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Static and dynamic depinning processes of a magnetic domain wall from a pinning potential
Pi, Ung-Hwan,Cho, Young-Jin,Bae, Ji-Young,Lee, Sung-Chul,Seo, Sunae,Kim, Woojin,Moon, Jung-Hwan,Lee, Kyung-Jin,Lee, Hyun-Woo American Physical Society 2011 Physical review. B, Condensed matter and materials Vol.84 No.2
차수영,Ung-hwan Pi,Jong-Hyuk Yi,박종화 대한원격탐사학회 2011 大韓遠隔探査學會誌 Vol.27 No.3
The time-series normalized difference vegetation index (NDVI) product has proven to be a powerful tool to investigate the phenological information because it can monitor the change of the forests with very high time-resolution. This study described the application of the DFT analysis over the 9 year MODIS data for the identification of the two types of vegetation cover, Pinus densiflora(Pd) and Querqus mongolica(Qm) which are dominant species of evergreen and broadleaved deciduous forest, respectively. The total number of samples was 5148 reference cycles which consist of 2160 Pd and 2988 Qm. They were extracted from the pixel-based MODIS scenes over the 9 years from 2000 to 2008 of South Korea. The DFT analysis was mainly focused on the 0th and 1^(st) harmonic components, each of which represents the mean value and the variation amplitude of the NDVI over the years, respectively. The 0^(th) harmonic values of the vegetation Pd and Qm averaged over the 9 years were 0.74 and 0.65, respectively. This implies that Pd has a higher NDVI than Qm. Similarly obtained 1^(st) harmonic values of Pd and Qm were 0.19 and 0.27, respectively. This can be intuitively understood considering that the seasonal variation of Qm is much larger than Pd. This distinctive difference of the 1^(st) harmonic value has been used to identify evergreen and deciduous forests. Overall agreement between the Fourier analysis-based map and the actal vegetation map has been estimated to be as high as 75%. This study found that the DFT analysis can be a concise and repeatable method to separate and trace the changes of evergreen and deciduous forest using the annual NDVI cycles.
Cha, Su-Young,Pi, Ung-Hwan,Yi, Jong-Hyuk,Park, Chong-Hwa The Korean Society of Remote Sensing 2011 大韓遠隔探査學會誌 Vol.27 No.3
The time-series normalized difference vegetation index (NDVI) product has proven to be a powerful tool to investigate the phenological information because it can monitor the change of the forests with very high time-resolution, This study described the application of the DFT analysis over the 9 year MODIS data for the identification of the two types of vegetation cover, Pinus densiflora(Pd) and Querqus mongolica(Qm) which are dominant species of evergreen and broadleaved deciduous forest, respectively, The total number of samples was 5148 reference cycles which consist of 2160 Pd and 2988 Qm. They were extracted from the pixel-based MODIS scenes over the 9 years from 2000 to 2008 of South Korea. The DFT analysis was mainly focused on the 0th and $1^{st}$ harmonic components, each of which represents the mean value and the variation amplitude of the NDVI over the years, respectively. The $0^{th}$ harmonic values of the vegetation Pd and Qm averaged over the 9 years were 0.74 and 0.65, respectively. This implies that Pd has a higher NDVI than Qm. Similarly obtained $1^{st}$ harmonic values of Pd and Qm were 0.19 and 0.27, respectively. This can be intuitively understood considering that the seasonal variation of Qm is much larger than Pd. This distinctive difference of the $1^{st}$ harmonic value has been used to identify evergreen and deciduous forests. Overall agreement between the Fourier analysis-based map and the actal vegetation map has been estimated to be as high as 75%. This study found that the DFT analysis can be a concise and repeatable method to separate and trace the changes of evergreen and deciduous forest using the annual NDVI cycles.
Su Young Cha,Ung Hwan Pi,Jong Hyuk Yi,Chong Hwa Park 大韓遠隔探査學會 2011 大韓遠隔探査學會誌 Vol.27 No.3
The time-series normalized difference vegetation index (NDVI) product has proven to be a powerful tool to investigate the phenological information because it can monitor the change of the forests with very high time-resolution. This study described the application of the DFT analysis over the 9 year MODIS data for the identification of the two types of vegetation cover, Pinus densiflora(Pd) and Querqus mongolica(Qm) which are dominant species of evergreen and broadleaved deciduous forest, respectively. The total number of samples was 5148 reference cycles which consist of 2160 Pd and 2988 Qm. They were extracted from the pixel-based MODIS scenes over the 9 years from 2000 to 2008 of South Korea. The DFT analysis was mainly focused on the 0th and 1st harmonic components, each of which represents the mean value and the variation amplitude of the NDVI over the years, respectively. The 0th harmonic values of the vegetation Pd and Qm averaged over the 9 years were 0.74 and 0.65, respectively. This implies that Pd has a higher NDVI than Qm. Similarly obtained 1st harmonic values of Pd and Qm were 0.19 and 0.27, respectively. This can be intuitively understood considering that the seasonal variation of Qm is much larger than Pd. This distinctive difference of the 1st harmonic value has been used to identify evergreen and deciduous forests. Overall agreement between the Fourier analysis-based map and the actal vegetation map has been estimated to be as high as 75%. This study found that the DFT analysis can be a concise and repeatable method to separate and trace the changes of evergreen and deciduous forest using the annual NDVI cycles.
시계열 MODIS 영상자료를 이용한 산림의 연간 탄소 흡수량 지도 작성
차수영 ( Su Young Cha ),피웅환 ( Ung Hwan Pi ),박종화 ( Chong Hwa Park ) 대한원격탐사학회 2013 大韓遠隔探査學會誌 Vol.29 No.5
매일 단위로 수신되는 MODIS 인공위성자료를 이용하여 계산한 시계열 식생지수 자료는 1년 주기의 생물계절 특성을 나타내는 복잡한 파형으로 표현될 수 있다. 이러한 복잡한 파형도 단순한 파형의 합성으로 이루어지는데 이산 퓨리에 변환 분석 기법은 이들을 각각의 하모닉들로 추출해 내어 다양한 주기별로 생육을 달리하는 식생의 특성을 설명할 수 있다. 특히 이산 퓨리에 분석을 통해 도출된 시계열 식생지수 자료의 1차 하모닉 값은 1년 동안 변화하는 총 잎의 생장량을 나타내는 것으로써 나무의 상대성장회귀식 추정에 의해 식생이 1년 동안 탄소를 흡수한 양을 나타내는 지상부 바이오매스양을 설명한다. 따라서 1차 하모닉 값의 변화량은 1년 동안 식생이 탄소를 흡수하는 양을 나타낸다고 할 수 있는데, 시계열 MODIS 자료에서 추출된 6220여개의 표본들의 1차 하모닉 10년 평균값과 산림청의 입목 축적량 데이터를 통해 추정된 연간 단위면적당 이산화탄소 흡수량을 이용하여 수종별 비례상수를 도출할 수 있었다. 남한 산림지역에 한하여 총이산화탄소 흡수량은 2000년 이후 10년 평균 약 5천6백만톤으로 계산되었고 이것은 발표된 남한 산림의 연간 이산화탄소 흡수량에 근접하였다. 본 연구에서 제시한 방법은 보편적 비례상수를 이용하여 식생의 연간탄소 흡수량을 추정함으로써 시계열 위성영상 자료를 이용하여 매년 변화하는 산림의 이산화탄소 흡수량 지도를 반복하여 정량적으로 제작할 수 있는 환경공간정보를 제공한다. Time-series data of Normal Difference Vegetation Index (NDVI) obtained by the Moderateresolution Imaging Spectroradiometer(MODIS) satellite imagery gives a waveform that reveals the characteristics of the phenology. The waveform can be decomposed into harmonics of various periods by the Fourier transformation. The resulting nth harmonics represent the amount of NDVI change in a period of a year divided by n. The values of each harmonics or their relative relation have been used to classify the vegetation species and to build a vegetation map. Here, we propose a method to estimate the annual amount of carbon absorbed on the forest from the 1st harmonic NDVI value. The 1st harmonic value represents the amount of growth of the leaves. By the allometric equation of trees, the growth of leaves can be considered to be proportional to the total amount of carbon absorption. We compared the 1st harmonic NDVI values of the 6220 sample points with the reference data of the carbon absorption obtained by the field survey in the forest of South Korea. The 1st harmonic values were roughly proportional to the amount of carbon absorption irrespective of the species and ages of the vegetation. The resulting proportionality constant between the carbon absorption and the 1st harmonic value was 236 tCO2/5.29ha/year. The total amount of carbon dioxide absorption in the forest of South Korea over the last ten years has been estimated to be about 56 million ton, and this coincides with the previous reports obtained by other methods. Considering that the amount of the carbon absorption becomes a kind of currency like carbon credit, our method is very useful due to its generality.