發(fā)布時(shí)間: 2019-09-23 點(diǎn)擊次數(shù): 1668次
PolyPen RP 410手持式植物光譜測(cè)量?jī)x通過內(nèi)部光源(氙氣白熾燈380-1050nm)測(cè)定植物葉片的反射光譜,也可以測(cè)定其他光源的透光度和吸光率。PolyPen在軟件中內(nèi)置了幾乎所有常用的植物反射光譜指數(shù)公式,例如NDVI,PRI,NDGI等。測(cè)得的數(shù)據(jù)以圖形或數(shù)據(jù)表的形式實(shí)時(shí)顯示在儀器的顯示屏上。這些數(shù)據(jù)都可以儲(chǔ)存在儀器的內(nèi)存里并傳輸?shù)诫娔X里.
內(nèi)置植被指數(shù):
PolyPen RP 410 UVIS:NDVI、SR、綠度指數(shù)、MCARI、TCARI、TVI、ZMI、SRPI、NPQI、PRI、NPCI、Carter指數(shù)、SIPI、GM1。
PolyPen RP 410 NIR:NDVI、SR、MCARI1、OSAVI、MCARI、TCARI、ZMI、Ctr2、GM2
參考文獻(xiàn)
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3. M López-López, et al. 2016. Early Detection and Quantification of Almond Red Leaf Blotch Using High-Resolution Hyperspectral and Thermal Imagery. Remote Sens. 8(4): 276
4. PJ Zarco-Tejada, et al. 2016. Seasonal stability of chlorophyll fluorescence quantified from airborne hyperspectral imagery as an indicator of net photosynthesis in the context of precision agriculture. Remote Sensing of Environment 179: 89-103
5. VV Ptushenko, et al. 2015. Possible reasons of a decline in growth of Chinese cabbage under a combined narrowband red and blue light in comparison with illumination by high-pressure sodium lamp. Scientia Horticulturae 194: 267-277
6. VV Ptushenko, et al. 2014. Chlorophyll fluorescence induction, chlorophyll content, and chromaticity characteristics of leaves as indicators of photosynthetic apparatus senescence in arboreous plants. Biochemistry (Moscow) 79: 260-272