ANALISA CITRA HIPERSPEKTRAL DAUN DARI TANAMAN KELAPA SAWIT YANG MENGALAMI KEKURANGAN AIR MENGGUNAKAN PROGRAM MATLAB

JR Lessy Eka Putri, M. Minarni, Feri Candra, H. Herman
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Abstract

The hyperspectral imaging method has been widely and intensively used in agriculture to find out various problems that occur in plants. Image processing is very important step in an imaging method. This research aims to create Matlab based program to be used to analyze the leaf image of oil palm plants that has experienced water deficiency. Reflectance intensity values were extracted from the process. The hyperspectral imaging system consisted of a 650 nm diode laser, a spectrograph, monochrome CMOS camera, and Matlab image processing program. The samplesused were 8 month old Tenera variety of oil palm seedlings which were treated to simulate water deficiency in the form of variations in the volume of water, namely 0 mL (without watering), 1000 mL, 2000 mL, and 3000 mL (normal), 3 duplicates for each volume. The samples were given water volume of 1000 mL and 2000 mL for every 7 days in 21 days, while the sampleswith 3000 mL of water were watered every day. Image recording was done on the 21st day for detached leaves at the the bottom part.The results showed that the Matlab program was able to separate each row from 15 images, each of which had a pixel size of 1280 × 1024 and merge each of the same lines into 1024 images with a pixel size of 1280 × 15. The reflectance intensity values were then obtained. The results showed that higher levels of water deficiency in plants produce increasing reflectance intensity values.
分析使用MATLAB程序进行缺水的棕榈油叶的高光谱分析
高光谱成像技术已广泛而深入地应用于农业中,用于发现植物发生的各种问题。图像处理是成像方法中非常重要的一步。本研究旨在创建基于Matlab的程序,用于分析油棕植株缺水后的叶片图像。从该过程中提取反射强度值。该高光谱成像系统由650 nm二极管激光器、摄谱仪、单色CMOS相机和Matlab图像处理程序组成。所使用的样品是8个月大的Tenera品种油棕幼苗,以水量变化的形式进行模拟缺水处理,即0 mL(不浇水),1000 mL, 2000 mL和3000 mL(正常),每个体积3个重复。21天内,每7天给1000 mL和2000 mL的水,每天给3000 mL的水。第21天对底部离体叶片进行影像记录。结果表明,Matlab程序能够从15张像素大小为1280 × 1024的图像中分离出每一行,并将每一行合并成1024张像素大小为1280 × 15的图像。然后得到反射强度值。结果表明,植物水分缺乏程度越高,反射强度值越高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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