러다임인 디지털 농업에서는 원격탐사 기법을 활용하여 작물 생육을 지속적으로 감시하며 해당 정보를 신속하게 디지털화 하고 있다. 이를 위해 선택적 파장 반사도 변화를 기반으로 한 식생지수가 널리 활용되고 있다. 그러나 식생 표면의 분광 산란·반사는 이방성을 보이기 때문에 광원인 태양의 위치와 관측 방향에 따라 반사도가 달라진다. 이는 식생지수 값이 작물의 실제 상태를 정확하게 반영하지 못하고 왜곡될 수 있다. 본 연구에서는 이방성 반사 특성 보정을 위해 bidirectional reflectance distribution function (BRDF) 앙상블 모델을 고해상도 Sentinel-2 위성 영상에 적용하고, normalized difference vegetation index (NDVI)와 2-band enhanced vegetation index (EVI2)를 산출하였다. BRDF 보정에 따라 산림에서 Red와 near-infrared (NIR) 밴드의 반사도가 대체로 증가하고, 농촌마을 및 농경지에서는 감소했다. 식생지수는 BRDF 보정 후에 산림지역 내에서의 지형 구분이 뚜렷해지고 논은 수확 유무에 따른 공간적 차이가 상승했다. 이는 EVI2보다 NDVI에서 그 차이가 컸다. 이러한 결과는 앞으로의 고해상도 위성 영상에서의 BRDF 모델 개발과 개선에 기여할 것으로 기대된다.

Improvement of Vegetation Index Image Simulations by Applying Accumulated Temperature

  • Park, Jin Sue;Park, Wan Yong;Eo, Yang Dam
    • 한국측량학회지
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    • 제38권2호
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    • pp.97-107
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    • 2020
  • To analyze temporal and spatial changes in vegetation, it is necessary to determine the associated continuous distribution and conduct growth observations using time series data. For this purpose, the normalized difference vegetation index, which is calculated from optical images, is employed. However, acquiring images under cloud cover and rainfall conditions is challenging; therefore, time series data may often be unavailable. To address this issue, La et al. (2015) developed a multilinear simulation method to generate missing images on the target date using the obtained images. This method was applied to a small simulation area, and it employed a simple analysis of variables with lower constraints on the simulation conditions (where the environmental characteristics at the moment of image capture are considered as the variables). In contrast, the present study employs variables that reflect the growth characteristics of vegetation in a greater simulation area, and the results are compared with those of the existing simulation method. By applying the accumulated temperature, the average coefficient of determination (R2) and RMSE (Root Mean-Squared Error) increased and decreased by 0.0850 and 0.0249, respectively. Moreover, when data were unavailable for the same season, R2 and RMSE increased and decreased by 0.2421 and 0.1289, respectively.

Using Chlorophyll Fluorescence and Vegetation Indices to Predict the Timing of Nitrogen Demand in Pentas lanceolata

  • Wu, Chun-Wei;Lin, Kuan-Hung;Lee, Ming-Chih;Peng, Yung-Liang;Chou, Ting-Yi;Chang, Yu-Sen
    • 원예과학기술지
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    • 제33권6호
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    • pp.845-853
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    • 2015
  • The objective of this study was to predict the timing of nitrogen (N) demand through analyzing chlorophyll fluorescence (ChlF), soil-plant analysis development (SPAD), and normalized difference vegetation index (NDVI), which are positively correlated with foliar N concentration in star cluster (Pentas lanceolata). The plants were grown in potting soil under optimal conditions for 30 d, followed by weekly irrigation with five concentrations (0, 4, 8, 16, and 24 mM) of N for an additional 30 d. These five N application levels corresponded to leaf N concentrations of 2.62, 3.48, 4.00, 4.23, and 4.69%, respectively. We measured 13 morphological and physiological parameters, as well as the responses of these parameters to various N-fertilizer treatments. The general increases in Dickson's quality index (DQI), above-ground dry weight (DW), total DW, flowering rate, ${\Delta}F/Fm$', and qP in response to treatment with 0 to 8 mM N were similar to those of SPAD, NDVI, and Fv/Fm. Consistent and strong correlations ($R^2$= 0.60 to 0.85) were observed between leaf N concentration (%) and SPAD, NDVI, ${\Delta}F/Fm$', and above-ground DW. Validation of leaf S PAD, NDVI, and ${\Delta}F/Fm$' revealed that these vegetation indices are accurate predictors of leaf N concentration that can be used for non-destructive estimation of the proper timing for N-solution irrigation of P. lanceolata. Moreover, irrigation with 8 mM N-fertilizer i s recommended w hen leaf N concentration, SPAD, NVDI, and ${\Delta}F/Fm$' ratios are reduced from their saturation values of 4.00, 50.68, 0.64, and 0.137%, respectively.

임상도와 위성영상자료를 이용한 산림지역의 녹지자연도 추정기법 개발 (Development of a Methodology to Estimate the Degree of Green Naturality in Forest Area using Remote Sensor Data)

  • 이규성;윤정숙
    • 환경영향평가
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    • 제8권3호
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    • pp.77-90
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    • 1999
  • The degree of green naturality (DGN) has played a key role for maintaining the environmental quality from inappropriate developments, although the quality and effectiveness of the mapping of DGN has been under debate. In this study, spatial distribution of degree of green naturality was initially estimated from forest stand maps that were produced from the aerial photo interpretation and extensive field survey. Once the boundary of initial classes of DGN were defined, it were overlaid with normalized difference vegetation index (NDVI) data that were derived from the recently obtained Landsat Thematic Mapper data. NDVI was calculated for each pixel from the radiometrically corrected satellite image. There were no significant differences in mean values of vegetation index among the initial DGN classes. However, the satellite derived vegetation index was very effective to delineate the developed and damaged forest lands and to adjust the initial value of DGN according to the distribution of NDVI within each class.

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NOAA AVHRR데이터를 이용한 한반도의 순별 NDVI와 LAI 특성 (Characteristics of 10-day composite NDVI and LAI in Korea Peninsula Using NOAA AVHRR Data)

  • 박종화;전택기;나상일;박민서
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2005년도 학술발표논문집
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    • pp.649-654
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    • 2005
  • This study proposes a particular approach to assess information about NDVI(Normalized Difference Vegetation Index) and LAI(Leaf Area Index) from the spectroradiometer and NOAA/AVHRR satellite data. AVHRR data were collected in twelves months over a one year period in 2004. We calculated 10-day composite NDVI using daily composite AVHRR surface reflectance products(1km spatial resolution). The 10-day composite NDVI have a great effect on the plant growth conditions. Considerably, NDVI was increased by developing muscle fiber tissue from April to May. Then the NDVI increased until the August and then decreased until February. The highest month was at August and the lower month was at December. The difference NDVI analysis using December and another months data was conducted, the results were provided information on the variation of vegetation coverage. The result suggest that a relationship established between the LAI and NDVI in 2004.

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NOAA/AVHRR NDVI를 이용한 북한지역 봄 가뭄 분석 (Analysis of Spring Drought Using NOAA/AVHRR NDVI for North Korea)

  • 장민원;유승환;최진용
    • 한국농공학회논문집
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    • 제49권6호
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    • pp.21-33
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    • 2007
  • Different vegetation indices from satellite images have been used for monitoring drought damages, and this study aimed to develop a drought index using NOAA/AVHRR NDVI(Normalized Difference Vegetation Index) and to analyze the temporal and spatial distribution of spring drought severity in North Korea from 1998 to 2001. A new drought index, DevNDVI(Deviation of NDVI), was defined as the difference between a monthly NDVI and average monthly NDVI at the same cover area, and the DevNDVI images at all years except for 2001 demonstrated the drought-damaged areas referred from various domestic and foreign publications. The vegetation of 2001 showed high vitality despite the least amount of rainfall among the target years, and the reason was investigated that higher temperature above normal average would shift the growing stages of plants ahead. Therefore, complementary methods like plant growth models or ground survey data should be adopted in order to evaluate drought-induced plant stress using satellite-based NDVI and to make up far the distortion induced by other environments than lack of precipitation.

분광반사 특성을 이용한 식생피복율과 활력도 분리평가의 효용성 (Utility of Separable Evaluation of the Vegetation Cover Rates and Vegetation Vigor Using Spectral Reflectance)

  • 최승필;박종선;김형진
    • 한국측량학회지
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    • 제23권4호
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    • pp.393-399
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    • 2005
  • 식생은 700nm근처에서 명확한 흡수파장대와 반사파장대를 갖고 있으므로 그 반사율의 차이가 상당히 크다. 이러한 식생의 흡수 및 반사파장대에 착안하여 식생에 관한 리모트센싱 기법을 실행하기 위하여 많은 식생지수가 연구되어지고 있다. 현재, 일반적으로 많이 사용되고 있는 식생지수로는 정규식생지수(NDVI)와 수직식생지수(PVI)가 있다. 일반적으로 식생의 활력도를 나타내는 것은 증산속도나 이산화탄소 소비량 그리고 클로로필농도등 이지만 주로 클로로필농도를 이용한다. NDVI나 PVI을 구하는데 이용되는 적색파장대는 클로로필의 흡광작용이 강하므로 클로로필 농도를 파악하는데도 유효하다. 특히 NDVI는 개략적인 식생상황을 파악하는데 주로 사용되기 때문에 초기조사에 많이 이용되고 있다. 그러나 이러한 식생지수는 활력도와 식생피복에 관한 정보가 혼합되어 있기 때문에 활력도와 식생피복간의 중복이 없는 독자적인 파장대에 패하여 모니터링을 할 필요가 있다. 지금까지 많은 식생지수는 식생의 활력과 식생피복이 혼재되어 있어서 함께 평가하였으나 본 연구에서는 활력도와 식생피복율을 분리평가하기 위하여 잔디를 이용한 실험을 행하여 분리 평가의 효용성을 강조하고자 하였다. 따라서 분광반사특성을 이용하여 식생지수를 평가한 결과 식생의 활력과 피복을 분리하여 평가하는 것이 바람직하다고 생각된다.