지상원격측정 센서를 이용한 벼의 생체량 및 질소 영양 평가

Ground-based remote sensing can be used as one of the non-destructive, fast, and real-time diagnostic tools for quantifying yield, biomass, and nitrogen (N) stress during growing season. This study was conducted to assess biomass and nitrogen (N) status of paddy rice (Oryza sativa L.) plants under N...

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Veröffentlicht in:韓國土壤肥料學會誌 2010, 43(6), , pp.954-961
Hauptverfasser: 강성수(Seong-Soo Kang), 공효영(Hyo-Young Gong), 정현철(Hyun-Cheol Jung), 김이현(Yi-Hyun Kim), 홍석영(Suk-Young Hong), 홍순달(Soon-Dal Hong)
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Zusammenfassung:Ground-based remote sensing can be used as one of the non-destructive, fast, and real-time diagnostic tools for quantifying yield, biomass, and nitrogen (N) stress during growing season. This study was conducted to assess biomass and nitrogen (N) status of paddy rice (Oryza sativa L.) plants under N stress using passive and active ground-based remote sensors. Nitrogen application rates were 0, 70, 100, and 130 kg N $ha^{-1}$. At each growth stage, reflectance indices measured with active sensor showed higher correlation with DW, N uptake and N concentration than those with the passive sensor. NIR/Red and NIR/Amber indices measured with Crop Circle active sensors generally had a better correlation with dry weight (DW), N uptake and N content than vegetation indices from Crop Circle passive sensor and NDVIs from active sensors. Especially NIR/Red and NIR/amber ratios at the panicle initiation stage were most closely correlated with DW, N content, and N uptake. Rice grain yield, DW, N content and N uptake at harvest were highly positively correlated with canopy reflectance indices measured with active sensors at all sampling dates. N application rate explains about 91~92% of the variability in the SI calculated from NIR/Red or NIR/Amber indices measured with Crop Circle active sensors on 12 July. Therefore, the in-season sufficiency index (SI) by NIR/Red or NIR/Amber index from Crop Circle active sensors can be used for determination of N application rate. 지상원격측정 센서 반사율 지표는 비파괴적으로 실시간으로 빠르게 생육 중 작물의 생체량, 질소 스트레스 정도를 예측할 수 있는 도구로 연구되고 있다. 본 연구의 목적은 질소 시비량 수준별로 재배된 벼 (Oryza sativa L.)의 질소흡수량, 생체량 및 수량과 지상원격측정센서 반사율 지표들의 상호관계로부터 효율적인 반사율 지표를 선발하고 반사율 지표를 통한 벼 생육 중 질소시비수준을 평가하고자 하였다. 질소시비수준 0, 70, 100, 130 kg N $ha^{-1}$별로 처리된 시험구의 캐노피 반사율을 여러 종류의 수동형과 능동형 지상원격측정 센서로 각 생육시기별로 측정하였고 생체량과 질소흡수량 및 수량을 조사하여 상호관계를 분석하였다. 수동형 센서보다는 능동형 센서가 생육시기별 벼의 지상부 건물중, 수량, 질소농도 및 질소흡수량과 더 밀접한 상관을 나타냈으며 생육 후반으로 갈수록 상관계수 크기는 낮아지는 경향이었으나 유의성은 P
ISSN:0367-6315
2288-2162