无人机在环境生物学中的应用综述

Q3 Environmental Science European Journal of Ecology Pub Date : 2019-01-01 DOI:10.2478/eje-2018-0012
M. Nowak, Katarzyna Dziób, P. Bogawski
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引用次数: 60

摘要

从个体物种到群落和生物群系,环境信息的获取是环境生物学各个层面研究的关键步骤。然而,由于物候时间、物种的空间分布或实地调查某一特定地区的可及性有限等原因,获取有关环境的信息往往是困难的。此外,遥感技术能够对地球表面进行观测,目前在环境研究中非常普遍,但存在空间、光谱和时间分辨率不足以及数据获取成本高等诸多局限性。自20世纪90年代以来,研究人员一直在探索不同类型的无人驾驶飞行器(uav)监测地球表面的潜力。本研究综述了近年来有关无人机在环境生物学中的应用的科学文献。在众多论文、简短通讯和会议摘要中,我们选择了110项关于无人机如何用于环境生物学以及哪些生物可以以这种方式研究的原始研究。这些研究主要集中在利用无人机测量植被的冠高、体积、个体数等参数(14项)和植被变化的时空动态量化(12项)。无人机也经常被用来计算鸟类和哺乳动物,尤其是那些生活在水中的动物。一般来说,本研究的分析部分分为以下几个部分:(1)植被威胁的检测、评估和预测;(2)植被生物物理参数的测量;(3)植物和生境变化动态的量化;(4)动物种群和行为的研究。最后,我们还综合了所有的信息,其中包括无人机应用在环境生物学方面的进步。考虑到本次综述中发现并纳入的33%的研究发表于2017年和2018年,预计未来无人机在环境生物学中的应用数量和种类将会增加。
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Unmanned Aerial Vehicles (UAVs) in environmental biology: a review
Abstract Acquiring information about the environment is a key step during each study in the field of environmental biology at different levels, from an individual species to community and biome. However, obtaining information about the environment is frequently difficult because of, for example, the phenological timing, spatial distribution of a species or limited accessibility of a particular area for the field survey. Moreover, remote sensing technology, which enables the observation of the Earth’s surface and is currently very common in environmental research, has many limitations such as insufficient spatial, spectral and temporal resolution and a high cost of data acquisition. Since the 1990s, researchers have been exploring the potential of different types of unmanned aerial vehicles (UAVs) for monitoring Earth’s surface. The present study reviews recent scientific literature dealing with the use of UAV in environmental biology. Amongst numerous papers, short communications and conference abstracts, we selected 110 original studies of how UAVs can be used in environmental biology and which organisms can be studied in this manner. Most of these studies concerned the use of UAV to measure the vegetation parameters such as crown height, volume, number of individuals (14 studies) and quantification of the spatio-temporal dynamics of vegetation changes (12 studies). UAVs were also frequently applied to count birds and mammals, especially those living in the water. Generally, the analytical part of the present study was divided into following sections: (1) detecting, assessing and predicting threats on vegetation, (2) measuring the biophysical parameters of vegetation, (3) quantifying the dynamics of changes in plants and habitats and (4) population and behaviour studies of animals. At the end, we also synthesised all the information showing, amongst others, the advances in environmental biology because of UAV application. Considering that 33% of studies found and included in this review were published in 2017 and 2018, it is expected that the number and variety of applications of UAVs in environmental biology will increase in the future.
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来源期刊
European Journal of Ecology
European Journal of Ecology Environmental Science-Ecology
CiteScore
1.80
自引率
0.00%
发文量
6
审稿时长
11 weeks
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