Detection of Palm Oil Health Through Multispectral UAV Platform

Carl Marlyana Rafezall, N. Darwin, M. Ariff, Z. Majid
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引用次数: 1

Abstract

In 2018, 19.5 million tonnes of crude palm oil from a planted area of 5.8 million have been produced in Malaysia. RM67.5 billion has been earned from palm oil export which contributes to one of Malaysia's gross domestic products (GDP). Unfortunately, palm oil cultivation is suffering from the destructive disease known as Ganoderma Boninense which causes the basal stem rot (BSR) disease. The objectives of this study are to provide a low-cost monitoring method for palm oil mapping and to analyse the health condition of palm oil trees through the spectral reflectance curve. The implementation of Unmanned Aerial Vehicles (UAV) that attach with the multispectral camera was used as the platform in data acquisition to monitor the condition of palm oil health. The multispectral UAV can determine the plant health to identify the early stage of the disease by extracting the palm oil leaf spectral reflectance curve. The range of Normalized Difference Vegetation Index (NDVI) of 0 to 1 is for good condition, while 0 to −1 is for dead or extremely stressed condition of palm oil. The result of spectral reflectance curve from multispectral camera was compared and analysed with the reading from spectroradiometer observation. Besides, flight planning and camera calibration were done before the data acquisition process. Ground control points (GCP) were established using GNSS method at the survey area for the geo-referencing process. The area of the study is located at the palm oil plantation of Sime Darby Plantation, Kulai. The outcome of this study is to produce a Normalized Difference Vegetation Index (NDVI) map as the final output.
基于多光谱无人机平台的棕榈油健康检测
2018年,马来西亚580万种植面积生产了1950万吨粗棕榈油。棕榈油出口已赚取675亿令吉,这是马来西亚国内生产总值(GDP)的一部分。不幸的是,棕榈油种植正在遭受一种破坏性疾病的折磨,这种疾病被称为“博宁灵芝”,它会导致基底茎腐病(BSR)。本研究的目的是为棕榈油测绘提供一种低成本的监测方法,并通过光谱反射率曲线分析棕榈油树的健康状况。采用搭载多光谱相机的无人机(UAV)作为数据采集平台,对棕榈油健康状况进行监测。多光谱无人机可以通过提取棕榈油叶片的光谱反射率曲线来判断植物的健康状况,从而识别病害的早期阶段。归一化植被指数(Normalized Difference Vegetation Index, NDVI)的取值范围为0 ~ 1,表示棕榈油处于良好状态,0 ~−1表示棕榈油处于死亡或极度胁迫状态。将多光谱相机测得的光谱反射率曲线与光谱辐射计观测的结果进行了对比分析。在数据采集前进行了飞行规划和相机标定。利用GNSS方法在调查区域建立地面控制点(GCP),进行地理参考过程。研究区域位于古莱森那美种植园的棕榈油种植园。本研究的结果是生成归一化植被指数(NDVI)图作为最终输出。
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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